WO2016013153A1 - Notification system for vehicle, notification control device, and notification device - Google Patents

Notification system for vehicle, notification control device, and notification device Download PDF

Info

Publication number
WO2016013153A1
WO2016013153A1 PCT/JP2015/003123 JP2015003123W WO2016013153A1 WO 2016013153 A1 WO2016013153 A1 WO 2016013153A1 JP 2015003123 W JP2015003123 W JP 2015003123W WO 2016013153 A1 WO2016013153 A1 WO 2016013153A1
Authority
WO
WIPO (PCT)
Prior art keywords
notification
driver
level
medium
mode
Prior art date
Application number
PCT/JP2015/003123
Other languages
French (fr)
Japanese (ja)
Inventor
信輔 久次
Original Assignee
株式会社デンソー
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 株式会社デンソー filed Critical 株式会社デンソー
Publication of WO2016013153A1 publication Critical patent/WO2016013153A1/en

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R21/00Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/16Anti-collision systems

Definitions

  • the present disclosure relates to a vehicle notification system, a notification control device, and a notification device that are used in a vehicle and notify a driver.
  • Patent Document 1 when a driver performs a starting operation, the degree of danger is determined based on the position where the detection target object around the host vehicle exists and the driver's line-of-sight direction, and a warning corresponding to the degree of danger is given to the driver.
  • a device (referred to as a notification device) is disclosed.
  • warning modes there are modes that appeal to the driver's hearing by sound output from the speaker, modes that appeal to the driver's vision using a display device, modes that appeal to the driver's tactile sense by vibrating the vibration device, etc. Illustrated.
  • Patent Document 2 discloses a notification device that performs notification so that a stimulus corresponding to the driver's state and driving environment is applied to the driver's visual, auditory, and tactile senses in order to maintain the driver's arousal state. Has been.
  • the notification device also changes the notification mode stepwise (or continuously) according to the driver's awakening level and the driving environment.
  • the inventor of the present application has found the following regarding the vehicle notification system, the notification control device, and the notification device.
  • each of the plurality of notification devices has its own rules. Based on this, the notification mode is changed stepwise to perform notification.
  • the warning sound output interval is shortened stepwise according to the state quantity to be notified, while another notification is performed.
  • the device changes the display color step by step according to the state quantity targeted by the device, while the notification mode by sound output remains constant.
  • the parameters of the notification mode appealing to the driver's hearing include the volume, the frequency of the warning sound, the output interval of the warning sound, etc.
  • the parameters of the notification mode appealing to the driver's vision include brightness, color, presence / absence of flashing , Flashing speed etc.
  • the parameters of the notification mode appealing to the tactile sense of the driver include the magnitude of vibration, the frequency, and the vibration interval.
  • An object of the present disclosure is to provide a notification system having a plurality of notification devices that notify information about different objects in stages, and from the aspect of notification performed by a certain notification device, the urgency and seriousness of the information being notified
  • Another object is to provide a vehicle notification system, a notification control device, and a notification device that are easily recognized by a driver.
  • the vehicle notification system includes a notification device that notifies the driver of information about the predetermined state quantity via at least one of the driver's visual sense, auditory sense, and tactile sense.
  • Each of the plurality of notification devices includes a plurality of notification devices that determine a notification level representing the strength of appealing information to the driver from a state quantity targeted by the notification device, and determines a notification mode according to the determined notification level. The notification is carried out by changing the target. The notification mode at each notification level is determined based on a predetermined notification rule that defines a notification mode for each notification level.
  • the notification rule includes at least one type of visual element among visual elements that are elements that change the number of notification level steps adopted by each notification device and a notification mode appealing to the driver's vision (hereinafter, visual notification mode).
  • a value for each notification level, a value for each notification level of at least one type of auditory element among the auditory elements that are elements that change the mode of notification appealing to the driver's hearing (hereinafter referred to as auditory notification mode), and the driver A value for each notification level of at least one type of tactile element of tactile elements that are elements for changing a notification mode (hereinafter referred to as a tactile notification mode) to appeal to the tactile sense of the visual element,
  • Each of the auditory element and the tactile element is set so that the strength with which the element appeals to the driver's sensory organ increases as the notification level increases.
  • the notification control device is a device that requests to notify information about a predetermined state quantity, and appeals the driver to information that is about to be notified based on the state quantity.
  • a notification medium for determining a notification level representing strength and requesting notification in a notification mode corresponding to the notification level, and a notification medium for notifying the driver of information information is provided to the driver through the visual sense of the driver.
  • Visual notification medium used to notify the driver auditory notification medium used to notify the driver of information via the driver's hearing, and tactile sense used to notify the driver of information via the driver's sense of touch
  • a vehicle notification system that includes at least one notification medium, and controls the operation of the notification medium and the notification device.
  • the notification control device receives a request from the notification device, and a notification implementation that realizes notification of the mode requested by the notification device by operating the notification medium based on the request received by the notification request reception unit. And a notification device management unit that instructs the notification mode requested by the notification device to be a notification mode in accordance with a notification rule that defines a notification mode for each notification level.
  • the notification rule includes the number of notification level steps adopted by the notification device, the value for each notification level of at least one type of visual element among visual elements that are elements that change the mode of notification using a visual notification medium, and A value for each notification level of at least one type of auditory element, which is an element that changes the manner of notification using an auditory notification medium, and a tactile sense that is an element that changes the manner of notification using a tactile notification medium
  • a value for each notification level of at least one tactile element of the elements is determined, and each of the visual element, the auditory element, and the tactile element becomes an element of the driver as the notification level increases. It is set to increase the strength of appealing to the sensory organs.
  • the notification device includes, as a notification medium for notifying the driver of information, a visual notification medium used for notifying the driver of information via the driver's vision, An auditory notification medium used for notifying the driver of information via hearing, a tactile notification medium used for notifying the driver of information via the driver's tactile sense, and controlling the operation of the notification medium.
  • a notification control device that notifies information in a predetermined manner, and causes the notification control device to notify the driver of information about a predetermined state quantity.
  • the notification device includes a notification level determination unit that determines a notification level, which is a degree of strength that appeals to the driver for information to be notified, based on the state quantity, and a notification medium that is used for notification of information among the notification media. It is determined based on a notification medium selection unit to be selected, a predetermined notification rule for determining a notification mode for each notification level, and a notification level determined by the notification level determination unit, using the notification medium selected by the notification medium selection unit.
  • a notification processing unit that requests the notification control device to perform notification in the notification mode, and the notification rule includes a number of notification level steps adopted by the notification device and a notification mode using a visual notification medium.
  • the visual elements that are elements that change the value of each of the visual elements of the visual element
  • a small number of auditory elements that are elements that change the manner of notification using the auditory information medium
  • a value for each notification level of at least one auditory element and a value for each notification level of at least one tactile element of tactile elements that are elements that change the notification mode using the tactile notification medium The visual element, the auditory element, and the tactile element are all set so that the strength with which the element appeals to the driver's sensory organ increases as the notification level increases.
  • the notification control device and the notification device, it is possible to provide commonality in the pattern of change according to the notification level of the notification mode of each notification device.
  • the visual element mode defined by the notification rule is uniquely determined according to the notification level even if the notification device is different, the driver can recognize the notification level from the visual element mode.
  • a notification control device, and a notification device in a vehicle notification system having a plurality of notification devices that notify information about different objects in stages, notification by a certain notification device is transmitted to a driver. It is possible to make it easier to recognize the urgency and seriousness that is going on.
  • FIG. 1 is a block diagram illustrating an example of a schematic configuration of a vehicle notification system according to the present embodiment.
  • FIG. 2 is a schematic view of the appearance around the driver seat.
  • FIG. 3 is a block diagram illustrating an example of a schematic configuration of the notification control device and the notification device,
  • FIG. 4 is a diagram illustrating an example of a notification rule,
  • FIG. 5 is a diagram illustrating an example of a notification rule,
  • FIG. 6 is a schematic diagram showing an example of a visual notification mode using HUD by the inter-vehicle distance notification device, FIG.
  • FIG. 7 is a schematic diagram showing an example of a visual notification mode using HUD by the inter-vehicle distance notification device
  • FIG. 8 is an example of a mode in which the type of the notification medium is changed according to the notification level.
  • FIG. 9 is a schematic diagram showing an example of a visual notification mode using the right electronic side mirror by the rear vehicle notification device
  • FIG. 10 is a schematic diagram illustrating an example of a visual notification mode using the right electronic side mirror by the rear vehicle notification device, It is an example of the schematic structure of the alerting
  • FIG. 1 is a diagram illustrating an example of a schematic configuration of a vehicle notification system 100 according to the present embodiment.
  • FIG. 2 is an external view of the vicinity of the driver's seat of a vehicle (hereinafter, the host vehicle) on which the vehicle notification system 100 is mounted.
  • the vehicle notification system 100 includes an in-vehicle sensor group 11, a surrounding monitoring camera 12, a detection object sensor 13, a driver monitor system 14, an inter-vehicle distance notification device 20A, a rear vehicle notification device 20B, and a lane departure notification device. 20C, the wakefulness maintaining device 20D, and the notification control device 30 are provided.
  • the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, and the awake state maintaining device 20D are examples of the notification device.
  • the vehicle notification system 100 includes a head-up display (hereinafter referred to as HUD: Head-Up Display) 51, a meter display 52, a center display 53, an electronic room mirror 54, an electronic side mirror 55, a portable terminal display 56, decorative lighting. 57, side speaker 61, center speaker 62, portable terminal speaker 63, grasping part tactile sensation generating device 71, seat tactile sensation generating device 72, portable terminal tactile sensation generating device 73, steering switch 74, touch panel 75 with tactile sensation generating function, and remote operation device 76.
  • the narrow-area communication unit 81 is provided.
  • the portable terminal display 56, the portable terminal speaker 63, and the portable terminal tactile sensation generating device 73 are provided in the portable terminal 4 brought into the passenger compartment by the user.
  • the vehicle notification system 100 cooperates with the mobile terminal 4 to control the display screen of the mobile terminal display 56 provided in the mobile terminal 4, the output sound from the mobile terminal speaker 63, and the operation of the mobile terminal tactile generating device 73. It has a configuration that can.
  • the mobile terminal 4 a known smartphone, tablet terminal, or the like can be used.
  • the mobile terminal such as a smartphone is installed in a state where an application program (hereinafter referred to as an application) for operating as the mobile terminal 4 included in the vehicle notification system 100 is installed and the application is being executed. It operates as the portable terminal 4 in the form.
  • an application an application program for operating as the mobile terminal 4 included in the vehicle notification system 100
  • the application is being executed. It operates as the portable terminal 4 in the form.
  • the HUD 51, meter display 52, center display 53, electronic room mirror 54, electronic side mirror 55, and portable terminal display 56 are all display devices that display information.
  • the side speaker 61, the center speaker 62, and the portable terminal speaker 63 are all audio output devices that output audio (including simple sounds).
  • the grip part tactile sensation generating device 71, the seat tactile sensation generating device 72, and the mobile terminal tactile sensation generating device 73 are all tactile sensation generating devices that stimulate the tactile sensation of the driver by operating an actuator (electric motor, vibration element, etc.).
  • the portable terminal tactile sensation generating device 73 may be configured as, for example, a device that stimulates a driver's tactile sense by vibrating a vibration element (so-called vibrator).
  • the steering switch 74, the touch panel 75 with a tactile sensation generation function, and the remote operation device 76 are input devices for a user to give instructions to various devices mounted on the vehicle, and a driver that performs the input operation. It has a function to stimulate the sense of touch. That is, the steering switch 74, the touch panel 75 with a tactile sensation generating function, and the remote operation device (haptic device) 76 also function as a tactile sensation generating apparatus that stimulates the tactile sense of the driver.
  • An outline of the operation of the various notification devices 20A to 20D that is, the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, the awake state maintaining device 20D, and the notification control device 30 is as follows. .
  • the notification devices 20A to 20D request the notification control device 30 to notify the driver of information about different state quantities via various notification media.
  • Each of the notification devices 20A to 20D notifies the driver of information on the state quantity in a plurality of stages of notification modes according to the high necessity (risk level, urgency level, etc.) of appealing to the driver. This is requested to the notification control device 30.
  • the notification control device 30 performs notification in a predetermined notification mode based on requests from the notification devices 20A to 20D, and the notification mode requested by each of the notification devices 20A to 20D conforms to a notification rule described later. It plays a role of instructing to become a notification mode.
  • the notification mode appealing to the driver's vision is referred to as a visual notification mode
  • the notification mode appealing to the auditory sense is referred to as an auditory notification mode
  • the notification mode appealing to the sense of touch is referred to as a tactile notification mode.
  • the notification device included in the vehicle notification system 100 is not limited to the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, and the awake state maintaining device 20D. It is only necessary to provide a known notification device that performs notification in a notification manner that changes in a plurality of stages to the driver based on the state quantity targeted by the notification device.
  • the notification device 20 performs a notification of a series of operations in which the notification device 20 requests the notification control device 30 to execute notification and the notification control device 30 performs notification based on the request.
  • the notification by the notification device 20 includes a mode in which the notification device 20 causes the notification control device 30 to notify.
  • the display devices 51 to 56, the decorative lighting 57, the sound output devices 61 to 63, and the tactile sensation generation devices 71 to 76 serve as interfaces for the notification control device 30 to notify various information based on requests from the notification device 20. Function.
  • the display devices 51 to 56 display an image output from the notification device 20, thereby functioning as an interface (visual notification medium) for the notification device 20 to notify the driver of various information through the driver's vision.
  • the decorative lighting 57 also functions as a visual notification medium by emitting light with a light emission pattern (light color, blinking, etc.) based on an instruction from the notification device 20.
  • the audio output devices 61 to 63 output an audio based on an instruction from the notification device 20, thereby allowing the notification device 20 to notify the driver of various information through the driver's hearing (an audio notification medium and an audio notification medium).
  • the tactile sensation generating devices 71 to 76 function as an interface (noted as a tactile notification medium) for notifying the driver of various information through the driver's tactile sense by stimulating the driver's tactile sense based on an instruction from the notification device 20. To do.
  • the display devices 51 to 56 and the decorative lighting 57 it is not necessary to provide all of the display devices 51 to 56 and the decorative lighting 57, and it is sufficient to provide at least one.
  • the constituent elements included in the vehicle notification system 100 are connected to each other via a known in-vehicle network so that they can communicate with each other.
  • the in-vehicle sensor group 11 is a variety of sensors that detect the state of the host vehicle. For example, a vehicle speed sensor, an acceleration sensor, a gyro sensor, a GNSS receiver, a steering angle sensor, a brake stroke sensor, an accelerator pedal sensor, a direction indication A lever position sensor and the like are included.
  • the vehicle speed sensor detects the traveling speed of the host vehicle
  • the acceleration sensor detects the acceleration acting on the host vehicle.
  • the GNSS receiver acquires data indicating the current position of the GNSS receiver by receiving radio waves from a satellite used in GNSS (Global Navigation Satellite System).
  • GNSS Global Navigation Satellite System
  • the GNSS receiver may be a GPS receiver.
  • the gyro sensor detects the rotational angular velocity around the vertical axis of the host vehicle, and the steering angle sensor detects the steering angle based on the steering angle.
  • the brake stroke sensor detects the depression amount of the brake pedal, and the accelerator pedal sensor detects the depression amount of the accelerator pedal.
  • the direction indicating lever position sensor detects whether the direction indicating lever is in a left turn position or a right turn position. Data detected by various sensors included in the in-vehicle sensor group 11 is sequentially output to the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, the awake state maintaining device 20D, and the like.
  • the periphery monitoring camera 12 is a camera having a predetermined range around the host vehicle as a shooting range.
  • the peripheral monitoring camera 12 may be realized by one camera or may be realized by a plurality of cameras.
  • a front camera 12A, a rear camera 12B, a left side camera 12C, and a right side camera 12D are provided.
  • the front camera 12A is installed, for example, in the vicinity of the electronic room mirror in the vehicle interior so as to photograph a predetermined range in front of the host vehicle.
  • the rear camera 12B is installed, for example, on the upper part of the rear window so as to capture a predetermined range behind the host vehicle.
  • the left side camera 12C may be installed, for example, in the vicinity of the left door, the left front fender, or the like so that a predetermined range from the left side to the rear side of the host vehicle is the shooting range.
  • the right side camera 12D may be installed, for example, in the vicinity of the right door, the right front fender, or the like so that a predetermined range from the right side to the rear side of the host vehicle is the shooting range.
  • an infrared camera or the like can be employed in addition to an optical camera such as a CCD camera.
  • the peripheral monitoring camera 12 is realized by an optical camera.
  • the image data (or video signal) captured by the periphery monitoring camera 12 is also transmitted to a predetermined notification device 20 such as an inter-vehicle distance notification device 20A in addition to a predetermined notification medium such as an electronic room mirror 54 and an electronic side mirror 55. Output sequentially.
  • the periphery monitoring camera 12 is configured such that the front, rear, left side, and right side of the host vehicle are set as shooting ranges, but the present invention is not limited thereto. As another aspect, it may be configured such that only a part (for example, the front side) around the own vehicle is set as the shooting range.
  • the detection target sensor 13 detects the distance, relative position, and relative speed of the detection target existing in a predetermined range around the host vehicle.
  • a well-known millimeter wave radar, laser radar, infrared sensor, ultrasonic sensor, or the like can be used.
  • the detection target sensor 13 is realized by a millimeter wave radar. That is, the detection target sensor 13 has a distance to the detection target and the detection target based on a shift or phase change between the transmission time of the exploration wave and the reception time of the reflected wave of the exploration wave. Detect direction and relative speed.
  • the detection object sensor 13 may also be realized by one sensor or a plurality of sensors.
  • the detection target sensor 13 detects a detection target existing in a predetermined range behind the host vehicle and a front detection target sensor 13A that detects a detection target existing in a predetermined range in front of the host vehicle.
  • the rear detection object sensor 13B is provided.
  • the forward detection target sensor 13A may be installed near the center of the front bumper so as to transmit the exploration wave to a predetermined range in front of the host vehicle.
  • the rear detection object sensor 13B may be installed near the center of the rear bumper so as to transmit the exploration wave to a predetermined range behind the host vehicle.
  • the detection target object sensor for detecting the detection target object of the left side and the right side of the own vehicle in this embodiment, it is not restricted to this. That is, it is good also as a structure provided with the detection target sensor which exists in each predetermined range of the left side and the right side.
  • an omnidirectional laser radar or the like may be used as the detection object sensor. In this case, the front, rear, left side, and right side detection target objects can be detected by the omnidirectional detection target sensor.
  • the driver monitor system 14 is a system that acquires information for determining the state of the driver (sleeping or looking aside).
  • the driver monitor system 14 includes a driver monitor 14A that captures a driver's face image, a biometric information sensor 14B that measures biometric information of the driver, and the like.
  • the driver monitor 14A is an optical camera, for example, and sequentially captures a range including the driver's face (for example, every 100 milliseconds).
  • the driver monitor 14A is installed on the steering column cover.
  • driver monitor 14A may be installed in the upper part by the side of the driver's seat of a windshield.
  • the driver monitor 14A may employ an infrared camera that can capture an image even in an environment with little visible light by detecting infrared rays.
  • the biological information sensor 14B is one of a brain wave sensor that measures brain waves, a blood pressure sensor that measures blood pressure, a pulse sensor that measures heart rate, a heart rate sensor that measures heart rate, and a respiratory sensor that measures respiration rate. It may be realized by a plurality of combinations. These sensors may be incorporated in the driver's seat, may be provided on the steering wheel, or may be mounted on the driver's wrist, for example.
  • Image data captured by the driver monitor 14A and data detected by the biological information sensor 14B are sequentially output to the awake state maintaining device 20D.
  • the driver monitor system 14 may be configured to include either the driver monitor 14A or the biological information sensor 14B.
  • the HUD 51 is a well-known head-up display that displays various information by projecting a virtual image on a part of the windshield in front of the driver's seat. For example, the HUD 51 displays an image indicating the guidance route and an icon image indicating the inter-vehicle distance from the preceding vehicle superimposed on the actual road.
  • a HUD image an image projected on the windshield by the HUD 51 is referred to as a HUD image.
  • the area on the windshield (51A in FIG. 2) on which the HUD image is displayed is formed below the driving field of view to be secured when the driver performs driving, and the driver visually recognizes the front of the vehicle.
  • the HUD image can be visually recognized. As a result, the amount of line-of-sight movement of the driver is reduced, the focus adjustment load can be reduced, and safety can be improved.
  • the meter display 52 is arranged at the upper part of the driver panel side of the instrument panel, and displays various information such as the vehicle speed, the rotational speed of the engine (internal combustion engine), the fuel remaining amount in the fuel tank, and the like.
  • the meter display 52 is capable of full color display, for example, and can be configured using a liquid crystal display, an organic EL display, or the like.
  • the center display 53 is arranged near the center of the instrument panel in the vehicle width direction.
  • the center display 53 is also capable of full color display, and can be configured using a liquid crystal display, an organic EL display, or the like.
  • the electronic rearview mirror 54 is a device that enables the driver to visually recognize the rear by displaying an image taken by the rear camera 12B instead of the conventional rearview mirror.
  • the image processing device (not shown) provided in the electronic room mirror 54 controls the range displayed on the electronic room mirror 54 in the range captured by the rear camera 12B and the display mode of the image by a known method. do it.
  • the electronic side mirror 55 is a device that displays images taken by the left side camera 12C and the right side camera 12D instead of the conventional door mirror or fender mirror. By looking at the driver and the electronic side mirror 55, the range from the left side to the rear left side of the host vehicle and the range from the right side to the rear right side can be indirectly visually recognized.
  • the electronic side mirror 55 includes a left electronic side mirror 55L that displays an image captured by the left side camera 12C and a right electronic side mirror 55R that displays an image captured by the right side camera 12D.
  • the range displayed on the left electronic side mirror 55L and the display mode of the image may be controlled by a known method by an image processing device (not shown) provided in the left electronic side mirror 55L. The same applies to the right electronic side mirror 55R.
  • the decorative lighting 57 is a light source provided around the driver's seat in the passenger compartment, and is realized by, for example, a light emitting diode (LED).
  • the decorative lighting 57 is configured to be able to emit light by switching light of a plurality of colors defined in the notification rule.
  • the side speaker 61 includes a left side speaker 61L and a right side speaker 61R respectively provided at both ends in the vehicle width direction of the instrument panel as shown in FIG.
  • the left side speaker 61L and the right side speaker 61R are both known sound output devices, and output sound according to instructions from various notification devices 20A to 20D and the notification control device 30.
  • the center speaker 62 is an audio output device installed near the center of the instrument panel in the vehicle width direction.
  • the center speaker 62 also outputs sound according to instructions from the various notification devices 20A to 20D and the notification control device 30.
  • the grip portion tactile sensation generating device 71 is a tactile sense generating device provided in the grip portion of the steering wheel.
  • the grip part tactile sensation generating device 71 operates according to instructions from the notification device 20 and the notification control device 30 to stimulate the driver's tactile sense.
  • the arousal state maintaining device 20D gives a stimulus to the driver's hand by vibrating the grip part tactile sensation generating device 71 at a predetermined strength or frequency or generating a reaction force.
  • the seat tactile sensation generating device 72 is, for example, a tactile sensation generating device provided on the seat surface of the driver's seat.
  • the seat tactile sensation generating device 72 also operates according to instructions from the notification device 20 and the notification control device 30 to stimulate the driver's tactile sense.
  • the seat tactile sensation generating device 72 is provided on the entire driver's seat, that is, on a seating portion, a backrest portion, and a headrest portion.
  • the mechanism for stimulating the sense of touch of the driver may be provided only in a part of the seating portion, the backrest portion, and the headrest portion.
  • the steering switch 74 is a mechanical switch provided around the steering wheel. By operating the steering switch 74, for example, the driver can switch the operation states (on / off) of the notification devices 20A to 20D.
  • the steering switch 74 includes an actuator, and can change an operational feeling such as a reaction force applied to a driver operating the steering switch 74.
  • the touch panel 75 with a tactile sensation generation function is a touch panel laminated on the display panel of the center display 53.
  • the driver can operate various devices mounted on the vehicle by touching the touch panel 75 with a tactile sensation generation function.
  • the touch panel 75 with a tactile sensation generating function includes an actuator, and can change a reaction force applied to a driver who performs a touch operation.
  • the remote operation device 76 is an input device (a so-called haptic device) that is arranged on the center console and remotely operates various devices mounted on the vehicle such as a navigation device and an air conditioner.
  • the remote operation device 76 is linked to the center display 53, and the driver operates the remote operation device 76 to move the cursor displayed on the center display 53 or to select an icon pointed to by the cursor. can do.
  • the remote operation device 76 can change the operation load, the displacement amount, the generated force, the click feeling, etc. by controlling the operation of the actuator. For example, when the cursor moves on a selectable icon image, the remote operation device 76 operates a built-in actuator to give a tactile sensation as if the switch was actually touched to the driver's hand. More specifically, the sign of the reaction force applied to the driver's hand is changed from a positive value (that is, a repulsive force) to a negative value (a pulling force), so that the cursor is drawn into the switch. Give the driver a feeling of going. Parameters such as an operation load, a displacement amount, a generated force, and a click feeling are changed based on an instruction from the notification device 20.
  • the narrow-area communication unit 81 is a communication interface for the notification control device 30 to perform wireless communication with the mobile terminal 4 by a known short-range wireless communication technology.
  • the portable terminal 4 is used as a notification interface by various notification devices 20A to 20D in a state where communication connection with the notification control device 30 is established via the narrow area communication unit 81.
  • the notification control device 30 will be described. Then, an example of a structure of the alerting
  • the inter-vehicle distance notification device 20A causes the notification control device 30 to perform notification in a notification mode according to the distance between the vehicle existing in front of the host vehicle (that is, the preceding vehicle) and the host vehicle during the operation of the following traveling function. Request. That is, the inter-vehicle distance notification device 20A is a device that notifies the driver of the inter-vehicle distance between the preceding vehicle and the host vehicle. The inter-vehicle distance is equivalent to the state quantity to be notified to the inter-vehicle distance notification device 20A. The distance between the preceding vehicle and the host vehicle may be specified based on the detection results of the front detection target sensor 13A and the front camera 12A.
  • the follow-up running function is a function for controlling the drive system of the vehicle so that the inter-vehicle distance from the preceding vehicle is maintained at a predetermined distance (target inter-vehicle distance).
  • a known technique may be used for this follow-up running function.
  • the rear vehicle notification device 20B is present in the current traveling lane and other vehicles (hereinafter simply referred to as a rear vehicle) existing behind the host vehicle (including diagonally behind) in the lane adjacent to the traveling lane (referred to as an adjacent lane). It is a device that informs the driver of the distance between vehicles. That is, the rear vehicle notification device 20B is a device that notifies the driver of information about the inter-vehicle distance between the rear vehicle and the host vehicle.
  • the presence / absence of the rear vehicle, the distance from the host vehicle, and the like may be obtained by using the detection result of the rear detection object sensor 13B or the image data taken by the peripheral monitoring camera 12.
  • the lane departure notification device 20C determines whether or not the host vehicle is likely to depart from the lane (traveling lane) in which the host vehicle is currently traveling, and performs notification in a notification mode according to the determination result. This is requested to the notification control device 30. That is, the lane departure notifying device 20C is a device that notifies the driver that the host vehicle is about to depart from the traveling lane.
  • the traveling lane may be specified by detecting a white line from the image of the front camera 12A. Also, whether or not the host vehicle is about to depart from the driving lane is determined by whether or not the host vehicle is approaching the white line, and if it is approaching, the vehicle between the host vehicle and the approaching white line. What is necessary is just to determine based on the distance of the width direction, approach speed, etc.
  • reporting control apparatus 30 is made to alert
  • the state quantity for the lane departure notifying device 20C is a parameter used for calculating the possibility that the own vehicle departs from the lane or the possibility.
  • the state quantity is a distance in the vehicle width direction between the host vehicle and the white line, and an approach speed.
  • the lane departure notifying device 20C operates when traveling at a predetermined speed (for example, 60 km / h) or more. Further, the lane departure notifying device 20C functions when the driver recognizes that the driver intentionally drives the vehicle so that it crosses the white line, such as when operating a blinker or accelerating. The notification request by is canceled.
  • a predetermined speed for example, 60 km / h
  • the lane departure notifying device 20C functions when the driver recognizes that the driver intentionally drives the vehicle so that it crosses the white line, such as when operating a blinker or accelerating. The notification request by is canceled.
  • the arousal state maintaining device 20D estimates the driver's arousal level and requests the notification control device 30 to perform notification in a notification mode according to the estimated awakening level. For example, when the degree of arousal is below a predetermined threshold, notification for awakening the driver is performed. Moreover, the alerting
  • the awakening degree here represents the degree to which the driver's consciousness is clear, and the case where the awakening degree is small means that the driver is in a sleepy state.
  • This arousal level corresponds to a state quantity for the awake state maintaining apparatus 20D.
  • the driver's awakening degree may be estimated based on the driver's face image taken by the driver monitor 14A and the detection result of the biological information sensor 14B.
  • a known technique may be applied to the method for estimating the driver's arousal level.
  • the degree of arousal may be determined from the face image based on the face orientation, the degree of eyelid opening, the pattern of eyelid movement, and the like.
  • the notification control device 30 is configured as a normal computer, and includes a well-known CPU, a non-volatile memory such as a ROM and a flash memory, a volatile memory such as a RAM, an I / O, and a bus line connecting these configurations ( All are not shown).
  • the storage unit 31 included in the notification control device 30 is a storage area realized by a nonvolatile memory such as a flash memory or a ROM.
  • the storage unit 31 stores programs and data for executing various processes, and data indicating notification rules described later (referred to as notification rule data).
  • the CPU realizes various functions by executing the above-described program.
  • the notification control device 30 includes a notification medium management unit F31, a notification device management unit F32, a notification request reception unit F33, and a notification execution unit F34 as functional blocks as shown in FIG.
  • the notification medium management unit F31 recognizes and manages a device that functions as a notification medium. More specifically, the notification medium management unit F31 indicates that the display devices 51 to 56, the decorative lighting 57, the sound output devices 61 to 63, and the tactile sense generation devices 71 to 76 can be used as notification media. Hold as.
  • the portable terminal display 56, the portable terminal speaker 63, and the portable terminal tactile sensation generating device 73 are recognized as being usable as a notification medium is a case where communication connection with the portable terminal 4 is established.
  • the notification medium management unit F31 performs processing for recognizing a device added to the in-vehicle network as a notification medium. Thereby, the various alerting
  • the notification device management unit F32 manages the notification device 20 included in the vehicle notification system 100. That is, the notification device management unit F32 according to the present embodiment has an internal state that the vehicle notification system 100 includes an inter-vehicle distance notification device 20A, a rear vehicle notification device 20B, a lane departure notification device 20C, and a wakefulness maintaining device 20D. Hold as. Each of these notification devices 20A to 20D corresponds to a request source (notification request source) that requests to perform notification using a predetermined notification medium.
  • the notification device management unit F32 provides information on devices that can be used as the notification medium acquired by the notification medium management unit F31 to the notification devices 20A to 20D.
  • the information on the notification medium includes the type of the notification medium, the model number of the device, the application, the installation location, the input / output data correspondence format, and the like.
  • the use of the electronic room mirror 54 is a display of an image taken by the rear camera 12B.
  • the notification medium is a display device, the screen size and the like are also included in the information of the notification medium.
  • Each of the notification devices 20A to 20D can acquire information on the notification medium from the notification device management unit F32, thereby selecting an appropriate notification medium and performing information notification using the notification medium.
  • the notification devices 20A to 20D may directly acquire information on notification media that can be used via the in-vehicle network.
  • the notification device management unit F32 provides the notification rule data stored in the storage unit 31 to each of the notification devices 20A to 20D, and the notification mode requested by each of the notification devices 20A to 20D An instruction is given so that the notification mode conforms to the notification rule.
  • the notification rule is a rule that defines a notification mode at each stage and a pattern for changing the notification mode according to the stage when the notification device 20 changes the notification mode in stages.
  • the notification rule defines the number of notification modes that each notification device 20A to 20D changes stepwise.
  • the degree of strength with which the notification device 20 appeals information to the driver is expressed in four stages (referred to as notification levels). That is, each of the notification devices 20A to 20D notifies the notification mode by changing the notification mode in four stages according to the notification level.
  • the notification level is determined to be higher as the necessity of appealing information targeted for notification to the driver in the notification device 20 is higher. For example, if the notification level corresponds to the risk level, the notification level is set higher as the risk level is higher. More specifically, when the notification level is 1, it is a safe state, when the notification level is 2, a weak attention state, when the notification level is 3, a strong attention state, and when the notification level is 4. Should represent each dangerous state.
  • Each notification device 20 performs notification in a notification mode that attracts the driver's attention by increasing the stimulus given to the sensory organ of the driver as the notification level is higher.
  • the notification level is set to four levels, but the present invention is not limited to this. There may be five stages or three stages.
  • the notification rule includes at least one element (referred to as a visual element) constituting a visual notification aspect, at least one element (referred to as an auditory element) included in an auditory notification aspect, and at least constituting a tactile notification aspect.
  • a value for each notification level of one type of element (referred to as a tactile element) is determined.
  • reporting aspect here refers to the element which changes an alerting
  • determining a value for each notification level of an element means determining a change pattern corresponding to the notification level of the summary element.
  • elements constituting the visual notification mode there are various elements such as display color (in other words, wavelength of light), brightness, presence / absence of blinking, blinking speed, and the like. Further, the size of the icon image displayed on the display device, the content of the display image (such as a symbol), the content of the text, and the like also correspond to visual elements.
  • the icon image here is an image that simply represents information to be notified to the driver, for example.
  • the icon image includes a marker image that points to a detection target to be noticed by the driver.
  • the marker image is an image that highlights the detection target object by surrounding the detection target object to which the driver's attention is directed by a rectangular frame (that is, a marker frame).
  • the notification rule prescribes values for each notification level with respect to the wavelength of light (that is, the color), the display size of the icon image, and the thickness of the marker frame line.
  • the wavelength is set so that the wavelength is shortened to 540, 580, 620, and 660 nm as the notification level increases from 1, 2, 3, and 4 as shown in FIG.
  • the color of the image displayed on the display devices 51 to 56 and the color of the light output from the decorative lighting 57 (collectively, these are used as display colors) have a notification level of 1 to 2, 3, 4 As it goes up, it changes in the order of green, yellow, orange, and red.
  • the visual notification mode is stronger to the driver's vision as the notification level increases by making the wavelength closer to the red wavelength according to the notification level. It becomes a mode to give a stimulus.
  • the visual notification mode is a mode that gives the driver a sense of crisis and seriousness.
  • a mode that gives the driver a sense of crisis or seriousness is also referred to as a sharper notification mode.
  • the proportionality constant of the notification level Lv here is 40 nm as an example.
  • the display color is an element used regardless of the content of the information to be notified when the notification device performs visual notification.
  • the display color is common not only when the display devices 51 to 56 capable of changing a relatively large number of elements are employed as the notification medium, but also when the decorative lighting 57 is employed as the notification medium. Can be changed.
  • the notification rule by specifying a value for each notification level Lv of the display color, at least the notification device 20 that performs visual notification has a common display color according to the notification level Lv. Informs at. Thereby, the change pattern according to the notification level Lv of the visual notification mode by the notification device 20 can be provided with commonality.
  • the display size of the icon image is such that the display magnification Pb of the icon is 1.2, 1.4, 1 as the notification level increases to 2, 3 and 4 with reference to the display size when the notification level Lv is 1. .6. That is, the icon display magnification Pb is increased in conjunction with the notification level Lv.
  • a notification that employs a mode in which an icon image is displayed on a predetermined display device as a visual notification mode The device 20 enlarges and displays the icon image as the notification level increases. That is, the visual notification mode of the notification device 20 adopting a mode in which an icon image is displayed on a predetermined display device as the visual notification mode can be made common.
  • notification devices 20 that perform visual notification adopt a mode in which an icon image is displayed on a predetermined display device as a visual notification mode. It is assumed that the rule for the element is not applied to the notification device 20 that does not employ a mode in which an icon image is displayed on a predetermined display device as a visual notification mode.
  • every visual element is for every alerting
  • the present invention is not limited to this. Since the display area provided in the display device is finite, visual elements such as a change in display size and display frame line thickness may be exceptionally processed so as not to be affected by the notification rule.
  • the notification device 20 adopting a mode for displaying a marker image as a visual notification mode is any notification device, The higher the notification level Lv, the thicker the frame of the marker image is displayed.
  • the rules and specific setting values for changing the display color, the icon display size, and the thickness of the marker frame line according to the notification level Lv are exemplified.
  • the elements to be changed in conjunction with the notification level Lv are not limited to these.
  • the blinking speed of the display image may be linked to the notification level Lv.
  • the notification medium used for notification by the notification device 20 includes a light source, the luminous intensity (or luminance) may be increased according to the notification level Lv.
  • the auditory element There are various auditory elements such as a sound volume such as a warning sound (so-called buzzer) and a voice message, a tone color (that is, a frequency) of the warning sound, a warning sound output duration, and a warning sound output frequency.
  • a sound volume such as a warning sound (so-called buzzer) and a voice message
  • a tone color that is, a frequency
  • the notification rule prescribes a value for each notification level Lv with respect to the frequency of the warning sound and the volume of the sound.
  • the frequency of the warning sound is increased to 500, 1000, 1500, and 2000 Hz as the notification level Lv increases to 1, 2, 3, and 4 as shown in FIG. Thereby, the stimulus given to the driver's hearing becomes sharper according to the notification level Lv.
  • the proportional constant of the notification level Lv here is 500 Hz as an example, but 400 Hz or 600 Hz may be used. Further, it may be expressed by a linear function having an initial value.
  • the volume Qb of the output sound is increased as the notification level Lv is increased.
  • the sound volume Qb is set to 55, 60, 65, and 70 [dB] as the notification level Lv increases to 1, 2, 3, and 4.
  • the volume Qb is an auditory element that is commonly used by any notification device as long as it is the notification device 20 that performs auditory notification. That is, it is an element that utilizes not only the notification device 20 that outputs a warning sound but also the notification device 20 that outputs a voice message. Therefore, in the notification rule, by defining a value for each notification level Lv of the volume, the notification device 20 that performs at least auditory notification is a change in volume that is common to all the notification devices 20 according to the notification level Lv. Announcement is performed with a pattern. Thereby, the change pattern according to the notification level Lv of the auditory notification mode by the notification device 20 can be made common.
  • examples of rules and specific setting values for changing the volume Qb and the frequency Qa of the warning sound according to the notification level Lv are given as auditory elements.
  • the warning sound output duration, output frequency, and the like may be linked to the notification level Lv. For example, the higher the notification level Lv, the longer the output duration of the warning sound, or the higher the notification level Lv, the higher the output frequency of the warning sound.
  • tactile elements There are various tactile elements such as vibration frequency, vibration intensity, vibration duration, and vibration interval.
  • tactile sensation generation function provided in an input device such as the remote operation device 76
  • an operation load, a generated force, a click feeling, a feeling of unevenness, and the like can be set as control parameters.
  • the notification rule prescribes a value for each notification level Lv with respect to the vibration frequency and the strength of vibration.
  • the vibration frequency Ra may be increased to 50, 100, 150, and 200 Hz as the notification level Lv increases to 1, 2, 3, and 4. Thereby, the stimulus given to the tactile sense of the driver becomes sharper according to the notification level Lv.
  • the proportional constant of the notification level Lv is 50 [Hz] as an example, but may be 40 [Hz] or 60 [Hz]. Moreover, you may have an initial value.
  • the notification device 20 By determining the value for each notification level Lv of the vibration frequency Ra in the notification rule, the notification device 20 that performs notification using at least a tactile sensation has a common vibration frequency Ra according to the notification level Lv. Carry out notifications. Thereby, the change pattern according to the notification level Lv of the tactile notification mode by the notification device 20 can be made common.
  • the acceleration Rb corresponding to the strength of vibration may be increased as the notification level Lv increases.
  • the acceleration Rb is set to 20, 40, 60, 80 [m / s ⁇ 2] as the notification level Lv increases to 1, 2, 3, and 4.
  • force (unit: N) instead of acceleration (unit: m / s ⁇ 2) may be adopted as an element corresponding to the strength of vibration.
  • the values for each notification level Lv are determined for the vibration frequency Ra and the acceleration Rb of the vibration element, but the vibration duration time, vibration interval, and the like may be linked to the notification level Lv.
  • the vibration duration time may be increased as the notification level Lv is increased, and the vibration interval may be decreased as the notification level Lv is increased.
  • the values of the various elements exemplified above as visual elements, auditory elements, and tactile elements all increase (or decrease) at a constant rate as the notification level Lv increases. That is, the change pattern according to the notification level Lv of each element is unified. Therefore, a sense of unity can be generated in the degree of increase in the notification level Lv that the driver feels through each sensory organ. Thereby, the driver can feel the change of the notification level Lv and the notification level Lv in any of visual, auditory, and tactile senses.
  • the notification request receiving unit F33 acquires a notification request signal input from the notification device 20, and passes it to the notification execution unit F34.
  • the notification request signal includes data specifying a notification medium used for notification and a notification mode on the notification medium.
  • the notification execution unit F34 performs notification based on the notification request signal acquired by the notification request reception unit F33. That is, the notification medium specified by the notification device 20 is operated in the specified notification mode.
  • Each of the notification devices 20A to 20D includes a state quantity acquisition unit F21, a notification level determination unit F22, a notification medium selection unit F23, and a notification processing unit F24 as functional blocks as shown in FIG.
  • the functional blocks F21 to F24 provided in each notification device 20 differ only in the target state quantity, the notification medium used for notification, and the determination criteria for the notification level Lv. Therefore, for the sake of convenience, each functional block will be described taking the inter-vehicle distance notification device 20A as an example.
  • the code of the state quantity acquisition unit is F21A
  • the code of the notification level determination unit is F22A
  • a notification medium is selected.
  • the code of the part is represented as F23A
  • the code of the notification processing unit is represented as F24A.
  • the state quantity acquisition unit F21A acquires a state quantity that is a target of notification by the inter-vehicle distance notification device 20A. As described above, the inter-vehicle distance notification device 20A performs notification in a manner corresponding to the inter-vehicle distance from the preceding vehicle. That is, the state quantity acquisition unit F21A acquires the inter-vehicle distance from the preceding vehicle.
  • the notification level determination unit F22A determines the notification level Lv based on the state quantity acquired by the state quantity acquisition unit F21A (here, the inter-vehicle distance from the preceding vehicle) and a preset target inter-vehicle distance.
  • the target inter-vehicle distance may be a constant value regardless of the traveling speed, or a different value may be applied depending on the traveling speed.
  • a plurality of patterns for changing the target inter-vehicle distance that changes according to the traveling speed may be prepared.
  • it has a plurality of patterns such as a long-distance pattern that maintains a relatively long inter-vehicle distance, a short-distance pattern that maintains a relatively short inter-vehicle distance, and a middle-distance pattern that corresponds to the middle of the long-distance and short-distance patterns.
  • a long-distance pattern that maintains a relatively long inter-vehicle distance
  • a short-distance pattern that maintains a relatively short inter-vehicle distance
  • a middle-distance pattern that corresponds to the middle of the long-distance and short-distance patterns.
  • the target inter-vehicle distance at a traveling speed of 80 km / h is 50 m.
  • the notification level determination unit F22A determines the notification level Lv to be 1 when the inter-vehicle distance is equal to or greater than a first threshold (for example, 50 m) determined according to the target inter-vehicle distance. Further, when the inter-vehicle distance is smaller than the first threshold and equal to or larger than a second threshold (for example, 45 m) smaller than the first threshold, the notification level Lv is determined to be 2.
  • a first threshold for example, 50 m
  • a second threshold for example, 45 m
  • the notification level Lv is determined to be 3.
  • the notification level Lv is determined to be 4.
  • the notification level determination unit F22A determines that the notification level Lv is higher as the inter-vehicle distance is smaller.
  • the thresholds for determining these notification levels Lv may be designed as appropriate.
  • the notification medium selection unit F ⁇ b> 23 ⁇ / b> A selects a notification medium to be used for notification out of devices that can be used as the notification medium acquired from the notification control device 30.
  • a notification medium used for notification may be fixed or dynamically changed.
  • the HUD 51, the right side speaker 61R, and the grip portion tactile sense generating device 71 are selected.
  • the notification processing unit F24A determines a notification mode for each notification medium selected by the notification medium selection unit F23A according to the notification level Lv determined by the notification level determination unit F22A, and indicates the notification mode in the notification medium. Data (output data) is generated. Then, a notification request signal including output data is output to the notification control device 30.
  • the notification processing unit F24 generates, as output data, data for displaying the icon image Icn shown in FIG. 6 on the HUD 51 (referred to as HUD data) and outputs the data to the notification control device 30.
  • the HUD data includes data designating the display color and size of the icon image Icn and the display position in the HUD image.
  • FIG. 6 shows an example of a display mode of the icon image Icn when the notification level Lv is 1. Further, it is assumed that the icon image Icn is displayed on the HUD 51 while the inter-vehicle distance notification device 20A is operating.
  • the notification processing unit F24 outputs data (sound output data) indicating the frequency and volume of the warning sound output from the right side speaker 61R to the notification control device 30 as output data.
  • the audio output data may be audio data that is output from the right side speaker 61R as it is, or data that specifies the volume and frequency.
  • the notification processing unit F24 outputs data indicating a mode of vibrating the grip unit tactile sensation generating device 71 to the notification control device 30.
  • the notification mode for each notification medium is determined based on the notification level Lv determined by the notification level determination unit F22A and the notification rule indicated in the notification rule data. That is, the notification mode determined by the notification processing unit F24A for each notification medium is a mode according to the notification rules.
  • the notification processing unit F24A changes the display color of the icon image Icn to green, yellow, orange, and red according to the notification level Lv, and displays the display size based on the notification level Lv. It is displayed in a size that is 1 time, 1.2 times, 1.4 times, and 1.6 times the size.
  • the display size (see FIG. 6) based on the icon image Icn is displayed in green.
  • the notification level Lv is 4, as shown in FIG. 7, it is displayed in 1.6 times the display size shown in FIG. 6 and in red.
  • the icon image Icn is configured to include three block figures arranged in the vehicle traveling direction regardless of whether the notification level Lv is 1 or 4. That is, the notification processing unit F24A displays the icon image Icn including a certain number (three in this case) of block graphics regardless of the notification level Lv, but is not limited thereto. The number of block graphics included in the icon image Icn may be changed according to the notification level Lv.
  • the number of block graphics included in the icon image Icn may be reduced. Since the inter-vehicle distance notification device 20A determines that the notification level Lv is higher as the inter-vehicle distance is shorter, the number of block figures plays a role of expressing the inter-vehicle distance from the preceding vehicle.
  • a warning sound having a frequency of a warning sound output from the right side speaker 61R of 500, 1000, 1500, 2000 [Hz] according to the notification level Lv is output, and the volume is also 55, 60, 65, It is increased according to 70 [dB] and the notification level Lv.
  • the vibration frequency when vibrating the grip part tactile sensation generating device 71 is increased in the order of 50, 100, 150, 200 [Hz] according to the notification level Lv, and the acceleration is increased to 20, 40, Increase in the order of 60, 80 [m / s ⁇ 2].
  • FIG. 8 shows an example in which visual notification is performed at any notification level, while auditory notification and tactile notification are employed when the notification level is 2 or higher.
  • the auditory notification is performed from the state where the notification level Lv is 2, the setting value of the auditory parameter defined when the notification level Lv of the notification rule is 2 is applied.
  • the state quantity acquisition unit F21A, the notification level determination unit F22A, the notification medium selection unit F23A, and the notification processing unit F24A included in the inter-vehicle distance notification device 20A have been described above, but the same applies to the other notification devices 20.
  • the state quantity acquisition unit F21 provided in the rear vehicle notification device 20B may acquire the inter-vehicle distance between the host vehicle and the rear vehicle.
  • the vehicle to be notified may be a vehicle behind the own vehicle lane (that is, a succeeding vehicle).
  • the vehicle behind the adjacent lane corresponding to the change destination may be included in the notification target.
  • Whether or not the host vehicle is about to change the lane may be determined based on the position information of the direction indicating lever input from the in-vehicle sensor group 11 and the steering operation by the driver.
  • the rear vehicle traveling in the adjacent lane is about to change the lane to the traveling lane of the own vehicle
  • the rear vehicle may be included in the notification target.
  • the case where it is determined that the vehicle behind the adjacent lane is about to change lanes may be a case where blinking of the direction indicator lamp of the vehicle behind is detected from the image taken by the periphery monitoring camera 12.
  • the vehicle-to-vehicle communication is available and the information transmitted by the vehicle-to-vehicle communication includes the position information of the direction indicator lever of the transmitting vehicle
  • the direction indication included in the vehicle information transmitted from the rear vehicle The determination may be based on lever position information.
  • the notification level determination unit F22 may determine the notification level Lv based on the inter-vehicle distance between the host vehicle and the rear vehicle.
  • the notification medium employed by the lane departure notification device 20C may be, for example, the electronic room mirror 54, the electronic side mirror 55, the side speaker 61, and the grip portion tactile sense generating device 71.
  • the electronic side mirror 55 and the side speaker 61 may designate and use a device on the side (right side or left side) on which the host vehicle is changing lanes.
  • the rear vehicle notification device 20B employs the right electronic side mirror 55R as the visual notification medium, and as a visual notification mode, highlights the other vehicle approaching from the rear right side of the host vehicle with the marker image Mrk. Is adopted.
  • FIG. 9 shows a visual notification mode when the notification level determination unit F22 of the rear vehicle notification device 20B determines that the notification level Lv is 1. That is, in FIG. 9, the frame line of the marker image Mrk is displayed in green, and the frame line is displayed with a reference thickness. The area surrounded by the frame line of the marker image Mrk is adjusted according to the display size of the target vehicle on the display screen of the right electronic side mirror 55R.
  • FIG. 10 shows a visual notification mode when the notification level determination unit F22 of the rear vehicle notification device 20B determines that the notification level is 4. That is, in FIG. 10, the frame line of the marker image Mrk is displayed in red, and the thickness of the frame line Pc is 1.6 times the thickness of the frame line shown in FIG.
  • the visual notification mode (see FIGS. 6 and 7) by the inter-vehicle distance notification device 20A and the visual notification mode (see FIGS. 9 and 10) by the rear vehicle notification device 20B are compared.
  • the inter-vehicle distance notification device 20A displays the icon image Icn on the HUD 51 and changes the display mode (color and display size) according to the notification level Lv.
  • the rear vehicle notification device 20B displays the marker image Mrk on the right electronic side mirror 55R, and changes the display mode (color and thickness of the frame line) according to the notification level Lv.
  • each notification device displays the display color of the icon image Icn and the marker image Mrk in a color according to the notification rule according to the notification level Lv.
  • each notification device 20A, 20B performs notification in a visual notification mode according to a notification rule, so that the change pattern of the visual notification mode according to the notification level Lv has commonality (display color here). be able to. Then, the driver can recognize the notification level Lv in each notification device 20 from the display color.
  • the visual notification mode of the inter-vehicle distance notification device 20A and the rear vehicle notification device 20B has been described and the effects of the present embodiment have been described. However, the same effects can be achieved with the auditory notification mode and the tactile notification mode.
  • inter-vehicle distance notification device 20A and the rear vehicle notification device 20B have been described in detail.
  • the other notification devices 20C and D may be similarly designed.
  • the notification level determination unit F22 included in the lane departure notification device 20C is based on the distance in the vehicle width direction between the host vehicle and the white line and the moving speed of the host vehicle in the vehicle width direction (that is, the approach speed to the white line).
  • the notification level Lv may be determined.
  • the notification medium employed by the lane departure notification device 20C may be, for example, the meter display 52, the electronic side mirror 55, the side speaker 61, and the grip portion touch sense generation device 71.
  • the electronic side mirror 55 and the side speaker 61 may be used by specifying a device on the side (right side or left side) where a white line on which the host vehicle is likely to deviate exists.
  • the notification level determination unit F22 provided in the wakefulness maintaining device 20D may determine the notification level Lv according to the degree of wakefulness.
  • the notification medium selected by the notification medium selection unit F23 of the wakefulness maintaining device 20D is, for example, the meter display 52, the center display 53, the side speaker 61, the center speaker 62, the seat tactile generation device 72, the decorative lighting 57, or the like. That's fine.
  • the notification medium selected by the notification medium selection unit F23 may be increased according to the notification level Lv. Moreover, you may utilize the portable terminal display 56, the portable terminal speaker 63, and the portable terminal tactile sense production
  • each notification device 20 performs notification in the notification mode according to the notification rule, so that the change pattern according to the notification level Lv of the notification mode adopted by each notification device 20 Commonality can be provided. As a result, it is possible to reduce a sense of incongruity felt by the driver due to a difference in the change pattern of the notification mode for each notification device 20, and further, the notification mode currently being performed and the urgency and seriousness of the information being reported Can be recognized in association with each other.
  • the visual element, the auditory element, and the tactile element defined in the notification rule are uniquely determined according to the notification level, so that the driver can recognize the notification level Lv.
  • the frequency components are increased at a constant rate as the notification level Lv increases in any of the visual notification mode, the auditory notification mode, and the tactile notification mode.
  • the higher the frequency component the sharper the notification mode becomes, and the driver can easily detect that the notification is being performed.
  • the frequency component according to the notification level it is possible for the driver to easily detect that the information is being notified, and the urgency and seriousness of the information being notified is determined by the driver. Can be easily recognized.
  • the notification rule stipulates that the change pattern of the notification mode of the notification device 20 that performs notification using the elements specified in the notification rule is not different. That is, by introducing a notification rule, it is possible to suppress the diversity of notification modes implemented by the driver. By suppressing the diversity of notification modes implemented by the driver, it is possible to reduce the load required for the driver to recognize the information notified by the notification mode.
  • the vehicle notification system the notification control device, and the notification device are not limited to the above-described embodiment, and the following embodiment is also included in the technical scope of the present disclosure.
  • the following embodiment is also included in the technical scope of the present disclosure.
  • various modifications can be made without departing from the scope of the invention.
  • the notification device 20 requests the notification control device 30 to execute notification, and the notification control device 30 performs notification based on the request.
  • the configuration is not limited thereto.
  • the notification device 20 may directly output the data for output to the notification medium to perform notification.
  • the notification control device 30 and the various notification devices 20 are represented by separate blocks, but these may be realized by a single device.
  • the notification control device 30 may have a function corresponding to each of the various notification devices 20 as shown in FIG. 11 (this is a modified example). That is, the inter-vehicle distance notification unit F20A is the inter-vehicle distance notification device 20A, the rear vehicle notification unit F20B is the rear vehicle notification device 20B, the lane departure notification unit F20C is the lane departure notification device 20C, and the awake state maintaining unit F20D is the awake state. Each corresponds to the maintenance device 20D.
  • an indicator for example, a warning light
  • the lighting color of the indicator may be emitted in a color according to the notification rule. Good.
  • the interface for notifying the driver of information through the sense of touch may be installed on the accelerator pedal, the brake pedal, or the clutch pedal, or may be realized by combining them.
  • the detection target sensor 13 detects the vehicle
  • the detection target may be a guardrail, a pedestrian, a bicycle, or the like.
  • the driver is notified of the inter-vehicle distance from the preceding vehicle and the rear vehicle, the behavior of the host vehicle with respect to the traveling lane, and the driver's awakening state, but the present invention is not limited thereto.
  • the vehicle notification system 100 is based on information outside the host vehicle (traveling environment, etc.), information inside the host vehicle acquired by the in-vehicle sensor group 11, driver information acquired by the driver monitor system 14, and the like. This corresponds to a notification device 20 that performs notification.
  • the information outside the host vehicle includes a distance from an object around the host vehicle, a relative speed, the presence / absence of a signal, a lighting color, a road sign, a degree of congestion, a road surface condition, and the like.
  • state quantities using information outside and inside the own vehicle include the degree of danger of steering operation with respect to the road surface condition (magnitude of frictional force), the degree of excess of the own vehicle running speed with respect to the statutory speed, and fuel consumption and so on.
  • the driver information corresponds to the line-of-sight direction, continuous operation time, continuous travel distance, and the like.
  • the state quantity determined based on the information of the driver in addition to the above-mentioned degree of arousal, the degree of fatigue, the possibility of driving aside, etc. are assumed.
  • the vehicle notification system notifies the driver of information on the predetermined state quantity via at least one of the driver's visual sense, auditory sense, and tactile sense.
  • a plurality of notification devices are provided, and each of the plurality of notification devices determines a notification level representing the strength of appealing information to the driver from a state quantity targeted by the notification device, and according to the determined notification level Notification is performed by changing the notification mode stepwise.
  • the notification mode at each notification level is determined based on a predetermined notification rule that defines a notification mode for each notification level.
  • the notification rule includes at least one type of visual element among visual elements that are elements that change the number of notification level steps adopted by each notification device and a notification mode appealing to the driver's vision (hereinafter, visual notification mode).
  • auditory notification mode a value for each notification level of at least one type of auditory element among the auditory elements that are elements that change the mode of notification appealing to the driver's hearing
  • a tactile notification mode A value for each notification level of at least one type of tactile element of tactile elements that are elements for changing a notification mode
  • Each notification device included in the vehicle notification system performs notification in a notification mode according to a common notification rule.
  • This notification rule defines values for each notification level of visual elements, auditory elements, and tactile elements. Of the various elements that change the notification mode, the set value of the element defined by the notification rule is uniquely determined according to the notification level.
  • the respective visual notifications are the same aspect (ie, the same color).
  • the element is changed in the same pattern in accordance with the notification rule in each notification device.
  • the vehicle notification system commonality can be provided in the pattern of change according to the notification level of the notification mode of each notification device.
  • the visual element mode defined by the notification rule is uniquely determined according to the notification level even if the notification device is different, the driver can recognize the notification level from the visual element mode.
  • the notification rule is set so that the strength (for example, color, size, brightness, etc.) that the visual element appeals to the driver's sensory organ (here, vision) increases as the notification level increases. Therefore, the recognizability of the notification level by the driver can be improved.
  • the set value for each notification level of the visual element, the auditory element, and the tactile element is set such that the higher the notification level is, the stronger the element appeals to the driver's sensory organ. That is, the notification level represents the strength of appealing the information to be notified to the driver.
  • the high notification level corresponds to the high degree of urgency and risk
  • the fact that the driver can easily recognize the notification level means that the urgency and risk level of the information being notified is high. It means that the driver can easily recognize it.
  • a vehicle notification system in a vehicle notification system having a plurality of notification devices that notify information about different objects in stages, the urgency and seriousness that notification by a certain notification device is trying to convey to the driver Can be easily recognized.
  • the notification control device is a device that requests to notify information about a predetermined state quantity, and appeals to the driver information to be notified based on the state quantity.
  • a notification medium for determining a notification level representing strength and requesting notification in a notification mode corresponding to the notification level, and a notification medium for notifying the driver of information information is provided to the driver through the visual sense of the driver.
  • Visual notification medium used to notify the driver auditory notification medium used to notify the driver of information via the driver's hearing, and tactile sense used to notify the driver of information via the driver's sense of touch
  • a notification control device that is used in a vehicle notification system that includes at least one notification medium and that controls operations of the notification medium and the notification device.
  • a notification request receiving unit that receives a request from the notification device, a notification execution unit that realizes notification of the mode requested by the notification device by operating the notification medium based on the request received by the notification request reception unit; And a notification device management unit that instructs the notification mode requested by the notification device to be a notification mode according to a notification rule that defines a notification mode for each notification level, and the notification rule is a notification level adopted by the notification device.
  • the number of stages, the value for each notification level of at least one visual element among the visual elements that are elements for changing the notification mode using the visual notification medium, and the notification mode using the auditory notification medium are changed.
  • a value for each notification level of one kind of tactile element is determined, and each of the visual element, the auditory element, and the tactile element appeals to the driver's sensory organ as the notification level increases.
  • the strength is set so as to increase.
  • the notification device includes a visual notification medium used for notifying the driver of information via a driver's vision as a notification medium for notifying the driver of information, An auditory notification medium used for notifying the driver of information via hearing, a tactile notification medium used for notifying the driver of information via the driver's tactile sense, and controlling the operation of the notification medium.
  • a notification device that is used in a vehicle notification system including a notification control device that notifies information in a predetermined mode, and that informs the notification control device of information about a predetermined state quantity to a driver, the notification device A notification level determination unit that determines a notification level, which is a degree of strength that appeals to the driver for information to be notified, based on the state quantity; A notification medium selection unit that selects a notification medium to be used for notification of information of the body, a predetermined notification rule that determines a notification mode for each notification level using the notification medium selected by the notification medium selection unit, and a notification level A notification processing unit that requests the notification control device to perform notification in a notification mode determined based on the notification level determined by the determination unit, and the notification rule is a notification level of the notification level adopted by the notification device.
  • the number of stages, the value for each notification level of at least one visual element among the visual elements that are elements that change the notification mode using the visual notification medium, and the element that changes the notification mode using the auditory notification medium At least one tactile element among tactile elements that are elements that change the value of the notification level of at least one of the auditory elements and the notification mode using the tactile notification medium.
  • the visual element, the auditory element, and the tactile element all have a strength to appeal to the driver's sensory organs as the notification level increases. It is characterized by being set to.
  • the display devices 51 to 56 are examples of a notification medium and a visual notification medium.
  • the decorative lighting 57 is an example of a notification medium or a visual notification medium.
  • the audio output devices 61 to 63 are examples of notification media and auditory notification media.
  • the tactile sensation generating devices 71 to 76 are examples of a notification medium and a tactile notification medium.
  • embodiments, configuration, and aspect of the vehicle notification system, the notification control device, and the notification device have been described above, but the embodiment, configuration, and aspect related to the vehicle notification system, the notification control device, and the notification device have been described above. It is not limited to each embodiment, each structure, and each aspect.
  • embodiments, configurations, and aspects related to a vehicle notification system, a notification control device, and a notification device are also obtained for embodiments, configurations, and aspects obtained by appropriately combining technical units disclosed in different embodiments, configurations, and aspects. Included within the scope of embodiments.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Traffic Control Systems (AREA)

Abstract

This notification system for a vehicle is equipped with multiple notification devices (20A, 20B, 20C, 20D) for notifying a driver of information about a predetermined state quantity through at least one of the senses among the visual, auditory, and tactile senses of the driver. Each of the multiple notification devices executes notification upon having determined a notification level that indicates the intensity for providing a prompt of the information to the driver. Notification modes are determined on the basis of predetermined notification rules that define a notification mode for each notification level. The notification rules define the number of notification levels, the value of at least one kind of visual component for each notification level, the value of at least one kind of auditory component for each notification level, and the value of at least one kind of tactile component for each notification level. The visual component, auditory component, and tactile component are set such that the intensity for providing the prompt for those components to the sensory organs of the driver increases.

Description

車両用報知システム、報知制御装置、及び報知装置Vehicle notification system, notification control device, and notification device 関連出願の相互参照Cross-reference of related applications
 本出願は、2014年7月24日に出願された日本国特許出願2014-151056号に基づくものであり、ここにその記載内容を参照により援用する。 This application is based on Japanese Patent Application No. 2014-151056 filed on July 24, 2014, the contents of which are incorporated herein by reference.
 本開示は、車両で用いられ、ドライバに報知を実施する車両用報知システム、報知制御装置、及び報知装置に関する。 The present disclosure relates to a vehicle notification system, a notification control device, and a notification device that are used in a vehicle and notify a driver.
 近年、運転操作を支援するための様々な情報をドライバに対して報知することで、ドライバの運転操作を支援する装置が開発され、車両に搭載されつつある。例えば、特許文献1には、ドライバの発進操作時において、自車両周辺の検出対象物が存在する位置とドライバの視線方向とに基づいて危険度合いを判定し、その危険度合いに応じた警告をドライバに対して実施する装置(報知装置とする)が開示されている。 In recent years, a device that supports a driver's driving operation by notifying a driver of various information for supporting the driving operation has been developed and installed in a vehicle. For example, in Patent Document 1, when a driver performs a starting operation, the degree of danger is determined based on the position where the detection target object around the host vehicle exists and the driver's line-of-sight direction, and a warning corresponding to the degree of danger is given to the driver. A device (referred to as a notification device) is disclosed.
 警告の態様としては、スピーカからの音声出力によってドライバの聴覚に訴えかける態様や、表示装置を用いてドライバの視覚に訴えかける態様、振動装置を振動させることによってドライバの触覚に訴えかける態様などが例示されている。 As warning modes, there are modes that appeal to the driver's hearing by sound output from the speaker, modes that appeal to the driver's vision using a display device, modes that appeal to the driver's tactile sense by vibrating the vibration device, etc. Illustrated.
 なお、特許文献1に開示の装置以外にも、車両周辺(例えば前方や後方)に存在する検出対象物の距離を報知する装置などが一般的に知られている。 Note that, in addition to the device disclosed in Patent Document 1, a device for informing the distance of a detection object existing around the vehicle (for example, front or rear) is generally known.
 さらに、特許文献2には、ドライバの覚醒状態を維持するために、ドライバの視覚、聴覚、触覚に対してドライバの状態や走行環境に応じた刺激を加えるように報知を実施する報知装置が開示されている。当該報知装置も、ドライバの覚醒度合いや走行環境に応じて、段階的に(又は連続的に)報知態様を変更する。 Furthermore, Patent Document 2 discloses a notification device that performs notification so that a stimulus corresponding to the driver's state and driving environment is applied to the driver's visual, auditory, and tactile senses in order to maintain the driver's arousal state. Has been. The notification device also changes the notification mode stepwise (or continuously) according to the driver's awakening level and the driving environment.
 本願発明者は、車両用報知システム、報知制御装置、及び報知装置に関して、下記を見出した。 The inventor of the present application has found the following regarding the vehicle notification system, the notification control device, and the notification device.
 1つの車両に、ある状態量(危険度合いや覚醒度合い)に基づいて報知態様を変化させて報知を行う報知装置が複数搭載されている場合、それら複数の報知装置のそれぞれは、独自の規則に基づいて報知態様を段階的に変化させて報知を実施することになる。 When one vehicle is equipped with a plurality of notification devices that perform notification by changing the notification mode based on a certain amount of state (degree of danger or degree of arousal), each of the plurality of notification devices has its own rules. Based on this, the notification mode is changed stepwise to perform notification.
 例えば、ある報知装置は、視覚を通した報知態様は一定(例えば赤色表示)のまま、報知対象とする状態量に応じて警告音の出力間隔を段階的に短くする一方、別の或る報知装置は、音声出力による報知態様は一定のまま、その装置が対象とする状態量に応じて表示色を段階的に変更する。 For example, while a certain notification device keeps the visual notification mode constant (for example, red display), the warning sound output interval is shortened stepwise according to the state quantity to be notified, while another notification is performed. The device changes the display color step by step according to the state quantity targeted by the device, while the notification mode by sound output remains constant.
 もちろん、これらは一例であって、報知態様を変更する際のパラメータとしては、様々なものがある。例えばドライバの聴覚へ訴える報知態様のパラメータとしては、音量や、警告音の周波数、警告音の出力間隔などがあり、ドライバの視覚に訴える報知態様のパラメータとしては、明るさや、色、点滅の有無、点滅速度などがある。また、ドライバの触覚に訴える報知態様のパラメータとしては、振動の大きさや、振動数、振動間隔などがある。 Of course, these are only examples, and there are various parameters for changing the notification mode. For example, the parameters of the notification mode appealing to the driver's hearing include the volume, the frequency of the warning sound, the output interval of the warning sound, etc. The parameters of the notification mode appealing to the driver's vision include brightness, color, presence / absence of flashing , Flashing speed etc. Further, the parameters of the notification mode appealing to the tactile sense of the driver include the magnitude of vibration, the frequency, and the vibration interval.
 以上で例示したように報知態様を変化させるパラメータは多数存在し、さらに、そのパラメータを変化させるパターンも多数存在する。複数の報知装置のそれぞれが独自の規則に基づいて段階的に報知態様を変化させる場合、ドライバに対して実施される報知の態様が多数となるとともに、各報知装置が視覚、聴覚、触覚など訴える報知態様の変化のパターンが報知装置毎に異なる可能性がある。 As exemplified above, there are many parameters that change the notification mode, and there are also many patterns that change the parameters. When each of the plurality of notification devices changes the notification mode step by step based on its own rules, there are a large number of notification modes implemented for the driver, and each notification device complains of vision, hearing, touch, etc. There is a possibility that the pattern of change of the notification mode differs for each notification device.
 報知装置毎に報知態様の変化パターンが異なっていると、ドライバに違和感を与えるだけでなく、ドライバが、現在行われている報知態様と、報知されている情報の緊急性や深刻さとを対応付けて認識することが難しくなってしまうおそれがある。 If the change pattern of the notification mode is different for each notification device, not only does the driver feel uncomfortable, but the driver associates the notification mode currently being performed with the urgency and seriousness of the information being reported. May be difficult to recognize.
日本国公開特許公報2010-204785号Japanese published patent publication 2010-204785 国際公開公報第2011/138855号International Publication No. 2011/138855
 本開示の目的は、それぞれ異なる対象についての情報を段階的に報知する報知装置を複数有する報知システムにおいて、ある報知装置によって実施されている報知の態様から、報知されている情報の緊急性や深刻さをドライバが認識しやすい車両用報知システム、報知制御装置、及び報知装置を提供することにある。 An object of the present disclosure is to provide a notification system having a plurality of notification devices that notify information about different objects in stages, and from the aspect of notification performed by a certain notification device, the urgency and seriousness of the information being notified Another object is to provide a vehicle notification system, a notification control device, and a notification device that are easily recognized by a driver.
 本開示の第1の態様によれば、車両用報知システムは、所定の状態量についての情報を、ドライバの視覚、聴覚、及び触覚の少なくとも何れか1つを介してドライバに報知する報知装置を複数備え、複数の報知装置のそれぞれは、ドライバに情報を訴えかける強さを表す報知レベルを、その報知装置が対象とする状態量から決定し、その決定した報知レベルに応じて報知態様を段階的に変化させて報知を実施する。各報知レベルにおける報知態様は、報知レベル毎の報知態様を定める所定の報知規則に基づいて決定される。報知規則は、各報知装置が採用する報知レベルの段階数と、ドライバの視覚に訴えかける報知の態様(以下、視覚報知態様)を変化させる要素である視覚要素のうちの少なくとも1種類の視覚要素の報知レベル毎の値と、ドライバの聴覚に訴えかける報知の態様(以下、聴覚報知態様)を変化させる要素である聴覚要素のうちの少なくとも1種類の聴覚要素の報知レベル毎の値と、ドライバの触覚に訴えかける報知の態様(以下、触覚報知態様)を変化させる要素である触覚要素のうちの少なくとも1種類の触覚要素の報知レベル毎の値と、を定めるものであって、視覚要素、聴覚要素、及び触覚要素はいずれも、報知レベルが上昇するにつれて、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定されている。 According to the first aspect of the present disclosure, the vehicle notification system includes a notification device that notifies the driver of information about the predetermined state quantity via at least one of the driver's visual sense, auditory sense, and tactile sense. Each of the plurality of notification devices includes a plurality of notification devices that determine a notification level representing the strength of appealing information to the driver from a state quantity targeted by the notification device, and determines a notification mode according to the determined notification level. The notification is carried out by changing the target. The notification mode at each notification level is determined based on a predetermined notification rule that defines a notification mode for each notification level. The notification rule includes at least one type of visual element among visual elements that are elements that change the number of notification level steps adopted by each notification device and a notification mode appealing to the driver's vision (hereinafter, visual notification mode). A value for each notification level, a value for each notification level of at least one type of auditory element among the auditory elements that are elements that change the mode of notification appealing to the driver's hearing (hereinafter referred to as auditory notification mode), and the driver A value for each notification level of at least one type of tactile element of tactile elements that are elements for changing a notification mode (hereinafter referred to as a tactile notification mode) to appeal to the tactile sense of the visual element, Each of the auditory element and the tactile element is set so that the strength with which the element appeals to the driver's sensory organ increases as the notification level increases.
 本開示の第2の態様によれば、報知制御装置は、所定の状態量についての情報を報知するように要求する装置であって、状態量に基づいて報知しようとしている情報をドライバに訴えかける強さを表す報知レベルを判定し、その報知レベルに応じた報知態様で報知するように要求する報知装置と、ドライバに情報を報知するための報知媒体として、ドライバの視覚を介してドライバに情報を報知するために用いられる視覚報知媒体と、ドライバの聴覚を介してドライバに情報を報知するために用いられる聴覚報知媒体と、ドライバの触覚を介してドライバに情報を報知するために用いられる触覚報知媒体と、をそれぞれ少なくとも1つずつ備える車両用報知システムで用いられ、報知媒体及び報知装置の動作を制御する。報知制御装置は、報知装置からの要求を受け付ける報知要求受付部と、報知要求受付部が受け付けた要求に基づいて報知媒体を動作させることで当該報知装置が要求する態様の報知を実現する報知実施部と、報知装置が要求する報知態様が、報知レベル毎の報知態様を定める報知規則に則った報知態様となるように指示する報知装置管理部と、を備える。報知規則は、報知装置が採用する報知レベルの段階数と、視覚報知媒体を用いた報知の態様を変化させる要素である視覚要素のうちの少なくとも1種類の視覚要素の報知レベル毎の値と、聴覚報知媒体を用いた報知の態様を変化させる要素である聴覚要素のうちの少なくとも1種類の聴覚要素の報知レベル毎の値と、触覚報知媒体を用いた報知の態様を変化させる要素である触覚要素のうちの少なくとも1種類の触覚要素の報知レベル毎の値と、を定めるものであって、視覚要素、聴覚要素、及び触覚要素はいずれも、報知レベルが上昇するにつれて、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定されている。 According to the second aspect of the present disclosure, the notification control device is a device that requests to notify information about a predetermined state quantity, and appeals the driver to information that is about to be notified based on the state quantity. As a notification medium for determining a notification level representing strength and requesting notification in a notification mode corresponding to the notification level, and a notification medium for notifying the driver of information, information is provided to the driver through the visual sense of the driver. Visual notification medium used to notify the driver, auditory notification medium used to notify the driver of information via the driver's hearing, and tactile sense used to notify the driver of information via the driver's sense of touch It is used in a vehicle notification system that includes at least one notification medium, and controls the operation of the notification medium and the notification device. The notification control device receives a request from the notification device, and a notification implementation that realizes notification of the mode requested by the notification device by operating the notification medium based on the request received by the notification request reception unit. And a notification device management unit that instructs the notification mode requested by the notification device to be a notification mode in accordance with a notification rule that defines a notification mode for each notification level. The notification rule includes the number of notification level steps adopted by the notification device, the value for each notification level of at least one type of visual element among visual elements that are elements that change the mode of notification using a visual notification medium, and A value for each notification level of at least one type of auditory element, which is an element that changes the manner of notification using an auditory notification medium, and a tactile sense that is an element that changes the manner of notification using a tactile notification medium A value for each notification level of at least one tactile element of the elements is determined, and each of the visual element, the auditory element, and the tactile element becomes an element of the driver as the notification level increases. It is set to increase the strength of appealing to the sensory organs.
 本開示の第3の態様によれば、報知装置は、ドライバに情報を報知するための報知媒体として、ドライバの視覚を介してドライバに情報を報知するために用いられる視覚報知媒体と、ドライバの聴覚を介してドライバに情報を報知するために用いられる聴覚報知媒体と、ドライバの触覚を介してドライバに情報を報知するために用いられる触覚報知媒体と、報知媒体の動作を制御し、ドライバに所定の態様で情報を報知する報知制御装置と、を備える車両用報知システムで用いられ、ドライバに対して所定の状態量についての情報を報知制御装置に報知させる。報知装置は、報知しようとしている情報をドライバに訴えかける強さの度合いである報知レベルを状態量に基づいて判定する報知レベル判定部と、報知媒体のうち、情報の報知に利用する報知媒体を選択する報知媒体選択部と、報知媒体選択部が選択した報知媒体を用いて、報知レベル毎の報知態様を定める所定の報知規則と、報知レベル判定部が判定した報知レベルと、に基づいて定まる報知態様で報知を実施するように、報知制御装置に要求する報知処理部と、を備え、報知規則は、当該報知装置が採用する報知レベルの段階数と、視覚報知媒体を用いた報知の態様を変化させる要素である視覚要素のうちの少なくとも1つの視覚要素の報知レベル毎の値と、聴覚報知媒体を用いた報知の態様を変化させる要素である聴覚要素のうちの少なくとも1つの聴覚要素の報知レベル毎の値と、触覚報知媒体を用いた報知の態様を変化させる要素である触覚要素のうちの少なくとも1つの触覚要素の報知レベル毎の値と、を定めるものであって、視覚要素、聴覚要素、及び触覚要素はいずれも、報知レベルが上昇するにつれて、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定されている。 According to the third aspect of the present disclosure, the notification device includes, as a notification medium for notifying the driver of information, a visual notification medium used for notifying the driver of information via the driver's vision, An auditory notification medium used for notifying the driver of information via hearing, a tactile notification medium used for notifying the driver of information via the driver's tactile sense, and controlling the operation of the notification medium. And a notification control device that notifies information in a predetermined manner, and causes the notification control device to notify the driver of information about a predetermined state quantity. The notification device includes a notification level determination unit that determines a notification level, which is a degree of strength that appeals to the driver for information to be notified, based on the state quantity, and a notification medium that is used for notification of information among the notification media. It is determined based on a notification medium selection unit to be selected, a predetermined notification rule for determining a notification mode for each notification level, and a notification level determined by the notification level determination unit, using the notification medium selected by the notification medium selection unit. A notification processing unit that requests the notification control device to perform notification in the notification mode, and the notification rule includes a number of notification level steps adopted by the notification device and a notification mode using a visual notification medium. Among the visual elements that are elements that change the value of each of the visual elements of the visual element, and a small number of auditory elements that are elements that change the manner of notification using the auditory information medium A value for each notification level of at least one auditory element and a value for each notification level of at least one tactile element of tactile elements that are elements that change the notification mode using the tactile notification medium The visual element, the auditory element, and the tactile element are all set so that the strength with which the element appeals to the driver's sensory organ increases as the notification level increases.
 車両用報知システム、報知制御装置、及び報知装置によれば、各報知装置による報知態様の報知レベルに応じた変化のパターンに共通性を備えさせることができる。また、報知規則で規定されている視覚要素の態様は、報知装置が異なっても報知レベルに応じて一意に定まるため、ドライバは、その視覚要素の態様から、報知レベルを認識することができる。 According to the vehicle notification system, the notification control device, and the notification device, it is possible to provide commonality in the pattern of change according to the notification level of the notification mode of each notification device. In addition, since the visual element mode defined by the notification rule is uniquely determined according to the notification level even if the notification device is different, the driver can recognize the notification level from the visual element mode.
 車両用報知システム、報知制御装置、及び報知装置によれば、それぞれ異なる対象についての情報を段階的に報知する報知装置を複数有する車両用報知システムにおいて、ある報知装置による報知がドライバに対して伝えようとしている緊急性や深刻さを認識しやすくすることができる。 According to a vehicle notification system, a notification control device, and a notification device, in a vehicle notification system having a plurality of notification devices that notify information about different objects in stages, notification by a certain notification device is transmitted to a driver. It is possible to make it easier to recognize the urgency and seriousness that is going on.
 本開示についての上記および他の目的、特徴や利点は、添付の図面を参照した下記の詳細な説明から、より明確になる。添付図面において
図1は、本実施形態に係る車両用報知システムの概略的な構成の一例を示すブロック図であり、 図2は、運転席周辺の外観の模式図であり、 図3は、報知制御装置及び報知装置の概略的な構成の一例を示すブロック図であり、 図4は、報知規則の一例を示す図であり、 図5は、報知規則の一例を示す図であり、 図6は、車間距離報知装置によるHUDを用いた視覚報知態様の一例を示す模式図であり、 図7は、車間距離報知装置によるHUDを用いた視覚報知態様の一例を示す模式図であり、 図8は、報知レベルに応じて報知媒体の種類を変更する態様の一例であり、 図9は、後方車両報知装置による右側電子サイドミラーを用いた視覚報知態様の一例を示す模式図であり、 図10は、後方車両報知装置による右側電子サイドミラーを用いた視覚報知態様の一例を示す模式図であり、 変形例における報知制御装置の概略的な構成の一例である。
The above and other objects, features and advantages of the present disclosure will become more apparent from the following detailed description with reference to the accompanying drawings. In the attached drawings
FIG. 1 is a block diagram illustrating an example of a schematic configuration of a vehicle notification system according to the present embodiment. FIG. 2 is a schematic view of the appearance around the driver seat. FIG. 3 is a block diagram illustrating an example of a schematic configuration of the notification control device and the notification device, FIG. 4 is a diagram illustrating an example of a notification rule, FIG. 5 is a diagram illustrating an example of a notification rule, FIG. 6 is a schematic diagram showing an example of a visual notification mode using HUD by the inter-vehicle distance notification device, FIG. 7 is a schematic diagram showing an example of a visual notification mode using HUD by the inter-vehicle distance notification device, FIG. 8 is an example of a mode in which the type of the notification medium is changed according to the notification level. FIG. 9 is a schematic diagram showing an example of a visual notification mode using the right electronic side mirror by the rear vehicle notification device, FIG. 10 is a schematic diagram illustrating an example of a visual notification mode using the right electronic side mirror by the rear vehicle notification device, It is an example of the schematic structure of the alerting | reporting control apparatus in a modification.
 以下、実施形態について図を用いて説明する。図1は、本実施形態に係る車両用報知システム100の概略的な構成の一例を示す図である。図2は、当該車両用報知システム100が搭載された車両(以降、自車両)の運転席周辺の外観図である。 Hereinafter, embodiments will be described with reference to the drawings. FIG. 1 is a diagram illustrating an example of a schematic configuration of a vehicle notification system 100 according to the present embodiment. FIG. 2 is an external view of the vicinity of the driver's seat of a vehicle (hereinafter, the host vehicle) on which the vehicle notification system 100 is mounted.
 図1に示すように車両用報知システム100は、車載センサ群11、周辺監視カメラ12、検出対象物センサ13、ドライバモニタシステム14、車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、覚醒状態維持装置20D、及び報知制御装置30を備える。車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、及び覚醒状態維持装置20Dは、報知装置の一例である。 As shown in FIG. 1, the vehicle notification system 100 includes an in-vehicle sensor group 11, a surrounding monitoring camera 12, a detection object sensor 13, a driver monitor system 14, an inter-vehicle distance notification device 20A, a rear vehicle notification device 20B, and a lane departure notification device. 20C, the wakefulness maintaining device 20D, and the notification control device 30 are provided. The inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, and the awake state maintaining device 20D are examples of the notification device.
 さらに、車両用報知システム100は、ヘッドアップディスプレイ(以降、HUD:Head-Up Display)51、メータディスプレイ52、センターディスプレイ53、電子ルームミラー54、電子サイドミラー55、携帯端末ディスプレイ56、加飾照明57、サイドスピーカ61、センタースピーカ62、携帯端末スピーカ63、把持部触覚生成装置71、座席触覚生成装置72、携帯端末触覚生成装置73、ステアリングスイッチ74、触覚生成機能付きタッチパネル75、遠隔操作デバイス76、狭域通信部81を備える。 Further, the vehicle notification system 100 includes a head-up display (hereinafter referred to as HUD: Head-Up Display) 51, a meter display 52, a center display 53, an electronic room mirror 54, an electronic side mirror 55, a portable terminal display 56, decorative lighting. 57, side speaker 61, center speaker 62, portable terminal speaker 63, grasping part tactile sensation generating device 71, seat tactile sensation generating device 72, portable terminal tactile sensation generating device 73, steering switch 74, touch panel 75 with tactile sensation generating function, and remote operation device 76. The narrow-area communication unit 81 is provided.
 携帯端末ディスプレイ56、携帯端末スピーカ63、携帯端末触覚生成装置73は、ユーザによって車室内に持ち込まれた携帯端末4に備えられている。車両用報知システム100は、携帯端末4と連携し、当該携帯端末4が備える携帯端末ディスプレイ56の表示画面や、携帯端末スピーカ63からの出力音声、及び携帯端末触覚生成装置73の動作を制御することができる構成となっている。 The portable terminal display 56, the portable terminal speaker 63, and the portable terminal tactile sensation generating device 73 are provided in the portable terminal 4 brought into the passenger compartment by the user. The vehicle notification system 100 cooperates with the mobile terminal 4 to control the display screen of the mobile terminal display 56 provided in the mobile terminal 4, the output sound from the mobile terminal speaker 63, and the operation of the mobile terminal tactile generating device 73. It has a configuration that can.
 携帯端末4としては、周知のスマートフォンや、タブレット端末などを用いることができる。スマートフォンなどの携帯端末は、車両用報知システム100が備える携帯端末4として動作させるためのアプリケーションプログラム(以降、アプリケーション)がインストールされてあって、かつ、当該アプリケーションが実行されている状態において、本実施形態における携帯端末4として動作する。 As the mobile terminal 4, a known smartphone, tablet terminal, or the like can be used. The mobile terminal such as a smartphone is installed in a state where an application program (hereinafter referred to as an application) for operating as the mobile terminal 4 included in the vehicle notification system 100 is installed and the application is being executed. It operates as the portable terminal 4 in the form.
 HUD51、メータディスプレイ52、センターディスプレイ53、電子ルームミラー54、電子サイドミラー55、携帯端末ディスプレイ56は、何れも情報を表示する表示装置である。サイドスピーカ61、センタースピーカ62、携帯端末スピーカ63は、何れも音声(単なる音を含む)を出力する音声出力装置である。 The HUD 51, meter display 52, center display 53, electronic room mirror 54, electronic side mirror 55, and portable terminal display 56 are all display devices that display information. The side speaker 61, the center speaker 62, and the portable terminal speaker 63 are all audio output devices that output audio (including simple sounds).
 把持部触覚生成装置71、座席触覚生成装置72、携帯端末触覚生成装置73は、何れもアクチュエータ(電動機、振動素子等)を作動させることによってドライバの触覚を刺激する触覚生成装置である。携帯端末触覚生成装置73は、例えば、振動素子を振動させることによってドライバの触覚を刺激する装置(いわゆるバイブレータ)として構成されていればよい。 The grip part tactile sensation generating device 71, the seat tactile sensation generating device 72, and the mobile terminal tactile sensation generating device 73 are all tactile sensation generating devices that stimulate the tactile sensation of the driver by operating an actuator (electric motor, vibration element, etc.). The portable terminal tactile sensation generating device 73 may be configured as, for example, a device that stimulates a driver's tactile sense by vibrating a vibration element (so-called vibrator).
 また、ステアリングスイッチ74、触覚生成機能付きタッチパネル75、遠隔操作デバイス76は、ユーザが車両に搭載された種々の機器に指示を行うための入力装置であるとともに、当該入力操作を実施しているドライバの触覚を刺激する機能を備える。すなわち、ステアリングスイッチ74、触覚生成機能付きタッチパネル75、遠隔操作デバイス(ハプティックデバイス)76もまた、ドライバの触覚を刺激する触覚生成装置として機能する。 Further, the steering switch 74, the touch panel 75 with a tactile sensation generation function, and the remote operation device 76 are input devices for a user to give instructions to various devices mounted on the vehicle, and a driver that performs the input operation. It has a function to stimulate the sense of touch. That is, the steering switch 74, the touch panel 75 with a tactile sensation generating function, and the remote operation device (haptic device) 76 also function as a tactile sensation generating apparatus that stimulates the tactile sense of the driver.
 種々の報知装置20A~D、すなわち車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、覚醒状態維持装置20Dの作動、及び報知制御装置30の作動の概略は次の通りである。 An outline of the operation of the various notification devices 20A to 20D, that is, the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, the awake state maintaining device 20D, and the notification control device 30 is as follows. .
 報知装置20A~Dは、それぞれ異なる状態量についての情報を、種々の報知媒体を介してドライバに対して報知するように報知制御装置30に要求する。なお、各報知装置20A~Dは、その状態量についての情報を、ドライバに訴えかける必要性の高さ(危険度や緊急度など)に応じた複数段階の報知態様でドライバに報知するように報知制御装置30に要求するものである。 The notification devices 20A to 20D request the notification control device 30 to notify the driver of information about different state quantities via various notification media. Each of the notification devices 20A to 20D notifies the driver of information on the state quantity in a plurality of stages of notification modes according to the high necessity (risk level, urgency level, etc.) of appealing to the driver. This is requested to the notification control device 30.
 報知制御装置30は、報知装置20A~Dからの要求に基づいて所定の報知態様で報知を実施するとともに、報知装置20A~Dのそれぞれが要求する報知の態様が、後述する報知規則に則った報知態様となるように指示する役割を担う。以降では、ドライバの視覚に訴えかける報知の態様を視覚報知態様、聴覚に訴えかける報知の態様を聴覚報知態様、触覚に訴えかける報知の態様を触覚報知態様と称する。 The notification control device 30 performs notification in a predetermined notification mode based on requests from the notification devices 20A to 20D, and the notification mode requested by each of the notification devices 20A to 20D conforms to a notification rule described later. It plays a role of instructing to become a notification mode. Hereinafter, the notification mode appealing to the driver's vision is referred to as a visual notification mode, the notification mode appealing to the auditory sense is referred to as an auditory notification mode, and the notification mode appealing to the sense of touch is referred to as a tactile notification mode.
 車両用報知システム100が備える報知装置は、車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、覚醒状態維持装置20Dに限らない。その報知装置が対象とする状態量に基づいて、ドライバに対して複数段階で変化する報知態様で報知を実施する周知の報知装置を備えていれば良い。 The notification device included in the vehicle notification system 100 is not limited to the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, and the awake state maintaining device 20D. It is only necessary to provide a known notification device that performs notification in a notification manner that changes in a plurality of stages to the driver based on the state quantity targeted by the notification device.
 以降において車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、及び覚醒状態維持装置20Dのそれぞれを区別しない場合には、単に報知装置20とも記載する。また、報知装置20が報知制御装置30に対して報知の実行を要求し、報知制御装置30がその要求に基づいて報知を実施するといった一連の作動を、報知装置20が報知を実施する、とも表現する。すなわち、報知装置20による報知とは、報知装置20が報知制御装置30を介して報知させる態様を含む。 Hereinafter, when not distinguishing between the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, and the awake state maintaining device 20D, they are also simply referred to as the notification device 20. In addition, the notification device 20 performs a notification of a series of operations in which the notification device 20 requests the notification control device 30 to execute notification and the notification control device 30 performs notification based on the request. Express. That is, the notification by the notification device 20 includes a mode in which the notification device 20 causes the notification control device 30 to notify.
 表示装置51~56や加飾照明57、音声出力装置61~63、触覚生成装置71~76は、報知制御装置30が報知装置20からの要求に基づいて種々の情報を報知するためのインターフェースとして機能する。 The display devices 51 to 56, the decorative lighting 57, the sound output devices 61 to 63, and the tactile sensation generation devices 71 to 76 serve as interfaces for the notification control device 30 to notify various information based on requests from the notification device 20. Function.
 例えば表示装置51~56は、報知装置20から出力された画像を表示することで、報知装置20がドライバの視覚を通してドライバに種々の情報を報知するためのインターフェース(視覚報知媒体とする)として機能する。加飾照明57もまた、報知装置20からの指示に基づいた発光パターン(光の色や点滅など)で発光することで、視覚報知媒体として機能する。 For example, the display devices 51 to 56 display an image output from the notification device 20, thereby functioning as an interface (visual notification medium) for the notification device 20 to notify the driver of various information through the driver's vision. To do. The decorative lighting 57 also functions as a visual notification medium by emitting light with a light emission pattern (light color, blinking, etc.) based on an instruction from the notification device 20.
 また、音声出力装置61~63は、報知装置20からの指示に基づいた音声を出力することで、報知装置20がドライバの聴覚を通してドライバに種々の情報を報知するためのインターフェース(聴覚報知媒体とする)として機能する。触覚生成装置71~76は、報知装置20からの指示に基づいてドライバの触覚を刺激することで、ドライバの触覚を通してドライバに種々の情報を報知するためのインターフェース(触覚報知媒体とする)として機能する。 The audio output devices 61 to 63 output an audio based on an instruction from the notification device 20, thereby allowing the notification device 20 to notify the driver of various information through the driver's hearing (an audio notification medium and an audio notification medium). Function). The tactile sensation generating devices 71 to 76 function as an interface (noted as a tactile notification medium) for notifying the driver of various information through the driver's tactile sense by stimulating the driver's tactile sense based on an instruction from the notification device 20. To do.
 なお、実施形態において、表示装置51~56及び加飾照明57の全てを備えている必要はなく、少なくとも1つを備えていればよい。音声出力装置61~63や、触覚生成装置71~76についても同様である。 In the embodiment, it is not necessary to provide all of the display devices 51 to 56 and the decorative lighting 57, and it is sufficient to provide at least one. The same applies to the audio output devices 61 to 63 and the tactile sense generating devices 71 to 76.
 以降、車両用報知システム100が備える各構成要素について述べる。車両用報知システム100が備える各構成要素は、周知の車両内ネットワークを介して相互通信可能に接続されている。 Hereinafter, each component included in the vehicle notification system 100 will be described. The constituent elements included in the vehicle notification system 100 are connected to each other via a known in-vehicle network so that they can communicate with each other.
 車載センサ群11は、自車両の状態を検出する種々のセンサであって、例えば、車速センサや、加速度センサ、ジャイロセンサ、GNSS受信機、操舵角センサ、ブレーキストロークセンサ、アクセルペダルセンサ、方向指示レバー位置センサなどが含まれる。 The in-vehicle sensor group 11 is a variety of sensors that detect the state of the host vehicle. For example, a vehicle speed sensor, an acceleration sensor, a gyro sensor, a GNSS receiver, a steering angle sensor, a brake stroke sensor, an accelerator pedal sensor, a direction indication A lever position sensor and the like are included.
 車速センサは自車両の走行速度を検出し、加速度センサは自車両に作用する加速度を検出する。GNSS受信機は、GNSS(Global Navigation Satellite System)で用いられる衛星からの電波を受信することで、GNSS受信機の現在位置を示すデータを取得する。もちろん、GNSS受信機は、GPS受信機であってもよい。 The vehicle speed sensor detects the traveling speed of the host vehicle, and the acceleration sensor detects the acceleration acting on the host vehicle. The GNSS receiver acquires data indicating the current position of the GNSS receiver by receiving radio waves from a satellite used in GNSS (Global Navigation Satellite System). Of course, the GNSS receiver may be a GPS receiver.
 ジャイロセンサは自車両の鉛直軸周りの回転角速度を検出し、操舵角センサはステアリングの切れ角に基づいて操舵角を検出する。ブレーキストロークセンサはブレーキペダルの踏込量を検出し、アクセルペダルセンサはアクセルペダルの踏込量を検出する。方向指示レバー位置センサは、方向指示レバーが左折位置又は右折位置になっているかを検出する。車載センサ群11が備える種々のセンサが検出したデータは、車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、覚醒状態維持装置20Dなどに逐次出力される。 The gyro sensor detects the rotational angular velocity around the vertical axis of the host vehicle, and the steering angle sensor detects the steering angle based on the steering angle. The brake stroke sensor detects the depression amount of the brake pedal, and the accelerator pedal sensor detects the depression amount of the accelerator pedal. The direction indicating lever position sensor detects whether the direction indicating lever is in a left turn position or a right turn position. Data detected by various sensors included in the in-vehicle sensor group 11 is sequentially output to the inter-vehicle distance notification device 20A, the rear vehicle notification device 20B, the lane departure notification device 20C, the awake state maintaining device 20D, and the like.
 周辺監視カメラ12は、自車両の周辺の所定範囲を撮影範囲とするカメラである。周辺監視カメラ12は、1つのカメラで実現されていても良いし、複数のカメラで実現されていてもよい。本実施形態では、前方カメラ12Aと、後方カメラ12Bと、左側方カメラ12Cと、右側方カメラ12Dを備える。 The periphery monitoring camera 12 is a camera having a predetermined range around the host vehicle as a shooting range. The peripheral monitoring camera 12 may be realized by one camera or may be realized by a plurality of cameras. In the present embodiment, a front camera 12A, a rear camera 12B, a left side camera 12C, and a right side camera 12D are provided.
 前方カメラ12Aは、例えば、自車両の前方の所定範囲を撮影するように車室内の電子ルームミラー付近に設置されている。後方カメラ12Bは、自車両の後方の所定範囲を撮影するように、例えばリアウインドウ上部に設置されている。左側方カメラ12Cは、自車両の左側方から後方までの所定範囲を撮影範囲とするように、例えば左側ドア周辺や、左側フロントフェンダー部などに設置されればよい。右側方カメラ12Dは、自車両の右側方から後方までの所定範囲を撮影範囲とするように、例えば右側ドア周辺や、右側フロントフェンダー部などに設置されれば良い。 The front camera 12A is installed, for example, in the vicinity of the electronic room mirror in the vehicle interior so as to photograph a predetermined range in front of the host vehicle. The rear camera 12B is installed, for example, on the upper part of the rear window so as to capture a predetermined range behind the host vehicle. The left side camera 12C may be installed, for example, in the vicinity of the left door, the left front fender, or the like so that a predetermined range from the left side to the rear side of the host vehicle is the shooting range. The right side camera 12D may be installed, for example, in the vicinity of the right door, the right front fender, or the like so that a predetermined range from the right side to the rear side of the host vehicle is the shooting range.
 周辺監視カメラ12としては、CCDカメラなどの光学カメラの他、赤外線カメラなどを採用することができる。本実施形態では一例として、光学カメラによって周辺監視カメラ12を実現する。なお、周辺監視カメラ12が撮影した画像データ(又は映像信号)は、電子ルームミラー54や電子サイドミラー55などの所定の報知媒体の他、車間距離報知装置20Aなどの所定の報知装置20にも逐次出力される。 As the peripheral monitoring camera 12, an infrared camera or the like can be employed in addition to an optical camera such as a CCD camera. In the present embodiment, as an example, the peripheral monitoring camera 12 is realized by an optical camera. The image data (or video signal) captured by the periphery monitoring camera 12 is also transmitted to a predetermined notification device 20 such as an inter-vehicle distance notification device 20A in addition to a predetermined notification medium such as an electronic room mirror 54 and an electronic side mirror 55. Output sequentially.
 なお、本実施形態では、一例として周辺監視カメラ12を、自車両の前方、後方、左側方、右側方のそれぞれを撮影範囲とするように構成しているが、これに限らない。他の態様として、自車両周辺の一部(例えば前方)だけを撮影範囲とするように構成してもよい。 In this embodiment, as an example, the periphery monitoring camera 12 is configured such that the front, rear, left side, and right side of the host vehicle are set as shooting ranges, but the present invention is not limited thereto. As another aspect, it may be configured such that only a part (for example, the front side) around the own vehicle is set as the shooting range.
 検出対象物センサ13は、自車両の周辺の所定範囲に存在する検出対象物の、自車両との距離や、相対位置、及び相対速度を検出する。検出対象物センサ13としては、周知のミリ波レーダや、レーザレーダ、赤外線センサ、超音波センサなどを採用することができる。本実施形態では一例として、検出対象物センサ13は、ミリ波レーダによって実現することとする。すなわち、検出対象物センサ13は、探査波の送信時刻とその探査波の反射波の受信時刻とのずれや位相の変化をもとに、検出対象物との距離やその検出対象物が存在する方向、相対速度を検出する。 The detection target sensor 13 detects the distance, relative position, and relative speed of the detection target existing in a predetermined range around the host vehicle. As the detection object sensor 13, a well-known millimeter wave radar, laser radar, infrared sensor, ultrasonic sensor, or the like can be used. In this embodiment, as an example, the detection target sensor 13 is realized by a millimeter wave radar. That is, the detection target sensor 13 has a distance to the detection target and the detection target based on a shift or phase change between the transmission time of the exploration wave and the reception time of the reflected wave of the exploration wave. Detect direction and relative speed.
 検出対象物センサ13もまた、1つのセンサで実現されていても良いし、複数のセンサで実現されていてもよい。本実施形態において検出対象物センサ13は、自車両の前方の所定範囲に存在する検出対象物を検出する前方検出対象物センサ13Aと、自車両の後方の所定範囲に存在する検出対象物を検出する後方検出対象物センサ13Bを備える。前方検出対象物センサ13Aは、自車両前方の所定範囲に探査波を送信するようにフロントバンパ中央付近に設置されればよい。また、後方検出対象物センサ13Bは自車両の後方の所定範囲に探査波を送信するようにリアバンパ中央付近に設置されれば良い。 The detection object sensor 13 may also be realized by one sensor or a plurality of sensors. In this embodiment, the detection target sensor 13 detects a detection target existing in a predetermined range behind the host vehicle and a front detection target sensor 13A that detects a detection target existing in a predetermined range in front of the host vehicle. The rear detection object sensor 13B is provided. The forward detection target sensor 13A may be installed near the center of the front bumper so as to transmit the exploration wave to a predetermined range in front of the host vehicle. Further, the rear detection object sensor 13B may be installed near the center of the rear bumper so as to transmit the exploration wave to a predetermined range behind the host vehicle.
 なお、本実施形態では自車両の左側方と右側方の検出対象物を検出するための検出対象物センサを備えない構成とするが、これに限らない。すなわち、左側方及び右側方のそれぞれの所定範囲に存在する検出対象物センサを備える構成としても良い。また、検出対象物センサとして全方位型のレーザレーダ等を利用してもよい。その場合、当該全方位型の検出対象物センサによって、前方、後方、左側方及び右側方の検出対象物を検出することができる。 In addition, although it is set as the structure which is not provided with the detection target object sensor for detecting the detection target object of the left side and the right side of the own vehicle in this embodiment, it is not restricted to this. That is, it is good also as a structure provided with the detection target sensor which exists in each predetermined range of the left side and the right side. Further, an omnidirectional laser radar or the like may be used as the detection object sensor. In this case, the front, rear, left side, and right side detection target objects can be detected by the omnidirectional detection target sensor.
 ドライバモニタシステム14は、ドライバの状態(居眠りや脇見など)を判定するための情報を取得するシステムである。ドライバモニタシステム14は、一例としてドライバの顔画像を撮影するドライバモニタ14Aや、ドライバの生体情報を計測する生体情報センサ14Bなどを備えることとする。 The driver monitor system 14 is a system that acquires information for determining the state of the driver (sleeping or looking aside). As an example, the driver monitor system 14 includes a driver monitor 14A that captures a driver's face image, a biometric information sensor 14B that measures biometric information of the driver, and the like.
 ドライバモニタ14Aは、例えば光学式カメラであって、ドライバの顔を含む範囲を逐次(例えば100ミリ秒毎に)撮影する。ドライバモニタ14Aは、ステアリングコラムカバーの上に設置する。他の態様として、ドライバモニタ14Aはウインドシールドの運転席側の上部に設置してもよい。なお、ドライバモニタ14Aは、赤外線を検出することにより、可視光の少ない環境下においても撮像可能な赤外線カメラを採用してもよい。 The driver monitor 14A is an optical camera, for example, and sequentially captures a range including the driver's face (for example, every 100 milliseconds). The driver monitor 14A is installed on the steering column cover. As another mode, driver monitor 14A may be installed in the upper part by the side of the driver's seat of a windshield. Note that the driver monitor 14A may employ an infrared camera that can capture an image even in an environment with little visible light by detecting infrared rays.
 生体情報センサ14Bは、脳波を計測する脳波センサや、血圧を計測する血圧センサ、脈拍数を計測する脈拍センサ、心拍数を計測する心拍センサ、呼吸数を計測する呼吸センサのうちの1つ又は複数の組み合わせによって実現されればよい。これらのセンサは、ドライバ用のシートに内蔵されていても良いし、ステアリングに設けられていても良いし、ドライバの例えば手首等に装着されていてもよい。 The biological information sensor 14B is one of a brain wave sensor that measures brain waves, a blood pressure sensor that measures blood pressure, a pulse sensor that measures heart rate, a heart rate sensor that measures heart rate, and a respiratory sensor that measures respiration rate. It may be realized by a plurality of combinations. These sensors may be incorporated in the driver's seat, may be provided on the steering wheel, or may be mounted on the driver's wrist, for example.
 ドライバモニタ14Aが撮影した画像データや、生体情報センサ14Bが検出したデータは、覚醒状態維持装置20Dに逐次出力される。なお、ドライバモニタシステム14は、ドライバモニタ14Aと生体情報センサ14Bの何れか一方を備える構成してもよい。 Image data captured by the driver monitor 14A and data detected by the biological information sensor 14B are sequentially output to the awake state maintaining device 20D. Note that the driver monitor system 14 may be configured to include either the driver monitor 14A or the biological information sensor 14B.
 HUD51は、フロントガラスの運転席前方の一部分に虚像を映し出して種々の情報を表示する周知のヘッドアップディスプレイである。例えば、HUD51は、誘導経路を示す画像や、先行車両との車間距離を示すアイコン画像が実際の道路と重ね合わせて表示する。以降では、HUD51によってフロントガラスに投影される像を、HUD画像と称する。 The HUD 51 is a well-known head-up display that displays various information by projecting a virtual image on a part of the windshield in front of the driver's seat. For example, the HUD 51 displays an image indicating the guidance route and an icon image indicating the inter-vehicle distance from the preceding vehicle superimposed on the actual road. Hereinafter, an image projected on the windshield by the HUD 51 is referred to as a HUD image.
 HUD画像が表示されるフロントガラス上の領域(図2中の51A)は、ドライバが運転操作する際に確保されるべき運転視界領域よりも下方に形成されており、ドライバは、車両前方を視認しながら、HUD画像を視認することができるようになっている。これによって、ドライバの視線移動量は少なくなり、焦点調整負荷を軽減し、安全性を向上させることができる。 The area on the windshield (51A in FIG. 2) on which the HUD image is displayed is formed below the driving field of view to be secured when the driver performs driving, and the driver visually recognizes the front of the vehicle. However, the HUD image can be visually recognized. As a result, the amount of line-of-sight movement of the driver is reduced, the focus adjustment load can be reduced, and safety can be improved.
 メータディスプレイ52は、インストゥルメントパネルの運転席側の上部に配置され、車速、エンジン(内燃機関)の回転速度、燃料タンク内の燃料残量等、種々の情報を表示する。メータディスプレイ52は、例えばフルカラー表示が可能なものであり、液晶ディスプレイ、有機ELディスプレイ等を用いて構成することができる。 The meter display 52 is arranged at the upper part of the driver panel side of the instrument panel, and displays various information such as the vehicle speed, the rotational speed of the engine (internal combustion engine), the fuel remaining amount in the fuel tank, and the like. The meter display 52 is capable of full color display, for example, and can be configured using a liquid crystal display, an organic EL display, or the like.
 センターディスプレイ53は、インストゥルメントパネルの車幅方向中央付近に配置されている。センターディスプレイ53もまた、フルカラー表示が可能なものであり、液晶ディスプレイ、有機ELディスプレイ等を用いて構成することができる。 The center display 53 is arranged near the center of the instrument panel in the vehicle width direction. The center display 53 is also capable of full color display, and can be configured using a liquid crystal display, an organic EL display, or the like.
 電子ルームミラー54は、従来のルームミラーの代わりに、後方カメラ12Bが撮影した画像を表示することで、ドライバによる後方の視認を可能とする装置である。後方カメラ12Bが撮影している範囲のうちの電子ルームミラー54に表示される範囲や、その画像の表示態様は、電子ルームミラー54が備える画像処理装置(図示略)が、周知の方法によって制御すればよい。 The electronic rearview mirror 54 is a device that enables the driver to visually recognize the rear by displaying an image taken by the rear camera 12B instead of the conventional rearview mirror. The image processing device (not shown) provided in the electronic room mirror 54 controls the range displayed on the electronic room mirror 54 in the range captured by the rear camera 12B and the display mode of the image by a known method. do it.
 電子サイドミラー55は、従来のドアミラーやフェンダーミラーのかわりに、左側方カメラ12C及び右側方カメラ12Dのそれぞれが撮影した画像を表示する装置である。ドライバ、電子サイドミラー55を見ることで、自車両の左側方から後方左側までの範囲や、右側方から後方右側までの範囲を間接的に視認することができる。 The electronic side mirror 55 is a device that displays images taken by the left side camera 12C and the right side camera 12D instead of the conventional door mirror or fender mirror. By looking at the driver and the electronic side mirror 55, the range from the left side to the rear left side of the host vehicle and the range from the right side to the rear right side can be indirectly visually recognized.
 電子サイドミラー55は、図2に示すように、左側方カメラ12Cが撮影した画像を表示する左側電子サイドミラー55Lと、右側方カメラ12Dが撮影した画像を表示する右側電子サイドミラー55Rと、を備える。左側電子サイドミラー55Lに表示される範囲や、その画像の表示態様は、左側電子サイドミラー55Lが備える画像処理装置(図示略)が、周知の方法によって制御すればよい。右側電子サイドミラー55Rも同様である。 As shown in FIG. 2, the electronic side mirror 55 includes a left electronic side mirror 55L that displays an image captured by the left side camera 12C and a right electronic side mirror 55R that displays an image captured by the right side camera 12D. Prepare. The range displayed on the left electronic side mirror 55L and the display mode of the image may be controlled by a known method by an image processing device (not shown) provided in the left electronic side mirror 55L. The same applies to the right electronic side mirror 55R.
 加飾照明57は、車室内の運転席周辺に設けられた光源であって、例えば、発光ダイオード(LED:Light Emitting Diode)によって実現される。加飾照明57は、報知規則で定められている複数の色の光を切り替えて発光できる構成となっている。 The decorative lighting 57 is a light source provided around the driver's seat in the passenger compartment, and is realized by, for example, a light emitting diode (LED). The decorative lighting 57 is configured to be able to emit light by switching light of a plurality of colors defined in the notification rule.
 サイドスピーカ61は、図2に示すようにインストゥルメントパネルの車幅方向両端にそれぞれ備えられていた左側サイドスピーカ61L、右側サイドスピーカ61Rを備える。左側サイドスピーカ61L、右側サイドスピーカ61Rは何れも周知の音声出力装置であって、種々の報知装置20A~D、及び報知制御装置30からの指示に従って音声を出力する。 The side speaker 61 includes a left side speaker 61L and a right side speaker 61R respectively provided at both ends in the vehicle width direction of the instrument panel as shown in FIG. The left side speaker 61L and the right side speaker 61R are both known sound output devices, and output sound according to instructions from various notification devices 20A to 20D and the notification control device 30.
 センタースピーカ62は、インストゥルメントパネルの車幅方向中央付近に設置された音声出力装置である。センタースピーカ62もまた、種々の報知装置20A~D、及び報知制御装置30からの指示に従って音声を出力する。 The center speaker 62 is an audio output device installed near the center of the instrument panel in the vehicle width direction. The center speaker 62 also outputs sound according to instructions from the various notification devices 20A to 20D and the notification control device 30.
 把持部触覚生成装置71は、ステアリングホイールの把持部に設けられた触覚生成装置である。把持部触覚生成装置71は、報知装置20及び報知制御装置30からの指示に従って動作することでドライバの触覚を刺激する。例えば、覚醒状態維持装置20Dは、把持部触覚生成装置71を所定の強さや振動数で振動させたり、反力を生成させたりすることによって、ドライバの手に刺激を与える。 The grip portion tactile sensation generating device 71 is a tactile sense generating device provided in the grip portion of the steering wheel. The grip part tactile sensation generating device 71 operates according to instructions from the notification device 20 and the notification control device 30 to stimulate the driver's tactile sense. For example, the arousal state maintaining device 20D gives a stimulus to the driver's hand by vibrating the grip part tactile sensation generating device 71 at a predetermined strength or frequency or generating a reaction force.
 座席触覚生成装置72は、例えば、運転者用シートの座面に設けられた触覚生成装置である。座席触覚生成装置72もまた、報知装置20及び報知制御装置30からの指示に従って動作することでドライバの触覚を刺激する。例えば、座席触覚生成装置72は、運転者用シートの全体、すなわち、着座部や背もたれ部、ヘッドレスト部に設けられているものとする。もちろん、他の態様として、ドライバの触覚を刺激する機構は着座部や背もたれ部、ヘッドレスト部の一部のみに設けられてあってもよい。 The seat tactile sensation generating device 72 is, for example, a tactile sensation generating device provided on the seat surface of the driver's seat. The seat tactile sensation generating device 72 also operates according to instructions from the notification device 20 and the notification control device 30 to stimulate the driver's tactile sense. For example, the seat tactile sensation generating device 72 is provided on the entire driver's seat, that is, on a seating portion, a backrest portion, and a headrest portion. Of course, as another aspect, the mechanism for stimulating the sense of touch of the driver may be provided only in a part of the seating portion, the backrest portion, and the headrest portion.
 ステアリングスイッチ74は、ステアリングホイール周辺に設けられるメカニカルなスイッチである。ドライバは当該ステアリングスイッチ74を操作することによって、例えば、各報知装置20A~Dの動作状態(オン/オフ)を切り替えることができる。ステアリングスイッチ74は、アクチュエータを備えてあって、当該ステアリングスイッチ74を操作しているドライバに与える反力などの操作感を変更することができる。 The steering switch 74 is a mechanical switch provided around the steering wheel. By operating the steering switch 74, for example, the driver can switch the operation states (on / off) of the notification devices 20A to 20D. The steering switch 74 includes an actuator, and can change an operational feeling such as a reaction force applied to a driver operating the steering switch 74.
 触覚生成機能付きタッチパネル75は、センターディスプレイ53の表示パネルに積層されたタッチパネルである。ドライバは、当該触覚生成機能付きタッチパネル75をタッチ操作することで、車両に搭載された種々の機器を操作することができる。また、触覚生成機能付きタッチパネル75は、アクチュエータを備えてあって、タッチ操作を実施するドライバに与える反力を変更することができる。 The touch panel 75 with a tactile sensation generation function is a touch panel laminated on the display panel of the center display 53. The driver can operate various devices mounted on the vehicle by touching the touch panel 75 with a tactile sensation generation function. Moreover, the touch panel 75 with a tactile sensation generating function includes an actuator, and can change a reaction force applied to a driver who performs a touch operation.
 遠隔操作デバイス76は、センターコンソールに配置され、ナビゲーション装置や空調装置等、車両に搭載された種々の機器を遠隔操作するための入力装置(いわゆるハプティックデバイス)である。遠隔操作デバイス76は、センターディスプレイ53と連携しており、ドライバは当該遠隔操作デバイス76を操作することで、センターディスプレイ53に表示されているカーソルを移動させたり、カーソルが指し示すアイコンを選択したりすることができる。 The remote operation device 76 is an input device (a so-called haptic device) that is arranged on the center console and remotely operates various devices mounted on the vehicle such as a navigation device and an air conditioner. The remote operation device 76 is linked to the center display 53, and the driver operates the remote operation device 76 to move the cursor displayed on the center display 53 or to select an icon pointed to by the cursor. can do.
 遠隔操作デバイス76は、アクチュエータの動作を制御することで、操作荷重や、変位量、発生力、クリック感などを変更することができる。例えば、遠隔操作デバイス76は、カーソルが選択可能なアイコン画像上に移動した時には、内蔵されているアクチュエータを動作させ、ドライバの手に対して、実際にスイッチを触ったかのような触覚を付与する。より具体的には、ドライバの手に対して印加する反力の符号を正の値(すなわち反発する力)から負の値(引き込む力)に変更することで、スイッチに対してカーソルが引き込まれていく感触をドライバに付与する。操作荷重や、変位量、発生力、クリック感などのパラメータは、報知装置20からの指示に基づいて変更される。 The remote operation device 76 can change the operation load, the displacement amount, the generated force, the click feeling, etc. by controlling the operation of the actuator. For example, when the cursor moves on a selectable icon image, the remote operation device 76 operates a built-in actuator to give a tactile sensation as if the switch was actually touched to the driver's hand. More specifically, the sign of the reaction force applied to the driver's hand is changed from a positive value (that is, a repulsive force) to a negative value (a pulling force), so that the cursor is drawn into the switch. Give the driver a feeling of going. Parameters such as an operation load, a displacement amount, a generated force, and a click feeling are changed based on an instruction from the notification device 20.
 狭域通信部81は、周知の近距離無線通信技術によって、報知制御装置30が携帯端末4と無線通信を実施するための通信インターフェースである。携帯端末4は、この狭域通信部81を介して報知制御装置30との通信接続が確立した状態において、種々の報知装置20A~Dによる報知のインターフェースとして利用される。 The narrow-area communication unit 81 is a communication interface for the notification control device 30 to perform wireless communication with the mobile terminal 4 by a known short-range wireless communication technology. The portable terminal 4 is used as a notification interface by various notification devices 20A to 20D in a state where communication connection with the notification control device 30 is established via the narrow area communication unit 81.
 以下、種々の報知装置20A~Dのそれぞれの概略的な作動及び役務について述べた後に、報知制御装置30について説明する。その後、本実施形態における車両用報知システム100が備える報知装置20の構成の一例について述べる。 Hereinafter, after describing the general operation and service of each of the various notification devices 20A to 20D, the notification control device 30 will be described. Then, an example of a structure of the alerting | reporting apparatus 20 with which the alerting | reporting system 100 for vehicles in this embodiment is provided is described.
 車間距離報知装置20Aは、追従走行機能の動作時において、自車両前方に存在する車両(すなわち先行車両)と自車両との距離に応じた報知態様で報知を実施するように報知制御装置30に要求する。すなわち、車間距離報知装置20Aは、先行車両と自車両との車間距離を、ドライバに対して報知する装置である。車間距離が、車間距離報知装置20Aにとって、報知の対象とする状態量に相当する。先行車両と自車両との距離は、前方検出対象物センサ13Aや前方カメラ12Aの検出結果に基づいて特定されればよい。 The inter-vehicle distance notification device 20A causes the notification control device 30 to perform notification in a notification mode according to the distance between the vehicle existing in front of the host vehicle (that is, the preceding vehicle) and the host vehicle during the operation of the following traveling function. Request. That is, the inter-vehicle distance notification device 20A is a device that notifies the driver of the inter-vehicle distance between the preceding vehicle and the host vehicle. The inter-vehicle distance is equivalent to the state quantity to be notified to the inter-vehicle distance notification device 20A. The distance between the preceding vehicle and the host vehicle may be specified based on the detection results of the front detection target sensor 13A and the front camera 12A.
 なお、追従走行機能とは、先行車両との車間距離が、予め定められた所定距離(目標車間距離)を保つように、車両の駆動系システムを制御する機能である。この追従走行機能については、周知の技術を援用すればよい。 The follow-up running function is a function for controlling the drive system of the vehicle so that the inter-vehicle distance from the preceding vehicle is maintained at a predetermined distance (target inter-vehicle distance). For this follow-up running function, a known technique may be used.
 後方車両報知装置20Bは、現在の走行車線や、当該走行車線に隣接する車線(隣接車線とする)において自車両後方(斜め後ろも含む)に存在する他車両(以降、単に後方車両)の存在や車間距離をドライバに報知する装置である。すなわち、後方車両報知装置20Bは、後方車両と自車両との車間距離についての情報を、ドライバに対して報知する装置である。 The rear vehicle notification device 20B is present in the current traveling lane and other vehicles (hereinafter simply referred to as a rear vehicle) existing behind the host vehicle (including diagonally behind) in the lane adjacent to the traveling lane (referred to as an adjacent lane). It is a device that informs the driver of the distance between vehicles. That is, the rear vehicle notification device 20B is a device that notifies the driver of information about the inter-vehicle distance between the rear vehicle and the host vehicle.
 後方車両の存在の有無や、自車両との距離などは、後方検出対象物センサ13Bの検出結果や周辺監視カメラ12が撮影した画像データを利用すればよい。 The presence / absence of the rear vehicle, the distance from the host vehicle, and the like may be obtained by using the detection result of the rear detection object sensor 13B or the image data taken by the peripheral monitoring camera 12.
 車線逸脱報知装置20Cは、自車両が現在走行している車線(走行車線)から自車両が逸脱しそうであるか否かを判定し、その判定結果に応じた報知態様で報知を実施するように報知制御装置30に要求する。すなわち、車線逸脱報知装置20Cは、自車両が走行車線を逸脱しようとしていることをドライバに報知する装置である。 The lane departure notification device 20C determines whether or not the host vehicle is likely to depart from the lane (traveling lane) in which the host vehicle is currently traveling, and performs notification in a notification mode according to the determination result. This is requested to the notification control device 30. That is, the lane departure notifying device 20C is a device that notifies the driver that the host vehicle is about to depart from the traveling lane.
 走行車線は、前方カメラ12Aの画像から白線を検出することで特定すればよい。また、自車両が走行車線を逸脱しようとしているか否かの判定は、自車両が白線に接近しているか否か、接近している場合には、自車両とその接近している白線との車幅方向の距離、及び接近速度などに基づいて判定すればよい。 The traveling lane may be specified by detecting a white line from the image of the front camera 12A. Also, whether or not the host vehicle is about to depart from the driving lane is determined by whether or not the host vehicle is approaching the white line, and if it is approaching, the vehicle between the host vehicle and the approaching white line. What is necessary is just to determine based on the distance of the width direction, approach speed, etc.
 自車両が片側の白線に接近している場合には、自車両とその接近している白線との車幅方向の距離が短いほど、また、接近速度が大きいほど、自車両がその車線を逸脱する可能性が高いことを意味する。そして、自車両が走行車線を逸脱する可能性があると判断した場合には、その可能性の高さに応じた報知態様の報知を報知制御装置30に実施させる。 When the host vehicle is approaching the white line on one side, the shorter the distance in the vehicle width direction between the host vehicle and the approaching white line and the greater the approach speed, the more the host vehicle deviates from the lane. It means that there is a high possibility of doing. And when it judges that the own vehicle may deviate from a driving | running | working lane, the alerting | reporting control apparatus 30 is made to alert | report the alerting | reporting aspect according to the height of the possibility.
 すなわち、車線逸脱報知装置20Cにとっての状態量とは、自車両がその車線を逸脱する可能性、又は、その可能性を算出するために用いるパラメータである。ここでは、一例として、状態量を、自車両と白線との車幅方向距離、及び接近速度とする。 That is, the state quantity for the lane departure notifying device 20C is a parameter used for calculating the possibility that the own vehicle departs from the lane or the possibility. Here, as an example, the state quantity is a distance in the vehicle width direction between the host vehicle and the white line, and an approach speed.
 なお、車線逸脱報知装置20Cは、所定の速度(例えば60km/h)以上で走行している場合において、作動するものとする。また、車線逸脱報知装置20Cは、ウインカー操作をしている場合や加速している場合など、ドライバが意図的に自車両が白線を横切るように運転をしていると認識した場合には、機能による報知要求はキャンセルする。 Note that the lane departure notifying device 20C operates when traveling at a predetermined speed (for example, 60 km / h) or more. Further, the lane departure notifying device 20C functions when the driver recognizes that the driver intentionally drives the vehicle so that it crosses the white line, such as when operating a blinker or accelerating. The notification request by is canceled.
 覚醒状態維持装置20Dは、ドライバの覚醒度合いを推定し、その推定した覚醒度合いに応じた報知態様での報知を実施するように報知制御装置30に要求する。例えば覚醒度合いが所定の閾値を下回っている場合に、ドライバを覚醒させるための報知を実施する。また、覚醒度合いが小さくなるにつれて、その報知態様を段階的に変化させる。 The arousal state maintaining device 20D estimates the driver's arousal level and requests the notification control device 30 to perform notification in a notification mode according to the estimated awakening level. For example, when the degree of arousal is below a predetermined threshold, notification for awakening the driver is performed. Moreover, the alerting | reporting aspect is changed in steps as the awakening degree becomes small.
 なお、ここでの覚醒度合いとは、ドライバの意識がはっきりしている度合いを表し、覚醒度合いが小さい場合とは、ドライバが眠そうな状態であることを意味する。この覚醒度合いが、覚醒状態維持装置20Dにとっての状態量に相当する。 In addition, the awakening degree here represents the degree to which the driver's consciousness is clear, and the case where the awakening degree is small means that the driver is in a sleepy state. This arousal level corresponds to a state quantity for the awake state maintaining apparatus 20D.
 ドライバの覚醒度合いは、ドライバモニタ14Aが撮影しているドライバの顔画像や、生体情報センサ14Bの検出結果に基づいて推定されれば良い。ドライバの覚醒度合いを推定する方法は周知の技術を適用すればよい。例えば、覚醒度合いは、顔画像から、顔の向きやまぶたの開き具合、まぶたの動き方のパターンなどから判定すればよい。 The driver's awakening degree may be estimated based on the driver's face image taken by the driver monitor 14A and the detection result of the biological information sensor 14B. A known technique may be applied to the method for estimating the driver's arousal level. For example, the degree of arousal may be determined from the face image based on the face orientation, the degree of eyelid opening, the pattern of eyelid movement, and the like.
 報知制御装置30は、通常のコンピュータとして構成されており、周知のCPU、ROMやフラッシュメモリなどの不揮発性メモリ、RAMなどの揮発性メモリ、I/O、及びこれらの構成を接続するバスライン(何れも図示略)などを備えている。 The notification control device 30 is configured as a normal computer, and includes a well-known CPU, a non-volatile memory such as a ROM and a flash memory, a volatile memory such as a RAM, an I / O, and a bus line connecting these configurations ( All are not shown).
 報知制御装置30が備える記憶部31は、フラッシュメモリやROMなどの不揮発性メモリによって実現される記憶領域である。記憶部31には、種々の処理を実行するためのプログラムやデータ、及び後述の報知規則を示すデータ(報知規則データとする)が格納されている。また、CPUは、前述のプログラムを実行することで種々の機能を実現する。 The storage unit 31 included in the notification control device 30 is a storage area realized by a nonvolatile memory such as a flash memory or a ROM. The storage unit 31 stores programs and data for executing various processes, and data indicating notification rules described later (referred to as notification rule data). The CPU realizes various functions by executing the above-described program.
 より具体的に、報知制御装置30は、機能ブロックとして図3に示すように、報知媒体管理部F31、報知装置管理部F32、報知要求受付部F33、報知実施部F34を備える。 More specifically, the notification control device 30 includes a notification medium management unit F31, a notification device management unit F32, a notification request reception unit F33, and a notification execution unit F34 as functional blocks as shown in FIG.
 報知媒体管理部F31は、報知媒体として機能する機器を認識及び管理する。より具体的に、報知媒体管理部F31は、報知媒体として表示装置51~56や、加飾照明57、音声出力装置61~63、触覚生成装置71~76が利用可能であること、を内部状態として保持する。 The notification medium management unit F31 recognizes and manages a device that functions as a notification medium. More specifically, the notification medium management unit F31 indicates that the display devices 51 to 56, the decorative lighting 57, the sound output devices 61 to 63, and the tactile sense generation devices 71 to 76 can be used as notification media. Hold as.
 なお、報知媒体として携帯端末ディスプレイ56、携帯端末スピーカ63、携帯端末触覚生成装置73が利用可能であると認識している場合とは、携帯端末4との通信接続している場合である。 Note that the case where the portable terminal display 56, the portable terminal speaker 63, and the portable terminal tactile sensation generating device 73 are recognized as being usable as a notification medium is a case where communication connection with the portable terminal 4 is established.
 報知媒体管理部F31は、車両内ネットワークに追加された機器を報知媒体として認識する処理を実施する。これによって、車両用報知システム100が備える種々の報知装置20は、ユーザの手によって取り付け/取り外しされる機器も報知媒体として利用することができる。 The notification medium management unit F31 performs processing for recognizing a device added to the in-vehicle network as a notification medium. Thereby, the various alerting | reporting apparatus 20 with which the alerting | reporting system 100 for vehicles is equipped can also utilize the apparatus attached / removed by a user's hand as an alerting | reporting medium.
 報知装置管理部F32は、車両用報知システム100が備える報知装置20を管理する。すなわち、本実施形態の報知装置管理部F32は、車両用報知システム100が車間距離報知装置20A、後方車両報知装置20B、車線逸脱報知装置20C、覚醒状態維持装置20Dを備えていることを内部状態として保持する。これらの各報知装置20A~Dが、所定の報知媒体を用いた報知を実施するように要求する要求元(報知要求元)に相当する。 The notification device management unit F32 manages the notification device 20 included in the vehicle notification system 100. That is, the notification device management unit F32 according to the present embodiment has an internal state that the vehicle notification system 100 includes an inter-vehicle distance notification device 20A, a rear vehicle notification device 20B, a lane departure notification device 20C, and a wakefulness maintaining device 20D. Hold as. Each of these notification devices 20A to 20D corresponds to a request source (notification request source) that requests to perform notification using a predetermined notification medium.
 また、報知装置管理部F32は、各報知装置20A~Dに対して、報知媒体管理部F31が取得した、報知媒体として利用可能な機器の情報を提供する。報知媒体の情報とは、その報知媒体の種類や、機器の型番、用途、設置場所、入出力データの対応形式などである。例えば電子ルームミラー54の用途とは、後方カメラ12Bが撮影した画像の表示である。なお、報知媒体が表示装置である場合には、画面サイズなども報知媒体の情報に含まれる。 Also, the notification device management unit F32 provides information on devices that can be used as the notification medium acquired by the notification medium management unit F31 to the notification devices 20A to 20D. The information on the notification medium includes the type of the notification medium, the model number of the device, the application, the installation location, the input / output data correspondence format, and the like. For example, the use of the electronic room mirror 54 is a display of an image taken by the rear camera 12B. When the notification medium is a display device, the screen size and the like are also included in the information of the notification medium.
 各報知装置20A~Dは、報知装置管理部F32から報知媒体の情報を取得することによって、適切な報知媒体を選択し、その報知媒体による情報の報知を実施することができる。なお、他の態様として、報知装置20A~Dは、車両内ネットワークを介して利用可能な報知媒体の情報をその報知媒体から直接取得してもよい。 Each of the notification devices 20A to 20D can acquire information on the notification medium from the notification device management unit F32, thereby selecting an appropriate notification medium and performing information notification using the notification medium. As another aspect, the notification devices 20A to 20D may directly acquire information on notification media that can be used via the in-vehicle network.
 さらに、報知装置管理部F32は、各報知装置20A~Dに対して、記憶部31に格納されている報知規則データを提供し、報知装置20A~Dのそれぞれが要求する報知の態様が、その報知規則に則った報知態様となるように指示する。 Further, the notification device management unit F32 provides the notification rule data stored in the storage unit 31 to each of the notification devices 20A to 20D, and the notification mode requested by each of the notification devices 20A to 20D An instruction is given so that the notification mode conforms to the notification rule.
 ここで、報知規則について具体的に説明する。報知規則は、報知装置20が、報知態様を段階的に変化させる際の、各段階における報知態様や、段階に応じて報知態様を変化させるパターンを規定する規則である。 Here, the notification rules will be described in detail. The notification rule is a rule that defines a notification mode at each stage and a pattern for changing the notification mode according to the stage when the notification device 20 changes the notification mode in stages.
 まず、報知規則は、各報知装置20A~Dが段階的に変化させる報知態様の段階数を定める。ここでは報知装置20が情報をドライバに訴えかける強さの度合いを、4つの段階(報知レベルとする)で表すこととする。すなわち、各報知装置20A~Dは、その報知態様を報知レベルに応じて4段階で変化させて報知する。 First, the notification rule defines the number of notification modes that each notification device 20A to 20D changes stepwise. Here, the degree of strength with which the notification device 20 appeals information to the driver is expressed in four stages (referred to as notification levels). That is, each of the notification devices 20A to 20D notifies the notification mode by changing the notification mode in four stages according to the notification level.
 報知レベルは、その報知装置20において報知対象とする情報をドライバに訴えかける必要性が高いほど、高く判定されるものである。例えば、報知レベルが危険度合いに対応するものだとすると、報知レベルは、危険度合いが高いほど高く設定される。より具体的には、報知レベルが1の場合は安全な状態を、報知レベルが2の場合は弱注意の状態を、報知レベルが3の場合は強注意の状態を、報知レベルが4の場合は危険な状態を、それぞれ表すものとすればよい。 The notification level is determined to be higher as the necessity of appealing information targeted for notification to the driver in the notification device 20 is higher. For example, if the notification level corresponds to the risk level, the notification level is set higher as the risk level is higher. More specifically, when the notification level is 1, it is a safe state, when the notification level is 2, a weak attention state, when the notification level is 3, a strong attention state, and when the notification level is 4. Should represent each dangerous state.
 各報知装置20は、報知レベルが高いほど、ドライバの感覚器官に与える刺激が大きくするなどして、ドライバの注意をより惹きつける報知態様で報知を実施する。なお、ここでは、報知レベルを4段階としたが、これに限らない。5段階であってもよいし、3段階であっても良い。 Each notification device 20 performs notification in a notification mode that attracts the driver's attention by increasing the stimulus given to the sensory organ of the driver as the notification level is higher. Here, the notification level is set to four levels, but the present invention is not limited to this. There may be five stages or three stages.
 また、報知規則は、視覚報知態様を構成する少なくとも1種類の要素(視覚要素とする)、聴覚報知態様を構成する少なくとも1種類の要素(聴覚要素とする)、及び触覚報知態様を構成する少なくとも1種類の要素(触覚要素とする)のそれぞれの報知レベル毎の値を定めている。なお、ここでいう報知態様を構成する要素とは、報知態様を変化させる要素を指す。また、要素の報知レベル毎の値を定めるということは、当概要素の報知レベルに応じた変化のパターンを定めることを意味する。 The notification rule includes at least one element (referred to as a visual element) constituting a visual notification aspect, at least one element (referred to as an auditory element) included in an auditory notification aspect, and at least constituting a tactile notification aspect. A value for each notification level of one type of element (referred to as a tactile element) is determined. In addition, the element which comprises the alerting | reporting aspect here refers to the element which changes an alerting | reporting aspect. In addition, determining a value for each notification level of an element means determining a change pattern corresponding to the notification level of the summary element.
 視覚報知態様を構成する要素としては、例えば表示色(言い換えれば光の波長)、明るさ、点滅の有無、点滅の速度、など様々なものがある。また、表示装置に表示させるアイコン画像の大きさ、表示画像の内容(図柄など)、テキストの内容なども視覚要素に該当する。 As elements constituting the visual notification mode, there are various elements such as display color (in other words, wavelength of light), brightness, presence / absence of blinking, blinking speed, and the like. Further, the size of the icon image displayed on the display device, the content of the display image (such as a symbol), the content of the text, and the like also correspond to visual elements.
 ここでのアイコン画像とは、例えばドライバに報知したい情報を簡略的に表す画像である。また、アイコン画像には、ドライバに注目させたい検出対象物を指し示したりするマーカー画像を含む。例えばマーカー画像は、ドライバの注意を向けさせたい検出対象物を四角形の枠(すなわちマーカー枠)で囲むことによって、当該検出対象物を強調表示する画像である。 The icon image here is an image that simply represents information to be notified to the driver, for example. In addition, the icon image includes a marker image that points to a detection target to be noticed by the driver. For example, the marker image is an image that highlights the detection target object by surrounding the detection target object to which the driver's attention is directed by a rectangular frame (that is, a marker frame).
 本実施形態では一例として、報知規則は、光の波長(すなわち色)、アイコン画像の表示サイズ、マーカー枠の線の太さに対する報知レベル毎の値を規定しているものとする。 In this embodiment, as an example, the notification rule prescribes values for each notification level with respect to the wavelength of light (that is, the color), the display size of the icon image, and the thickness of the marker frame line.
 波長は、図4に示すように報知レベルが1から2,3,4と上がるにつれて波長を、540、580、620、660nmと短くしていくように設定する。これにより、表示装置51~56に表示される画像の色や、加飾照明57から出力される光の色(これらをまとめて表示色とする)は、報知レベルが1から2,3,4と上がるにつれて、緑、黄、橙、赤の順に遷移していく。 The wavelength is set so that the wavelength is shortened to 540, 580, 620, and 660 nm as the notification level increases from 1, 2, 3, and 4 as shown in FIG. As a result, the color of the image displayed on the display devices 51 to 56 and the color of the light output from the decorative lighting 57 (collectively, these are used as display colors) have a notification level of 1 to 2, 3, 4 As it goes up, it changes in the order of green, yellow, orange, and red.
 緑色よりも橙色や赤色のほうがドライバの目につきやすいため、報知レベルに応じて波長を赤色の波長に近づけていくことで、視覚報知態様は、報知レベルが上がるにつれてドライバの視覚に対してより強い刺激与える態様となる。 Since orange and red are more visible to the driver than green, the visual notification mode is stronger to the driver's vision as the notification level increases by making the wavelength closer to the red wavelength according to the notification level. It becomes a mode to give a stimulus.
 また、赤色は、緑や黄色よりも危機的な状況を示す色として広く利用されている。したがって、報知レベルが上がるにつれて表示色を赤色に近づけていくことで、視覚報知態様は、ドライバに対してより危機感や深刻さを与える態様となる。以降では、このようにドライバに対してより危機感や深刻さを与える態様を、より鋭い報知態様とも称する。 Also, red is widely used as a color indicating a more critical situation than green or yellow. Therefore, by making the display color closer to red as the notification level increases, the visual notification mode is a mode that gives the driver a sense of crisis and seriousness. Hereinafter, such a mode that gives the driver a sense of crisis or seriousness is also referred to as a sharper notification mode.
 また、波長と報知レベルの関係は、波長の長さをPa、報知レベルをLvとすると、図5に示すように、報知レベルLvを変数とする1次関数:Pa=40×Lv+500で表していても良い。ここでの報知レベルLvの比例定数は一例として40nmである。 Further, the relationship between the wavelength and the notification level is represented by a linear function Pa = 40 × Lv + 500 having the notification level Lv as a variable, as shown in FIG. 5, where Pa is the wavelength length and Lv is the notification level. May be. The proportionality constant of the notification level Lv here is 40 nm as an example.
 表示色は、報知装置が視覚による報知を実施する際には、その報知する情報の内容に依らずに利用される要素である。また、表示色は、相対的に多くの要素を変更する事ができる表示装置51~56を報知媒体として採用する場合だけでなく、加飾照明57を報知媒体として採用する場合にも共通して変化させることができる。 The display color is an element used regardless of the content of the information to be notified when the notification device performs visual notification. The display color is common not only when the display devices 51 to 56 capable of changing a relatively large number of elements are employed as the notification medium, but also when the decorative lighting 57 is employed as the notification medium. Can be changed.
 したがって、報知規則において、表示色の報知レベルLv毎の値を規定することで、少なくとも視覚による報知を実施する報知装置20は、何れの報知装置20も、報知レベルLvに応じて共通した表示色で報知を実施する。これによって、報知装置20による視覚報知態様の報知レベルLvに応じた変化のパターンに共通性を備えさせることができる。 Therefore, in the notification rule, by specifying a value for each notification level Lv of the display color, at least the notification device 20 that performs visual notification has a common display color according to the notification level Lv. Informs at. Thereby, the change pattern according to the notification level Lv of the visual notification mode by the notification device 20 can be provided with commonality.
 また、アイコン画像の表示サイズは、報知レベルLvが1のときの表示サイズを基準として、報知レベルが2,3,4と上がるにつれて、アイコンの表示倍率Pbを1.2、1.4、1.6とする。すなわち、アイコンの表示倍率Pbを報知レベルLvに連動させて増大させるものとする。また、表示倍率Pbは、報知レベルLvを変数とする1次関数:Pb=0.2×Lv+0.8で表してもよい。 Further, the display size of the icon image is such that the display magnification Pb of the icon is 1.2, 1.4, 1 as the notification level increases to 2, 3 and 4 with reference to the display size when the notification level Lv is 1. .6. That is, the icon display magnification Pb is increased in conjunction with the notification level Lv. The display magnification Pb may be expressed by a linear function with the notification level Lv as a variable: Pb = 0.2 × Lv + 0.8.
 本実施形態のようにアイコン画像の表示倍率Pbの報知レベルLv毎の値を報知規則で規定している場合、視覚報知態様としてアイコン画像を所定の表示装置に表示させる態様を採用している報知装置20は、何れの報知装置も、報知レベルが高くなるほど当該アイコン画像を拡大して表示させる。すなわち、視覚報知態様としてアイコン画像を所定の表示装置に表示させる態様を採用している報知装置20の視覚報知態様に共通性をもたせることができる。 When the value for each notification level Lv of the display magnification Pb of the icon image is defined by the notification rule as in this embodiment, a notification that employs a mode in which an icon image is displayed on a predetermined display device as a visual notification mode The device 20 enlarges and displays the icon image as the notification level increases. That is, the visual notification mode of the notification device 20 adopting a mode in which an icon image is displayed on a predetermined display device as the visual notification mode can be made common.
 なお、視覚報知を実施する全ての報知装置20が、視覚報知態様としてアイコン画像を所定の表示装置に表示させる態様を採用しているわけではない。視覚報知態様としてアイコン画像を所定の表示装置に表示させる態様を採用していない報知装置20には、当該要素に対する規則は適用されないものとする。 Note that not all notification devices 20 that perform visual notification adopt a mode in which an icon image is displayed on a predetermined display device as a visual notification mode. It is assumed that the rule for the element is not applied to the notification device 20 that does not employ a mode in which an icon image is displayed on a predetermined display device as a visual notification mode.
 また、本実施形態では、報知装置20は、報知規則に規定されている視覚要素を用いた視覚報知を実施する場合には、いずれの視覚要素も当該報知規則に規定されている報知レベルLv毎の値を採用する構成とするが、これに限らない。表示装置が備える表示領域は有限であるため、表示サイズや表示枠線の太さの変更などの視覚要素は、報知規則の影響を受けないように例外処理されてもよい。 Moreover, in this embodiment, when the alerting | reporting apparatus 20 implements visual alerting | reporting using the visual element prescribed | regulated to alerting | reporting rule, every visual element is for every alerting | reporting level Lv prescribed | regulated to the said alerting | reporting rule. However, the present invention is not limited to this. Since the display area provided in the display device is finite, visual elements such as a change in display size and display frame line thickness may be exceptionally processed so as not to be affected by the notification rule.
 マーカー枠線の太さPcもまた、報知レベルLvが高いほど太く表示するように定めればよい。例えば、報知レベルLvが1のときの表示サイズを基準として、報知レベルLvが2,3,4と上がるにつれて、マーカー枠線の太さPcを1.2倍、1.4倍、1.6倍とする。また、枠線の太さPcは、報知レベルLvを変数とする1次関数:Pc=0.2×Lv+1.0で表してもよい。 The thickness Pc of the marker frame line may also be determined so as to be displayed thicker as the notification level Lv is higher. For example, on the basis of the display size when the notification level Lv is 1, as the notification level Lv increases to 2, 3 and 4, the thickness Pc of the marker frame line is 1.2 times, 1.4 times, 1.6 Double. Further, the thickness Pc of the frame line may be expressed by a linear function with the notification level Lv as a variable: Pc = 0.2 × Lv + 1.0.
 マーカー枠線の太さPcの報知レベルLv毎の値を報知規則に規定している場合、視覚報知態様としてマーカー画像を表示させる態様を採用している報知装置20は、何れの報知装置も、報知レベルLvが高くなるほど当該マーカー画像の枠線を太くして表示させる。 When the value for each notification level Lv of the thickness Pc of the marker frame line is defined in the notification rule, the notification device 20 adopting a mode for displaying a marker image as a visual notification mode is any notification device, The higher the notification level Lv, the thicker the frame of the marker image is displayed.
 なお、ここでは、表示色や、アイコンの表示サイズ、マーカー枠線の太さを報知レベルLvに応じて変化させる際の規則や具体的な設定値を例示した。もちろん、報知レベルLvに連動して変化させる要素はこれらに限らない。その他、表示画像の点滅速度などを報知レベルLvと連動させてもよい。また、報知装置20が報知に利用する報知媒体が、光源を有する場合には、その光度(或いは輝度)を報知レベルLvに応じて大きくしてもよい。 Here, the rules and specific setting values for changing the display color, the icon display size, and the thickness of the marker frame line according to the notification level Lv are exemplified. Of course, the elements to be changed in conjunction with the notification level Lv are not limited to these. In addition, the blinking speed of the display image may be linked to the notification level Lv. Further, when the notification medium used for notification by the notification device 20 includes a light source, the luminous intensity (or luminance) may be increased according to the notification level Lv.
 次に、聴覚要素について述べる。聴覚要素としては、警告音(いわゆるブザー)や音声メッセージといった音声の音量の他、警告音の音色(すなわち周波数)、警告音の出力継続時間、警告音の出力頻度など様々なものがある。本実施形態では一例として、報知規則は、警告音の周波数と、音声の音量に対する報知レベルLv毎の値を規定しているものとする。 Next, the auditory element will be described. There are various auditory elements such as a sound volume such as a warning sound (so-called buzzer) and a voice message, a tone color (that is, a frequency) of the warning sound, a warning sound output duration, and a warning sound output frequency. In the present embodiment, as an example, the notification rule prescribes a value for each notification level Lv with respect to the frequency of the warning sound and the volume of the sound.
 例えば、警告音の周波数は、図4に示すように報知レベルLvが1,2,3,4と上がるにつれて、500、1000、1500、2000Hzと高くしていくこととする。これにより、ドライバの聴覚に与える刺激が、報知レベルLvに応じて鋭くなっていく。 For example, the frequency of the warning sound is increased to 500, 1000, 1500, and 2000 Hz as the notification level Lv increases to 1, 2, 3, and 4 as shown in FIG. Thereby, the stimulus given to the driver's hearing becomes sharper according to the notification level Lv.
 警告音の周波数Qaと報知レベルLvとの関係は、図5に示すように、報知レベルLvを変数とする1次関数:Qa=500×Lvで表していても良い。ここでの報知レベルLvの比例定数は一例として500Hzとしているが、その他、400Hzや600Hzでもよい。また、初期値を有する1次関数で表されていても良い。 As shown in FIG. 5, the relationship between the warning sound frequency Qa and the notification level Lv may be expressed by a linear function with the notification level Lv as a variable: Qa = 500 × Lv. The proportional constant of the notification level Lv here is 500 Hz as an example, but 400 Hz or 600 Hz may be used. Further, it may be expressed by a linear function having an initial value.
 また、出力音声の音量Qbは、報知レベルLvが高くなるほど大きくする。例えば、図4に示すように報知レベルLvが1,2,3,4と上がるにつれて音量Qbを55,60,65,70[dB]とする。また、音量Qbと報知レベルLvとの関係は、図5に示すように、報知レベルLvを変数とする1次関数:Qb=5×Lv+50で表していても良い。 Further, the volume Qb of the output sound is increased as the notification level Lv is increased. For example, as shown in FIG. 4, the sound volume Qb is set to 55, 60, 65, and 70 [dB] as the notification level Lv increases to 1, 2, 3, and 4. Further, as shown in FIG. 5, the relationship between the sound volume Qb and the notification level Lv may be represented by a linear function with the notification level Lv as a variable: Qb = 5 × Lv + 50.
 なお、音量Qbは、聴覚報知を実施する報知装置20であれば、いずれの報知装置も共通して利用する聴覚要素である。すなわち、警告音を出力させる報知装置20だけでなく、音声メッセージを出力する報知装置20も利用する要素である。したがって、報知規則において、音量の報知レベルLv毎の値を規定することで、少なくとも聴覚による報知を実施する報知装置20は、何れの報知装置20も、報知レベルLvに応じて共通した音量の変化パターンで報知を実施する。これによって、報知装置20による聴覚報知態様の報知レベルLvに応じた変化のパターンに共通性を備えさせることができる。 Note that the volume Qb is an auditory element that is commonly used by any notification device as long as it is the notification device 20 that performs auditory notification. That is, it is an element that utilizes not only the notification device 20 that outputs a warning sound but also the notification device 20 that outputs a voice message. Therefore, in the notification rule, by defining a value for each notification level Lv of the volume, the notification device 20 that performs at least auditory notification is a change in volume that is common to all the notification devices 20 according to the notification level Lv. Announcement is performed with a pattern. Thereby, the change pattern according to the notification level Lv of the auditory notification mode by the notification device 20 can be made common.
 本実施形態では、聴覚要素として、音量Qbや、警告音の周波数Qaを報知レベルLvに応じて変化させる際の規則や具体的な設定値を例示した。もちろん、その他、警告音の出力継続時間や、出力頻度などを報知レベルLvと連動させてもよい。例えば、報知レベルLvが高いほど警告音の出力継続時間を長くしたり、或いは、報知レベルLvが高いほど警告音の出力頻度を高くしたりすればよい。 In the present embodiment, examples of rules and specific setting values for changing the volume Qb and the frequency Qa of the warning sound according to the notification level Lv are given as auditory elements. Of course, the warning sound output duration, output frequency, and the like may be linked to the notification level Lv. For example, the higher the notification level Lv, the longer the output duration of the warning sound, or the higher the notification level Lv, the higher the output frequency of the warning sound.
 次に、触覚要素について述べる。触覚要素としては、振動の周波数や、振動の強さ、振動継続時間、振動間隔など様々なものがある。また、遠隔操作デバイス76などの入力装置に設けられた触覚生成機能を利用する場合には、操作荷重、発生力、クリック感、凹凸感なども制御パラメータの対象とすることができる。本実施形態では一例として、報知規則は、振動周波数と、振動の強さに対する報知レベルLv毎の値を規定しているものとする。 Next, let's talk about tactile elements. There are various tactile elements such as vibration frequency, vibration intensity, vibration duration, and vibration interval. In addition, when using a tactile sensation generation function provided in an input device such as the remote operation device 76, an operation load, a generated force, a click feeling, a feeling of unevenness, and the like can be set as control parameters. In the present embodiment, as an example, the notification rule prescribes a value for each notification level Lv with respect to the vibration frequency and the strength of vibration.
 例えば振動周波数Raは、報知レベルLvが1,2,3,4と上がるにつれて、50,100,150,200Hzと高くしていけばよい。これにより、ドライバの触覚に与える刺激が、報知レベルLvに応じて鋭くなっていく。 For example, the vibration frequency Ra may be increased to 50, 100, 150, and 200 Hz as the notification level Lv increases to 1, 2, 3, and 4. Thereby, the stimulus given to the tactile sense of the driver becomes sharper according to the notification level Lv.
 また、振動周波数Raと報知レベルLvとの関係は、図5に示すように、報知レベルLvを変数とする1次関数:Ra=50×Lvで表していても良い。ここでの報知レベルLvの比例定数は一例として50[Hz]としているが、その他、40[Hz]や60[Hz]でもよい。また、初期値を有していても良い。 Further, as shown in FIG. 5, the relationship between the vibration frequency Ra and the notification level Lv may be expressed by a linear function Ra = 50 × Lv having the notification level Lv as a variable. Here, the proportional constant of the notification level Lv is 50 [Hz] as an example, but may be 40 [Hz] or 60 [Hz]. Moreover, you may have an initial value.
 報知規則において振動周波数Raの報知レベルLv毎の値を定めることにより、少なくとも触覚を利用した報知を実施する報知装置20は、何れの報知装置も、報知レベルLvに応じて共通した振動周波数Raで報知を実施する。これによって、報知装置20による触覚報知態様の報知レベルLvに応じた変化のパターンに共通性を備えさせることができる。 By determining the value for each notification level Lv of the vibration frequency Ra in the notification rule, the notification device 20 that performs notification using at least a tactile sensation has a common vibration frequency Ra according to the notification level Lv. Carry out notifications. Thereby, the change pattern according to the notification level Lv of the tactile notification mode by the notification device 20 can be made common.
 また、振動の強さに相当する加速度Rbは、報知レベルLvが高くなるほど大きくすればよい。例えば、図4に示すように報知レベルLvが1,2,3,4と上がるにつれて加速度Rbを20,40,60,80[m/s^2]とする。また、加速度Rbと報知レベルLvとの関係は、図5に示すように、報知レベルLvを変数とする1次関数:Qb=20×Lvで表しても良い。なお、振動の強さに相当する要素として、加速度(単位:m/s^2)ではなく力(単位:N)を採用してもよい。 Further, the acceleration Rb corresponding to the strength of vibration may be increased as the notification level Lv increases. For example, as shown in FIG. 4, the acceleration Rb is set to 20, 40, 60, 80 [m / s ^ 2] as the notification level Lv increases to 1, 2, 3, and 4. Further, as shown in FIG. 5, the relationship between the acceleration Rb and the notification level Lv may be expressed by a linear function with the notification level Lv as a variable: Qb = 20 × Lv. Note that force (unit: N) instead of acceleration (unit: m / s ^ 2) may be adopted as an element corresponding to the strength of vibration.
 ここでは、振動周波数Raと振動素子の加速度Rbについて、報知レベルLv毎の値を定めたが、その他、振動継続時間や、振動間隔などを報知レベルLvと連動させてもよい。例えば、振動継続時間は報知レベルLvが高いほど長くしたり、振動の間隔は報知レベルLvが高いほどを短くしたりすればよい。 Here, the values for each notification level Lv are determined for the vibration frequency Ra and the acceleration Rb of the vibration element, but the vibration duration time, vibration interval, and the like may be linked to the notification level Lv. For example, the vibration duration time may be increased as the notification level Lv is increased, and the vibration interval may be decreased as the notification level Lv is increased.
 なお、視覚要素や、聴覚要素、触覚要素として以上で例示した種々の要素の値はいずれも、報知レベルLvが上昇するにつれて一定の割合で増大(又は減少)させていく。すなわち、各要素の報知レベルLvに応じた変化のパターンが統一されている。従って、各感覚器官を介してドライバが感じる報知レベルLvの上昇度合いにも統一感が生じさせることができる。これにより、報知レベルLvの変化やその報知レベルLvを、ドライバは視覚、聴覚、触覚のいずれにおいても同様に感じることができる。 Note that the values of the various elements exemplified above as visual elements, auditory elements, and tactile elements all increase (or decrease) at a constant rate as the notification level Lv increases. That is, the change pattern according to the notification level Lv of each element is unified. Therefore, a sense of unity can be generated in the degree of increase in the notification level Lv that the driver feels through each sensory organ. Thereby, the driver can feel the change of the notification level Lv and the notification level Lv in any of visual, auditory, and tactile senses.
 再び図3に戻り、報知制御装置30が備える機能ブロックの説明をする。報知要求受付部F33は、報知装置20から入力される報知要求信号を取得し、報知実施部F34に渡す。報知要求信号は、報知に利用する報知媒体と、その報知媒体での報知態様とを指定したデータを含んでいる。なお、複数の報知要求信号が略同時に到着した場合には、いったんバッファに格納し、到着順、又は予め設定された優先度に基づいた順に処理していけばよい。 Returning to FIG. 3 again, the functional blocks provided in the notification control device 30 will be described. The notification request receiving unit F33 acquires a notification request signal input from the notification device 20, and passes it to the notification execution unit F34. The notification request signal includes data specifying a notification medium used for notification and a notification mode on the notification medium. When a plurality of notification request signals arrive almost simultaneously, they are stored once in a buffer and processed in the order of arrival or based on a preset priority.
 報知実施部F34は、報知要求受付部F33が取得した報知要求信号に基づいた報知を実施する。すなわち、報知装置20から指定された報知媒体を、指定された報知態様で作動させる。 The notification execution unit F34 performs notification based on the notification request signal acquired by the notification request reception unit F33. That is, the notification medium specified by the notification device 20 is operated in the specified notification mode.
 次に、本実施形態における車両用報知システム100が備える報知装置20の構成の一例について述べる。報知装置20A~Dのそれぞれは、図3に示すように機能ブロックとして、状態量取得部F21、報知レベル判定部F22、報知媒体選択部F23、及び報知処理部F24を備えている。各報知装置20が備える機能ブロックF21~24は、対象とする状態量や、報知に利用する報知媒体、報知レベルLvの判定基準が異なるだけである。このため、便宜上、車間距離報知装置20Aを例にとって各機能ブロックについて説明する。 Next, an example of the configuration of the notification device 20 included in the vehicle notification system 100 according to this embodiment will be described. Each of the notification devices 20A to 20D includes a state quantity acquisition unit F21, a notification level determination unit F22, a notification medium selection unit F23, and a notification processing unit F24 as functional blocks as shown in FIG. The functional blocks F21 to F24 provided in each notification device 20 differ only in the target state quantity, the notification medium used for notification, and the determination criteria for the notification level Lv. Therefore, for the sake of convenience, each functional block will be described taking the inter-vehicle distance notification device 20A as an example.
 なお、車間距離報知装置20Aが備える機能ブロックを他の報知装置20が備える機能ブロックF21~24と区別するため、状態量取得部の符号をF21A、報知レベル判定部の符号をF22A、報知媒体選択部の符号をF23A、報知処理部の符号をF24Aと表す。 In order to distinguish the functional blocks provided in the inter-vehicle distance notification device 20A from the functional blocks F21 to F24 provided in the other notification devices 20, the code of the state quantity acquisition unit is F21A, the code of the notification level determination unit is F22A, and a notification medium is selected. The code of the part is represented as F23A, and the code of the notification processing unit is represented as F24A.
 状態量取得部F21Aは、車間距離報知装置20Aが報知の対象とする状態量を取得する。前述の通り、車間距離報知装置20Aは、先行車両との車間距離に応じた態様で報知を実施するものである。すなわち、状態量取得部F21Aは、先行車両との車間距離を取得する。 The state quantity acquisition unit F21A acquires a state quantity that is a target of notification by the inter-vehicle distance notification device 20A. As described above, the inter-vehicle distance notification device 20A performs notification in a manner corresponding to the inter-vehicle distance from the preceding vehicle. That is, the state quantity acquisition unit F21A acquires the inter-vehicle distance from the preceding vehicle.
 報知レベル判定部F22Aは、状態量取得部F21Aが取得した状態量(ここでは先行車両との車間距離)と、予め設定されている目標車間距離とに基づいて報知レベルLvを判定する。目標車間距離は、走行速度に依らず一定の値としてもよいし、走行速度に応じて異なる値が適用されても良い。ここでは一例として、目標車間距離は走行速度に応じて異なる値が適用されるものとする。 The notification level determination unit F22A determines the notification level Lv based on the state quantity acquired by the state quantity acquisition unit F21A (here, the inter-vehicle distance from the preceding vehicle) and a preset target inter-vehicle distance. The target inter-vehicle distance may be a constant value regardless of the traveling speed, or a different value may be applied depending on the traveling speed. Here, as an example, it is assumed that a different value is applied to the target inter-vehicle distance depending on the traveling speed.
 なお、走行速度に応じて変化する目標車間距離の変化のパターンは、複数パターン用意されてあってもよい。例えば比較的長い車間距離を維持する長距離パターンと、比較的短い車間距離を維持する短距離パターンと、長距離パターンと短距離パターンの中間に相当する中距離パターンといった、複数のパターンを備えてあってもよい。そのような構成において何れのパターンを採用するかは、ドライバによって選択されればよい。 Note that a plurality of patterns for changing the target inter-vehicle distance that changes according to the traveling speed may be prepared. For example, it has a plurality of patterns such as a long-distance pattern that maintains a relatively long inter-vehicle distance, a short-distance pattern that maintains a relatively short inter-vehicle distance, and a middle-distance pattern that corresponds to the middle of the long-distance and short-distance patterns. There may be. Which pattern should be adopted in such a configuration may be selected by the driver.
 ここでは、一例として目標車間距離の変化のパターンは1種類であるとする。走行速度が80Km/hである場合を例に取って説明する。また、走行速度が80Km/hでの目標車間距離を50mとする。 Here, as an example, it is assumed that there is one type of change pattern of the target inter-vehicle distance. A case where the traveling speed is 80 km / h will be described as an example. In addition, the target inter-vehicle distance at a traveling speed of 80 km / h is 50 m.
 例えば、報知レベル判定部F22Aは、車間距離が目標車間距離に応じて定まる第1閾値(例えば50m)以上である場合には、報知レベルLvを1と判定する。また、車間距離が第1閾値よりも小さく、かつ、第1閾値よりも小さい第2閾値(例えば45m)以上である場合には、報知レベルLvを2と判定する。 For example, the notification level determination unit F22A determines the notification level Lv to be 1 when the inter-vehicle distance is equal to or greater than a first threshold (for example, 50 m) determined according to the target inter-vehicle distance. Further, when the inter-vehicle distance is smaller than the first threshold and equal to or larger than a second threshold (for example, 45 m) smaller than the first threshold, the notification level Lv is determined to be 2.
 車間距離が第2閾値よりも小さく、かつ、第2閾値よりも小さい第3閾値(例えば40m)以上である場合には、報知レベルLvを3と判定する。車間距離が第3閾値よりも小さい場合には、報知レベルLvを4と判定する。 When the inter-vehicle distance is smaller than the second threshold and not less than a third threshold (for example, 40 m) smaller than the second threshold, the notification level Lv is determined to be 3. When the inter-vehicle distance is smaller than the third threshold, the notification level Lv is determined to be 4.
 目標車間距離に対して実際の車間距離が小さいほどドライバは注意をする必要があるため、報知レベル判定部F22Aは、車間距離が小さいほど報知レベルLvを高く判定する。これらの報知レベルLvを判定するための閾値は、適宜設計されればよい。 Since the driver needs to be more careful as the actual inter-vehicle distance is smaller than the target inter-vehicle distance, the notification level determination unit F22A determines that the notification level Lv is higher as the inter-vehicle distance is smaller. The thresholds for determining these notification levels Lv may be designed as appropriate.
 報知媒体選択部F23Aは、報知制御装置30から取得した、報知媒体として利用可能な機器のうち、報知に利用する報知媒体を選択する。なお、報知に利用する報知媒体は、固定されていても良いし、動的に変更されてもよい。ここでは、HUD51、右側サイドスピーカ61R、把持部触覚生成装置71を選択していることとする。 The notification medium selection unit F <b> 23 </ b> A selects a notification medium to be used for notification out of devices that can be used as the notification medium acquired from the notification control device 30. Note that a notification medium used for notification may be fixed or dynamically changed. Here, it is assumed that the HUD 51, the right side speaker 61R, and the grip portion tactile sense generating device 71 are selected.
 報知処理部F24Aは、報知媒体選択部F23Aが選択している報知媒体毎の報知態様を、報知レベル判定部F22Aが判定した報知レベルLvに応じて決定し、その報知媒体での報知態様を示すデータ(出力用データとする)を生成する。そして、出力用データを含む報知要求信号を報知制御装置30に出力する。 The notification processing unit F24A determines a notification mode for each notification medium selected by the notification medium selection unit F23A according to the notification level Lv determined by the notification level determination unit F22A, and indicates the notification mode in the notification medium. Data (output data) is generated. Then, a notification request signal including output data is output to the notification control device 30.
 例えば報知処理部F24は、出力用データとして、HUD51に図6に示すアイコン画像Icnを表示させるためのデータ(HUD用データとする)を生成し、報知制御装置30に出力する。HUD用データには、アイコン画像Icnの表示色やサイズ、HUD画像内での表示位置を指定するデータを含んでいる。なお、図6は、報知レベルLvが1の場合のアイコン画像Icnの表示態様の一例を示している。また、当該車間距離報知装置20Aが動作中においては、当該アイコン画像IcnがHUD51に表示されているものとする。 For example, the notification processing unit F24 generates, as output data, data for displaying the icon image Icn shown in FIG. 6 on the HUD 51 (referred to as HUD data) and outputs the data to the notification control device 30. The HUD data includes data designating the display color and size of the icon image Icn and the display position in the HUD image. FIG. 6 shows an example of a display mode of the icon image Icn when the notification level Lv is 1. Further, it is assumed that the icon image Icn is displayed on the HUD 51 while the inter-vehicle distance notification device 20A is operating.
 また、報知処理部F24は、右側サイドスピーカ61Rから出力させる警告音の周波数や音量などを示すデータ(音声出力用データとする)を、出力用データとして報知制御装置30に出力する。音声出力用データは、そのまま右側サイドスピーカ61Rから出力させる音声データであってもよいし、音量や周波数を指定したデータであってもよい。さらに、報知処理部F24は、把持部触覚生成装置71を振動させる態様を示すデータを報知制御装置30に出力する。 Further, the notification processing unit F24 outputs data (sound output data) indicating the frequency and volume of the warning sound output from the right side speaker 61R to the notification control device 30 as output data. The audio output data may be audio data that is output from the right side speaker 61R as it is, or data that specifies the volume and frequency. Further, the notification processing unit F24 outputs data indicating a mode of vibrating the grip unit tactile sensation generating device 71 to the notification control device 30.
 この報知媒体毎の報知態様は、報知レベル判定部F22Aが判定している報知レベルLvと、報知規則データに示される報知規則とに基づいて決定される。すなわち、報知処理部F24Aが報知媒体毎に決定する報知態様は、報知規則に則った態様となっている。 The notification mode for each notification medium is determined based on the notification level Lv determined by the notification level determination unit F22A and the notification rule indicated in the notification rule data. That is, the notification mode determined by the notification processing unit F24A for each notification medium is a mode according to the notification rules.
 例えば、報知処理部F24Aは、アイコン画像Icnの表示色を報知レベルLvに応じて、緑、黄、橙、赤に変更して表示させるとともに、その表示サイズを、報知レベルLvに応じて、基本サイズの1倍、1.2倍、1.4倍、1.6倍としたサイズで表示させる。 For example, the notification processing unit F24A changes the display color of the icon image Icn to green, yellow, orange, and red according to the notification level Lv, and displays the display size based on the notification level Lv. It is displayed in a size that is 1 time, 1.2 times, 1.4 times, and 1.6 times the size.
 より具体的には、報知レベル判定部F22Aが判定している報知レベルLvが1の場合には、アイコン画像Icnを基準とする表示サイズ(図6参照)、及び緑色で表示させる。また、報知レベルLvが4の場合には、図7に示すように、図6に示す表示サイズの1.6倍の大きさで表示するとともに、赤色で表示させる。 More specifically, when the notification level Lv determined by the notification level determination unit F22A is 1, the display size (see FIG. 6) based on the icon image Icn is displayed in green. When the notification level Lv is 4, as shown in FIG. 7, it is displayed in 1.6 times the display size shown in FIG. 6 and in red.
 なお、図6、図7では、報知レベルLvが1の場合も4の場合も、アイコン画像Icnは、車両進行方向に並ぶ3つのブロック図形を含む態様としている。すなわち、報知処理部F24Aは、報知レベルLvによらず、一定数(ここでは3)のブロック図形を含むアイコン画像Icnを表示させる態様としているが、これに限らない。アイコン画像Icnが備えるブロック図形の数は、報知レベルLvに応じて変更してもよい。 6 and 7, the icon image Icn is configured to include three block figures arranged in the vehicle traveling direction regardless of whether the notification level Lv is 1 or 4. That is, the notification processing unit F24A displays the icon image Icn including a certain number (three in this case) of block graphics regardless of the notification level Lv, but is not limited thereto. The number of block graphics included in the icon image Icn may be changed according to the notification level Lv.
 例えば、報知レベルLvが高いほど、アイコン画像Icnが備えるブロック図形の数が減らしてもよい。車間距離報知装置20Aは車間距離が短いほど報知レベルLvを高く判定するため、ブロック図形の数が、先行車両との車間距離を表す役割を果たす。 For example, as the notification level Lv is higher, the number of block graphics included in the icon image Icn may be reduced. Since the inter-vehicle distance notification device 20A determines that the notification level Lv is higher as the inter-vehicle distance is shorter, the number of block figures plays a role of expressing the inter-vehicle distance from the preceding vehicle.
 そのように、報知レベルLvに応じてHUD51に表示させるアイコン画像Icnが備える図形の数や形状を変更する場合であっても、報知規則に定められている要素の報知レベルLvに応じた変化のパターンは保持される。 As described above, even when the number or shape of the graphic included in the icon image Icn displayed on the HUD 51 is changed according to the notification level Lv, the change according to the notification level Lv of the elements defined in the notification rule is changed. The pattern is preserved.
 また、右側サイドスピーカ61Rから出力させる警告音の周波数を、報知レベルLvに応じて500、1000、1500、2000[Hz]とした警告音を出力させるとともに、その音量も、55、60、65、70[dB]と報知レベルLvに応じて増大させる。 In addition, a warning sound having a frequency of a warning sound output from the right side speaker 61R of 500, 1000, 1500, 2000 [Hz] according to the notification level Lv is output, and the volume is also 55, 60, 65, It is increased according to 70 [dB] and the notification level Lv.
 さらに、把持部触覚生成装置71を振動させる際の振動周波数を、報知レベルLvに応じて、50、100、150、200[Hz]の順に高くしていくとともに、その加速度を、20、40、60、80[m/s^2]の順に大きくしていく。 Further, the vibration frequency when vibrating the grip part tactile sensation generating device 71 is increased in the order of 50, 100, 150, 200 [Hz] according to the notification level Lv, and the acceleration is increased to 20, 40, Increase in the order of 60, 80 [m / s ^ 2].
 なお、報知レベルが1の状態、すなわち安全な状態においても警告音が出力されたり、振動が発生されているとドライバにとって煩わしく感じる恐れがある。そこで、視覚による報知、聴覚による報知、触覚による報知の組み合わせを、報知レベルに応じて変更してもよい。その一例を図8に示す。 Note that even when the alarm level is 1, that is, in a safe state, if a warning sound is output or vibration is generated, the driver may feel troublesome. Therefore, a combination of visual notification, auditory notification, and tactile notification may be changed according to the notification level. An example is shown in FIG.
 図8は、視覚による報知は何れの報知レベルにおいても実施する一方、聴覚による報知と、触覚による報知は、報知レベルが2以上の場合に採用する例を示している。なお、報知レベルLvが2の状態から聴覚による報知を実施する場合であっても、報知規則の報知レベルLvが2の場合に規定されている聴覚パラメータの設定値を適用する。 FIG. 8 shows an example in which visual notification is performed at any notification level, while auditory notification and tactile notification are employed when the notification level is 2 or higher. In addition, even when the auditory notification is performed from the state where the notification level Lv is 2, the setting value of the auditory parameter defined when the notification level Lv of the notification rule is 2 is applied.
 以上、車間距離報知装置20Aが備える状態量取得部F21A、報知レベル判定部F22A、報知媒体選択部F23A、及び報知処理部F24Aについて述べたが、その他の報知装置20についても同様である。 The state quantity acquisition unit F21A, the notification level determination unit F22A, the notification medium selection unit F23A, and the notification processing unit F24A included in the inter-vehicle distance notification device 20A have been described above, but the same applies to the other notification devices 20.
 例えば、後方車両報知装置20Bが備える状態量取得部F21は、自車両と後方車両との車間距離を取得すれば良い。報知の対象とする車両は、自車両走行車線の後方車両(すなわち後続車両)とすればよい。 For example, the state quantity acquisition unit F21 provided in the rear vehicle notification device 20B may acquire the inter-vehicle distance between the host vehicle and the rear vehicle. The vehicle to be notified may be a vehicle behind the own vehicle lane (that is, a succeeding vehicle).
 また、自車両が車線変更しようとしている場合には、その変更先に相当する隣接車線の後方車両も、報知の対象に含めればよい。自車両が車線変更しようとしているか否かは、車載センサ群11から入力される方向指示レバーのポジション情報や、ドライバによる操舵操作に基づいて判定すればよい。 Also, if the vehicle is about to change lanes, the vehicle behind the adjacent lane corresponding to the change destination may be included in the notification target. Whether or not the host vehicle is about to change the lane may be determined based on the position information of the direction indicating lever input from the in-vehicle sensor group 11 and the steering operation by the driver.
 さらに、隣接車線を走行している後方車両が、自車両の走行車線へ車線変更しようとしている場合には、その後方車両も報知の対象に含めてもよい。隣接車線の後方車両が車線変更しようとしていると判定する場合とは、周辺監視カメラ12が撮影した画像から当該後方車両の方向指示灯の点滅を検出した場合とすればよい。また、車々間通信が利用でき、かつ、車々間通信で送信される情報に、送信車両の方向指示レバーのポジション情報が含まれている場合には、後方車両から送信された車両情報に含まれる方向指示レバーのポジション情報に基づいて判定してもよい。 Furthermore, when the rear vehicle traveling in the adjacent lane is about to change the lane to the traveling lane of the own vehicle, the rear vehicle may be included in the notification target. The case where it is determined that the vehicle behind the adjacent lane is about to change lanes may be a case where blinking of the direction indicator lamp of the vehicle behind is detected from the image taken by the periphery monitoring camera 12. In addition, when the vehicle-to-vehicle communication is available and the information transmitted by the vehicle-to-vehicle communication includes the position information of the direction indicator lever of the transmitting vehicle, the direction indication included in the vehicle information transmitted from the rear vehicle The determination may be based on lever position information.
 報知レベル判定部F22は、自車両と後方車両との車間距離に基づいて報知レベルLvを判定すればよい。車線逸脱報知装置20Cが採用する報知媒体は、例えば、電子ルームミラー54や、電子サイドミラー55、サイドスピーカ61、把持部触覚生成装置71とすればよい。電子サイドミラー55や、サイドスピーカ61は、例えば自車両が車線変更しようとしている側(右側又は左側)の装置を指定して用いてもよい。 The notification level determination unit F22 may determine the notification level Lv based on the inter-vehicle distance between the host vehicle and the rear vehicle. The notification medium employed by the lane departure notification device 20C may be, for example, the electronic room mirror 54, the electronic side mirror 55, the side speaker 61, and the grip portion tactile sense generating device 71. For example, the electronic side mirror 55 and the side speaker 61 may designate and use a device on the side (right side or left side) on which the host vehicle is changing lanes.
 一例として、自車両が右側の車線へ走行車線を変更しようとしている場合に、自車両右側後方から接近する他車両の存在を報知する態様について、図9及び図10を用いて説明する。ここで、後方車両報知装置20Bは、視覚報知媒体として右側電子サイドミラー55Rを採用し、かつ、視覚報知態様として、自車両右側後方から接近している他車両をマーカー画像Mrkで強調表示する態様を採用しているものとする。 As an example, a mode of notifying the presence of another vehicle approaching from the rear right side of the host vehicle when the host vehicle is changing the driving lane to the right lane will be described with reference to FIGS. 9 and 10. Here, the rear vehicle notification device 20B employs the right electronic side mirror 55R as the visual notification medium, and as a visual notification mode, highlights the other vehicle approaching from the rear right side of the host vehicle with the marker image Mrk. Is adopted.
 図9は、後方車両報知装置20Bの報知レベル判定部F22が報知レベルLvを1と判定している場合の視覚報知態様を表している。すなわち、図9においてマーカー画像Mrkの枠線は、緑色で表示されているとともに、その枠線は基準とする太さで表示される。なお、マーカー画像Mrkの枠線で囲まれる面積は、右側電子サイドミラー55Rの表示画面における対象車両の表示サイズに合わせて調整するものとする。 FIG. 9 shows a visual notification mode when the notification level determination unit F22 of the rear vehicle notification device 20B determines that the notification level Lv is 1. That is, in FIG. 9, the frame line of the marker image Mrk is displayed in green, and the frame line is displayed with a reference thickness. The area surrounded by the frame line of the marker image Mrk is adjusted according to the display size of the target vehicle on the display screen of the right electronic side mirror 55R.
 図10は、後方車両報知装置20Bの報知レベル判定部F22が報知レベルを4と判定している場合の視覚報知態様を表している。すなわち、図10においてマーカー画像Mrkの枠線は、赤色で表示されるとともに、その枠線Pcの太さは図9に示す枠線の太さの1.6倍となっている。 FIG. 10 shows a visual notification mode when the notification level determination unit F22 of the rear vehicle notification device 20B determines that the notification level is 4. That is, in FIG. 10, the frame line of the marker image Mrk is displayed in red, and the thickness of the frame line Pc is 1.6 times the thickness of the frame line shown in FIG.
 ここで、車間距離報知装置20Aによる視覚報知の態様(図6及び図7参照)と、後方車両報知装置20Bによる視覚報知の態様(図9及び図10参照)を比較する。車間距離報知装置20Aは、HUD51にアイコン画像Icnを表示させるとともに、報知レベルLvに応じてその表示態様(色と表示サイズ)を変更する。一方、後方車両報知装置20Bは、右側電子サイドミラー55Rにマーカー画像Mrkを表示させるとともに、報知レベルLvに応じてその表示態様(色と枠線の太さ)を変更する。 Here, the visual notification mode (see FIGS. 6 and 7) by the inter-vehicle distance notification device 20A and the visual notification mode (see FIGS. 9 and 10) by the rear vehicle notification device 20B are compared. The inter-vehicle distance notification device 20A displays the icon image Icn on the HUD 51 and changes the display mode (color and display size) according to the notification level Lv. On the other hand, the rear vehicle notification device 20B displays the marker image Mrk on the right electronic side mirror 55R, and changes the display mode (color and thickness of the frame line) according to the notification level Lv.
 各報知装置20A、20Bが表示装置に表示させる画像の種類は異なるが、何れの報知装置も、報知レベルLvに応じてアイコン画像Icnとマーカー画像Mrkの表示色を報知規則に則った色で表示させる。 Although the types of images displayed on the display devices by the notification devices 20A and 20B are different, each notification device displays the display color of the icon image Icn and the marker image Mrk in a color according to the notification rule according to the notification level Lv. Let
 すなわち、各報知装置20A、20Bが報知規則に則った視覚報知態様で報知を実施することで、報知レベルLvに応じた視覚報知態様の変化のパターンに共通性(ここでは表示色)を持たせることができる。そして、ドライバは表示色から、それぞれの報知装置20における報知レベルLvを認識することができる。 That is, each notification device 20A, 20B performs notification in a visual notification mode according to a notification rule, so that the change pattern of the visual notification mode according to the notification level Lv has commonality (display color here). be able to. Then, the driver can recognize the notification level Lv in each notification device 20 from the display color.
 以上では、車間距離報知装置20A及び後方車両報知装置20Bの視覚報知態様について説明し、本実施形態による効果について言及したが、聴覚報知態様や触覚報知態様についても同様の効果を奏する。 In the above, the visual notification mode of the inter-vehicle distance notification device 20A and the rear vehicle notification device 20B has been described and the effects of the present embodiment have been described. However, the same effects can be achieved with the auditory notification mode and the tactile notification mode.
 また、以上では、車間距離報知装置20A及び後方車両報知装置20Bの構成及び作動について詳細に説明したが、その他の報知装置20C、Dについても同様に設計すればよい。 In the above description, the configuration and operation of the inter-vehicle distance notification device 20A and the rear vehicle notification device 20B have been described in detail. However, the other notification devices 20C and D may be similarly designed.
 例えば、車線逸脱報知装置20Cが備える報知レベル判定部F22は、自車両と白線との車幅方向の距離と、自車両の車幅方向の移動速度(すなわち白線への接近速度)に基づいて、報知レベルLvを判定すればよい。車線逸脱報知装置20Cが採用する報知媒体は、例えば、メータディスプレイ52や、電子サイドミラー55、サイドスピーカ61、把持部触覚生成装置71とすればよい。電子サイドミラー55や、サイドスピーカ61は、自車両が逸脱しそうな白線が存在する側(右側又は左側)の装置を指定して用いてもよい。 For example, the notification level determination unit F22 included in the lane departure notification device 20C is based on the distance in the vehicle width direction between the host vehicle and the white line and the moving speed of the host vehicle in the vehicle width direction (that is, the approach speed to the white line). The notification level Lv may be determined. The notification medium employed by the lane departure notification device 20C may be, for example, the meter display 52, the electronic side mirror 55, the side speaker 61, and the grip portion touch sense generation device 71. The electronic side mirror 55 and the side speaker 61 may be used by specifying a device on the side (right side or left side) where a white line on which the host vehicle is likely to deviate exists.
 また、覚醒状態維持装置20Dが備える報知レベル判定部F22は、覚醒度合いに応じて報知レベルLvを判定すればよい。覚醒状態維持装置20Dの報知媒体選択部F23が選択する報知媒体は、例えば、メータディスプレイ52や、センターディスプレイ53、サイドスピーカ61、センタースピーカ62、座席触覚生成装置72、加飾照明57などとすればよい。 Further, the notification level determination unit F22 provided in the wakefulness maintaining device 20D may determine the notification level Lv according to the degree of wakefulness. The notification medium selected by the notification medium selection unit F23 of the wakefulness maintaining device 20D is, for example, the meter display 52, the center display 53, the side speaker 61, the center speaker 62, the seat tactile generation device 72, the decorative lighting 57, or the like. That's fine.
 報知媒体選択部F23が選択する報知媒体を報知レベルLvに応じて増加させていってもよい。また、携帯端末ディスプレイ56や携帯端末スピーカ63、携帯端末触覚生成装置73を利用してもよい。 The notification medium selected by the notification medium selection unit F23 may be increased according to the notification level Lv. Moreover, you may utilize the portable terminal display 56, the portable terminal speaker 63, and the portable terminal tactile sense production | generation apparatus 73. FIG.
 以上で述べたように、各報知装置20が報知規則に則った報知態様で報知を実施することで、各報知装置20が採用している報知態様の報知レベルLvに応じた変化のパターンに、共通性を備えさせることができる。これによって、報知装置20毎に報知態様の変化パターンが異なっていることに伴うドライバが感じる違和感を低減でき、さらに、現在行われている報知態様と、報知されている情報の緊急性や深刻さとを対応付けて認識しやすくすることができる。 As described above, each notification device 20 performs notification in the notification mode according to the notification rule, so that the change pattern according to the notification level Lv of the notification mode adopted by each notification device 20 Commonality can be provided. As a result, it is possible to reduce a sense of incongruity felt by the driver due to a difference in the change pattern of the notification mode for each notification device 20, and further, the notification mode currently being performed and the urgency and seriousness of the information being reported Can be recognized in association with each other.
 また、報知規則に規定されている視覚要素や聴覚要素、触覚要素の態様は、報知レベルに応じて一意に定まるため、ドライバによる報知レベルLvの認識を促すことができる。 In addition, the visual element, the auditory element, and the tactile element defined in the notification rule are uniquely determined according to the notification level, so that the driver can recognize the notification level Lv.
 さらに、本実施形態の構成では、視覚報知態様、聴覚報知態様、触覚報知態様の何れも報知レベルLvが上がるにつれて、その周波数成分(波長や振動周波数など)を一定の割合で高くしていく。周波数成分が高いほど、鋭い報知態様となり、報知が行われていることをドライバが感知しやくなる。すなわち、報知レベルに応じて周波数成分を上げることで、情報が報知されていることをドライバが感知しやすくすることができるとともに、その鋭さから、報知されている情報の緊急性や深刻さをドライバが認識しやすくすることができる。 Furthermore, in the configuration of the present embodiment, the frequency components (wavelength, vibration frequency, etc.) are increased at a constant rate as the notification level Lv increases in any of the visual notification mode, the auditory notification mode, and the tactile notification mode. The higher the frequency component, the sharper the notification mode becomes, and the driver can easily detect that the notification is being performed. In other words, by increasing the frequency component according to the notification level, it is possible for the driver to easily detect that the information is being notified, and the urgency and seriousness of the information being notified is determined by the driver. Can be easily recognized.
 また、報知規則は、報知規則で規定している要素を用いて報知を実施する報知装置20の報知態様の変化のパターンが、異ならないように規定している。すなわち、報知規則を導入することによって、ドライバに実施される報知態様の多様性を抑制することができる。ドライバに実施される報知態様の多様性が抑制されることで、報知の態様からドライバが報知されている情報を認識するために要する負荷を軽減することができる。 In addition, the notification rule stipulates that the change pattern of the notification mode of the notification device 20 that performs notification using the elements specified in the notification rule is not different. That is, by introducing a notification rule, it is possible to suppress the diversity of notification modes implemented by the driver. By suppressing the diversity of notification modes implemented by the driver, it is possible to reduce the load required for the driver to recognize the information notified by the notification mode.
 さらに、単に波長や、警告音の周波数、振動周波数を上げていくだけではなく、いずれも報知レベルLvに応じて一定の割合(すなわち1次関数の比例定数)で上昇させていく。従って、各感覚器官が感じる報知レベルLvの上昇度合いにも統一感が生じさせることができる。これにより、報知レベルLvの変化を、ドライバは視覚、聴覚、触覚のいずれにおいても同様に感じることができる。 Furthermore, not only simply increasing the wavelength, the frequency of the warning sound, and the vibration frequency, but all of them are increased at a constant rate (that is, a proportional constant of a linear function) according to the notification level Lv. Therefore, a sense of unity can be generated in the degree of increase in the notification level Lv felt by each sensory organ. As a result, the driver can feel the change in the notification level Lv in any of visual, auditory, and tactile senses.
 以上、実施形態を説明したが、車両用報知システム、報知制御装置及び報知装置は上述の実施形態に限定されるものではなく、次の実施形態も本開示の技術的範囲に含まれ、さらに、下記以外にも要旨を逸脱しない範囲内で種々変更して実施することができる。 Although the embodiment has been described above, the vehicle notification system, the notification control device, and the notification device are not limited to the above-described embodiment, and the following embodiment is also included in the technical scope of the present disclosure. Other than the following, various modifications can be made without departing from the scope of the invention.
 例えば、本実施形態では、報知装置20が報知制御装置30に対して報知の実行を要求し、報知制御装置30がその要求に基づいて報知を実施する構成としたが、これに限らない。報知装置20が直接報知媒体に出力用データを出力し、報知を実施させても良い。 For example, in the present embodiment, the notification device 20 requests the notification control device 30 to execute notification, and the notification control device 30 performs notification based on the request. However, the configuration is not limited thereto. The notification device 20 may directly output the data for output to the notification medium to perform notification.
 さらに、本実施形態では、報知制御装置30と種々の報知装置20とを分離したブロックで表しているが、これらは1つの装置で実現されていても良い。例えば、報知制御装置30が、図11に示すように、種々の報知装置20のそれぞれに相当する機能を備えていても良い(これを変形例とする)。すなわち、車間距離報知部F20Aが車間距離報知装置20Aに、後方車両報知部F20Bが後方車両報知装置20Bに、車両線逸脱報知部F20Cが車線逸脱報知装置20Cに、覚醒状態維持部F20Dが覚醒状態維持装置20Dに、各々相当するものである。 Furthermore, in the present embodiment, the notification control device 30 and the various notification devices 20 are represented by separate blocks, but these may be realized by a single device. For example, the notification control device 30 may have a function corresponding to each of the various notification devices 20 as shown in FIG. 11 (this is a modified example). That is, the inter-vehicle distance notification unit F20A is the inter-vehicle distance notification device 20A, the rear vehicle notification unit F20B is the rear vehicle notification device 20B, the lane departure notification unit F20C is the lane departure notification device 20C, and the awake state maintaining unit F20D is the awake state. Each corresponds to the maintenance device 20D.
 また、報知媒体としては、本実施形態で例示したものの他、例えば、コンビネーションメータに備えられたインジケータ(例えば警告灯)を採用し、インジケータの点灯色を報知規則に則った色で発光させてもよい。 As the notification medium, in addition to those exemplified in the present embodiment, for example, an indicator (for example, a warning light) provided in the combination meter may be adopted, and the lighting color of the indicator may be emitted in a color according to the notification rule. Good.
 また、触覚を通してドライバに情報を報知するためのインターフェースは、アクセルペダル、ブレーキペダル、クラッチペダルに設置しても良いし、また、それらを組み合わせて実現されても良い。その他、周知のタッチパネルやハプティックデバイスなど、種々の入力装置に設けられている触覚フィードバック装置を、触覚による報知に利用してもよい。 Also, the interface for notifying the driver of information through the sense of touch may be installed on the accelerator pedal, the brake pedal, or the clutch pedal, or may be realized by combining them. In addition, you may utilize the tactile feedback apparatus provided in various input devices, such as a known touch panel and a haptic device, for notification by tactile sense.
 以上では、検出対象物センサ13が車両を検出する例を示したが、これに限らない。その他、検出対象物は、ガードレールや、歩行者、自転車などであってもよい。 Although the example in which the detection target sensor 13 detects the vehicle has been described above, the present invention is not limited thereto. In addition, the detection target may be a guardrail, a pedestrian, a bicycle, or the like.
 また、以上の実施形態では、先行車両や後方車両との車間距離や、走行車線に対する自車両の挙動、ドライバの覚醒状態についてドライバに報知する態様としたが、これに限らない。 In the above embodiment, the driver is notified of the inter-vehicle distance from the preceding vehicle and the rear vehicle, the behavior of the host vehicle with respect to the traveling lane, and the driver's awakening state, but the present invention is not limited thereto.
 本車両用報知システム100は、自車両外部(走行環境など)の情報や、車載センサ群11が取得する自車両内部の情報、ドライバモニタシステム14が取得するドライバの情報などに基づいて、ドライバに対する報知を実施する報知装置20に対応している。自車両外部の情報には、自車両周辺に存在する物体との距離や、相対速度、信号の有無や点灯色、道路標識、渋滞度合い、路面状況などが該当する。例えば、自時車両外部及び自車両内部の情報を用いた状態量としては、路面状況(摩擦力の大きさ)に対するステアリング操作の危険度合いや、標識法定速度に対する自車両走行速度の超過度合い、燃費などがある。 The vehicle notification system 100 is based on information outside the host vehicle (traveling environment, etc.), information inside the host vehicle acquired by the in-vehicle sensor group 11, driver information acquired by the driver monitor system 14, and the like. This corresponds to a notification device 20 that performs notification. The information outside the host vehicle includes a distance from an object around the host vehicle, a relative speed, the presence / absence of a signal, a lighting color, a road sign, a degree of congestion, a road surface condition, and the like. For example, state quantities using information outside and inside the own vehicle include the degree of danger of steering operation with respect to the road surface condition (magnitude of frictional force), the degree of excess of the own vehicle running speed with respect to the statutory speed, and fuel consumption and so on.
 また、ドライバの情報には、前述のドライバの生体情報の他、視線方向や、連続運転時間、連続走行距離などが該当する。ドライバの情報に基づいて定まる状態量としては、前述の覚醒度合いの他、疲労度や、脇見運転の可能性などが想定される。 In addition to the driver's biological information, the driver information corresponds to the line-of-sight direction, continuous operation time, continuous travel distance, and the like. As the state quantity determined based on the information of the driver, in addition to the above-mentioned degree of arousal, the degree of fatigue, the possibility of driving aside, etc. are assumed.
 以上をまとめると、本開示の1つの態様によれば、車両用報知システムは、所定の状態量についての情報を、ドライバの視覚、聴覚、及び触覚の少なくとも何れか1つを介してドライバに報知する報知装置を複数備え、複数の報知装置のそれぞれは、ドライバに情報を訴えかける強さを表す報知レベルを、その報知装置が対象とする状態量から決定し、その決定した報知レベルに応じて報知態様を段階的に変化させて報知を実施する。各報知レベルにおける報知態様は、報知レベル毎の報知態様を定める所定の報知規則に基づいて決定される。報知規則は、各報知装置が採用する報知レベルの段階数と、ドライバの視覚に訴えかける報知の態様(以下、視覚報知態様)を変化させる要素である視覚要素のうちの少なくとも1種類の視覚要素の報知レベル毎の値と、ドライバの聴覚に訴えかける報知の態様(以下、聴覚報知態様)を変化させる要素である聴覚要素のうちの少なくとも1種類の聴覚要素の報知レベル毎の値と、ドライバの触覚に訴えかける報知の態様(以下、触覚報知態様)を変化させる要素である触覚要素のうちの少なくとも1種類の触覚要素の報知レベル毎の値と、を定めるものであって、視覚要素、聴覚要素、及び触覚要素はいずれも、報知レベルが上昇するにつれて、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定されている。 In summary, according to one aspect of the present disclosure, the vehicle notification system notifies the driver of information on the predetermined state quantity via at least one of the driver's visual sense, auditory sense, and tactile sense. A plurality of notification devices are provided, and each of the plurality of notification devices determines a notification level representing the strength of appealing information to the driver from a state quantity targeted by the notification device, and according to the determined notification level Notification is performed by changing the notification mode stepwise. The notification mode at each notification level is determined based on a predetermined notification rule that defines a notification mode for each notification level. The notification rule includes at least one type of visual element among visual elements that are elements that change the number of notification level steps adopted by each notification device and a notification mode appealing to the driver's vision (hereinafter, visual notification mode). A value for each notification level, a value for each notification level of at least one type of auditory element among the auditory elements that are elements that change the mode of notification appealing to the driver's hearing (hereinafter referred to as auditory notification mode), and the driver A value for each notification level of at least one type of tactile element of tactile elements that are elements for changing a notification mode (hereinafter referred to as a tactile notification mode) to appeal to the tactile sense of the visual element, Each of the auditory element and the tactile element is set so that the strength with which the element appeals to the driver's sensory organ increases as the notification level increases.
 車両用報知システムが備える各報知装置は、共通の報知規則に則った報知態様で報知を実施する。この報知規則は、視覚要素、聴覚要素、及び触覚要素のそれぞれの、報知レベル毎の値を定めるものである。この報知規則によって、報知態様を変化させる種々の要素のうち、報知規則で規定されている要素の設定値は、報知レベルに応じて一意に決定される。 Each notification device included in the vehicle notification system performs notification in a notification mode according to a common notification rule. This notification rule defines values for each notification level of visual elements, auditory elements, and tactile elements. Of the various elements that change the notification mode, the set value of the element defined by the notification rule is uniquely determined according to the notification level.
 例えば、報知規則で規定されている共通の要素(例えば色)を含む報知を実施する、ある報知装置と、他の報知装置とが、同じ報知レベルでの報知を実施する場合、それぞれの視覚報知態様における当該要素は同じ態様(すなわち同じ色)となる。また、当該要素は、各報知装置において報知規則に則って同じパターンで変化されていく。 For example, when a notification device that performs notification including a common element (for example, color) defined in the notification rule and another notification device perform notification at the same notification level, the respective visual notifications The elements in the aspect are the same aspect (ie, the same color). In addition, the element is changed in the same pattern in accordance with the notification rule in each notification device.
 車両用報知システムによれば、各報知装置による報知態様の報知レベルに応じた変化のパターンに共通性を備えさせることができる。また、報知規則で規定されている視覚要素の態様は、報知装置が異なっても報知レベルに応じて一意に定まるため、ドライバは、その視覚要素の態様から、報知レベルを認識することができる。 According to the vehicle notification system, commonality can be provided in the pattern of change according to the notification level of the notification mode of each notification device. In addition, since the visual element mode defined by the notification rule is uniquely determined according to the notification level even if the notification device is different, the driver can recognize the notification level from the visual element mode.
 報知規則は、報知レベルが上昇するにつれて、その視覚要素がドライバの感覚器官(ここでは視覚)に訴えかける強さ(例えば色や大きさ、明るさ等)が強くなるように設定されている。したがって、ドライバによる報知レベルの認識性を向上させることができる。 The notification rule is set so that the strength (for example, color, size, brightness, etc.) that the visual element appeals to the driver's sensory organ (here, vision) increases as the notification level increases. Therefore, the recognizability of the notification level by the driver can be improved.
 視覚要素や、聴覚要素、触覚要素の報知レベル毎の設定値は、報知レベルが高いほど、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定される。すなわち、報知レベルは、報知しようとしている情報をドライバに訴えかける強さを表すものである。 The set value for each notification level of the visual element, the auditory element, and the tactile element is set such that the higher the notification level is, the stronger the element appeals to the driver's sensory organ. That is, the notification level represents the strength of appealing the information to be notified to the driver.
 ここで、報知の対象とする情報を、より強くドライバに対して訴えかける場合とは、その情報をドライバに報知する必要性の高い状態であることを意味する。車両において、ある情報をドライバに報知する必要性が高まっている状況とは、緊急性や危険度合いが高まっている状況を指す。 Here, the case where the information to be notified is appealed to the driver more strongly means that it is highly necessary to notify the driver of the information. In a vehicle, the situation in which the necessity of notifying a driver of certain information is increasing.
 すなわち、報知レベルの高さとは緊急性や危険度合いの高さに相当するものであり、ドライバが報知レベルを認識しやすいということは、報知されている情報の緊急性や危険度合いの高さをドライバが認識しやすいことを意味する。 In other words, the high notification level corresponds to the high degree of urgency and risk, and the fact that the driver can easily recognize the notification level means that the urgency and risk level of the information being notified is high. It means that the driver can easily recognize it.
 車両用報知システムによれば、それぞれ異なる対象についての情報を段階的に報知する報知装置を複数有する車両用報知システムにおいて、ある報知装置による報知がドライバに対して伝えようとしている緊急性や深刻さを認識しやすくすることができる。 According to a vehicle notification system, in a vehicle notification system having a plurality of notification devices that notify information about different objects in stages, the urgency and seriousness that notification by a certain notification device is trying to convey to the driver Can be easily recognized.
 本開示の別の態様によれば、報知制御装置は、所定の状態量についての情報を報知するように要求する装置であって、その状態量に基づいて報知しようとしている情報をドライバに訴えかける強さを表す報知レベルを判定し、その報知レベルに応じた報知態様で報知するように要求する報知装置と、ドライバに情報を報知するための報知媒体として、ドライバの視覚を介してドライバに情報を報知するために用いられる視覚報知媒体と、ドライバの聴覚を介してドライバに情報を報知するために用いられる聴覚報知媒体と、ドライバの触覚を介してドライバに情報を報知するために用いられる触覚報知媒体と、をそれぞれ少なくとも1つずつ備える車両用報知システムで用いられ、報知媒体及び報知装置の動作を制御する報知制御装置であって、報知装置からの要求を受け付ける報知要求受付部と、報知要求受付部が受け付けた要求に基づいて報知媒体を動作させることで当該報知装置が要求する態様の報知を実現する報知実施部と、報知装置が要求する報知態様が、報知レベル毎の報知態様を定める報知規則に則った報知態様となるように指示する報知装置管理部と、を備え、報知規則は、報知装置が採用する報知レベルの段階数と、視覚報知媒体を用いた報知の態様を変化させる要素である視覚要素のうちの少なくとも1種類の視覚要素の報知レベル毎の値と、聴覚報知媒体を用いた報知の態様を変化させる要素である聴覚要素のうちの少なくとも1種類の聴覚要素の報知レベル毎の値と、触覚報知媒体を用いた報知の態様を変化させる要素である触覚要素のうちの少なくとも1種類の触覚要素の報知レベル毎の値と、を定めるものであって、視覚要素、聴覚要素、及び触覚要素はいずれも、報知レベルが上昇するにつれて、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定されていることを特徴とする。 According to another aspect of the present disclosure, the notification control device is a device that requests to notify information about a predetermined state quantity, and appeals to the driver information to be notified based on the state quantity. As a notification medium for determining a notification level representing strength and requesting notification in a notification mode corresponding to the notification level, and a notification medium for notifying the driver of information, information is provided to the driver through the visual sense of the driver. Visual notification medium used to notify the driver, auditory notification medium used to notify the driver of information via the driver's hearing, and tactile sense used to notify the driver of information via the driver's sense of touch A notification control device that is used in a vehicle notification system that includes at least one notification medium and that controls operations of the notification medium and the notification device. A notification request receiving unit that receives a request from the notification device, a notification execution unit that realizes notification of the mode requested by the notification device by operating the notification medium based on the request received by the notification request reception unit; And a notification device management unit that instructs the notification mode requested by the notification device to be a notification mode according to a notification rule that defines a notification mode for each notification level, and the notification rule is a notification level adopted by the notification device. The number of stages, the value for each notification level of at least one visual element among the visual elements that are elements for changing the notification mode using the visual notification medium, and the notification mode using the auditory notification medium are changed. And at least one of the tactile elements that are the elements that change the notification mode using the tactile notification medium and the value for each of the notification levels of at least one of the auditory elements that are the elements to be performed. A value for each notification level of one kind of tactile element is determined, and each of the visual element, the auditory element, and the tactile element appeals to the driver's sensory organ as the notification level increases. The strength is set so as to increase.
 本開示のさらに別の態様によれば、報知装置は、ドライバに情報を報知するための報知媒体として、ドライバの視覚を介してドライバに情報を報知するために用いられる視覚報知媒体と、ドライバの聴覚を介してドライバに情報を報知するために用いられる聴覚報知媒体と、ドライバの触覚を介してドライバに情報を報知するために用いられる触覚報知媒体と、報知媒体の動作を制御し、ドライバに所定の態様で情報を報知する報知制御装置と、を備える車両用報知システムで用いられ、ドライバに対して所定の状態量についての情報を報知制御装置に報知させる報知装置であって、当該報知装置は、報知しようとしている情報をドライバに訴えかける強さの度合いである報知レベルを状態量に基づいて判定する報知レベル判定部と、報知媒体のうち、情報の報知に利用する報知媒体を選択する報知媒体選択部と、報知媒体選択部が選択した報知媒体を用いて、報知レベル毎の報知態様を定める所定の報知規則と、報知レベル判定部が判定した報知レベルと、に基づいて定まる報知態様で報知を実施するように、報知制御装置に要求する報知処理部と、を備え、報知規則は、当該報知装置が採用する報知レベルの段階数と、視覚報知媒体を用いた報知の態様を変化させる要素である視覚要素のうちの少なくとも1つの視覚要素の報知レベル毎の値と、聴覚報知媒体を用いた報知の態様を変化させる要素である聴覚要素のうちの少なくとも1つの聴覚要素の報知レベル毎の値と、触覚報知媒体を用いた報知の態様を変化させる要素である触覚要素のうちの少なくとも1つの触覚要素の報知レベル毎の値と、を定めるものであって、視覚要素、聴覚要素、及び触覚要素はいずれも、報知レベルが上昇するにつれて、その要素がドライバの感覚器官に訴えかける強さが強くなるように設定されていることを特徴とする。 According to still another aspect of the present disclosure, the notification device includes a visual notification medium used for notifying the driver of information via a driver's vision as a notification medium for notifying the driver of information, An auditory notification medium used for notifying the driver of information via hearing, a tactile notification medium used for notifying the driver of information via the driver's tactile sense, and controlling the operation of the notification medium. A notification device that is used in a vehicle notification system including a notification control device that notifies information in a predetermined mode, and that informs the notification control device of information about a predetermined state quantity to a driver, the notification device A notification level determination unit that determines a notification level, which is a degree of strength that appeals to the driver for information to be notified, based on the state quantity; A notification medium selection unit that selects a notification medium to be used for notification of information of the body, a predetermined notification rule that determines a notification mode for each notification level using the notification medium selected by the notification medium selection unit, and a notification level A notification processing unit that requests the notification control device to perform notification in a notification mode determined based on the notification level determined by the determination unit, and the notification rule is a notification level of the notification level adopted by the notification device. The number of stages, the value for each notification level of at least one visual element among the visual elements that are elements that change the notification mode using the visual notification medium, and the element that changes the notification mode using the auditory notification medium At least one tactile element among tactile elements that are elements that change the value of the notification level of at least one of the auditory elements and the notification mode using the tactile notification medium The visual element, the auditory element, and the tactile element all have a strength to appeal to the driver's sensory organs as the notification level increases. It is characterized by being set to.
 尚、表示装置51~56は、報知媒体、視覚報知媒体の一例である。加飾照明57は、報知媒体、視覚報知媒体の一例である。音声出力装置61~63は、報知媒体、聴覚報知媒体の一例である。触覚生成装置71~76は、報知媒体、触覚報知媒体の一例である。 The display devices 51 to 56 are examples of a notification medium and a visual notification medium. The decorative lighting 57 is an example of a notification medium or a visual notification medium. The audio output devices 61 to 63 are examples of notification media and auditory notification media. The tactile sensation generating devices 71 to 76 are examples of a notification medium and a tactile notification medium.
 以上、車両用報知システム、報知制御装置、及び報知装置の実施形態、構成、態様を例示したが、車両用報知システム、報知制御装置、及び報知装置に係わる実施形態、構成、態様は、上述した各実施形態、各構成、各態様に限定されるものではない。例えば、異なる実施形態、構成、態様にそれぞれ開示された技術的部を適宜組み合わせて得られる実施形態、構成、態様についても車両用報知システム、報知制御装置、及び報知装置に係わる実施形態、構成、態様の範囲に含まれる。 The embodiment, configuration, and aspect of the vehicle notification system, the notification control device, and the notification device have been described above, but the embodiment, configuration, and aspect related to the vehicle notification system, the notification control device, and the notification device have been described above. It is not limited to each embodiment, each structure, and each aspect. For example, embodiments, configurations, and aspects related to a vehicle notification system, a notification control device, and a notification device are also obtained for embodiments, configurations, and aspects obtained by appropriately combining technical units disclosed in different embodiments, configurations, and aspects. Included within the scope of embodiments.

Claims (9)

  1.  所定の状態量についての情報を、ドライバの視覚、聴覚、及び触覚の少なくとも何れか1つを介して前記ドライバに報知する報知装置(20A、20B、20C、20D)を複数備え、
     複数の前記報知装置のそれぞれは、
     前記ドライバに情報を訴えかける強さを表す報知レベルを、当該報知装置が対象とする状態量から決定し、当該決定した前記報知レベルに応じて報知態様を段階的に変化させて報知を実施するものであって、
     各報知レベルにおける報知態様は、前記報知レベル毎の報知態様を定める所定の報知規則に基づいて決定され、
     前記報知規則は、
     各前記報知装置が採用する報知レベルの段階数と、
     前記ドライバの視覚に訴えかける報知の態様である視覚報知態様を変化させる要素である視覚要素のうちの少なくとも1種類の前記視覚要素の前記報知レベル毎の値と、
     前記ドライバの聴覚に訴えかける報知の態様である聴覚報知態様を変化させる要素である聴覚要素のうちの少なくとも1種類の前記聴覚要素の前記報知レベル毎の値と、
     前記ドライバの触覚に訴えかける報知の態様である触覚報知態様を変化させる要素である触覚要素のうちの少なくとも1種類の前記触覚要素の前記報知レベル毎の値と、を定め、
     前記視覚要素、前記聴覚要素、及び前記触覚要素は、前記報知レベルが上昇するにつれて、当該要素が前記ドライバの感覚器官に訴えかける強さが強くなるように設定されている車両用報知システム。
    A plurality of notification devices (20A, 20B, 20C, 20D) for notifying the driver of information about the predetermined state quantity via at least one of the visual, auditory, and tactile senses of the driver;
    Each of the plurality of notification devices
    A notification level representing the strength of appealing information to the driver is determined from a state quantity targeted by the notification device, and notification is performed by gradually changing the notification mode according to the determined notification level. And
    The notification mode at each notification level is determined based on a predetermined notification rule that determines the notification mode for each notification level,
    The notification rule is:
    The number of notification level steps employed by each of the notification devices;
    A value for each notification level of at least one of the visual elements of the visual elements that are elements that change a visual notification mode that is a mode of notification that appeals to the driver's vision;
    A value for each notification level of at least one of the auditory elements among the auditory elements, which is an element that changes an auditory notification mode that is a notification mode appealing to the hearing of the driver;
    A value for each of the notification levels of at least one of the tactile elements of the tactile elements that are elements that change a tactile notification mode that is a notification mode that appeals to the tactile sense of the driver;
    The informing system for vehicles, wherein the visual element, the auditory element, and the tactile element are set such that as the informing level increases, the strength of the element appealing to the driver's sensory organ increases.
  2.  請求項1において、
     前記報知規則は、
     前記視覚報知態様を変化させる複数の前記視覚要素のそれぞれに対する前記報知レベル毎の値と、
     前記聴覚報知態様を変化させる複数の前記聴覚要素のそれぞれに対する前記報知レベル毎の値と、
     前記触覚報知態様を変化させる複数の前記触覚要素のそれぞれに対する前記報知レベル毎の値と、を定める車両用報知システム。
    In claim 1,
    The notification rule is:
    A value for each of the notification levels for each of the plurality of visual elements that change the visual notification mode;
    A value for each notification level for each of the plurality of auditory elements that changes the auditory notification mode;
    A vehicle notification system that determines a value for each notification level for each of the plurality of tactile elements that change the tactile notification mode.
  3.  請求項1又は2において、
     前記車両用報知システムは、前記ドライバの視覚を介して前記ドライバに情報を報知するために用いられる視覚報知媒体(51~57)と、前記ドライバの聴覚を介して前記ドライバに情報を報知するために用いられる聴覚報知媒体(61~63)と、前記ドライバの触覚を介して前記ドライバに情報を報知するために用いられる触覚報知媒体(71~76)と、を前記ドライバに情報を報知するための報知媒体として、それぞれ少なくとも1つずつ備え、
     前記報知規則は、
     前記視覚要素として少なくとも前記視覚報知媒体から出力される光の波長を採用し、前記波長の値を前記報知レベルが高くなるほど長くなるように定め、
     前記聴覚要素として少なくとも前記聴覚報知媒体から出力される音の周波数を採用し、前記周波数の値を前記報知レベルが高くなるほど高くなるように定め、
     前記触覚要素として少なくとも前記触覚報知媒体を振動させる振動周波数を採用し、前記振動周波数の値を前記報知レベルが高くなるほど高くなるように定めている車両用報知システム。
    In claim 1 or 2,
    The vehicle notification system uses a visual notification medium (51 to 57) used to notify the driver of information via the driver's vision, and notifies the driver of information via the driver's hearing. In order to notify the driver of the information, the auditory information medium (61 to 63) used for the communication and the tactile information medium (71 to 76) used to notify the driver of information via the driver's tactile sense As a notification medium, at least one each is provided,
    The notification rule is:
    Adopting at least the wavelength of light output from the visual notification medium as the visual element, and determining the wavelength value to be longer as the notification level is higher,
    Adopting at least the frequency of the sound output from the auditory alarm medium as the auditory element, and determining the frequency value to be higher as the alarm level is higher,
    A vehicle notification system that employs at least a vibration frequency that vibrates the tactile notification medium as the tactile element, and determines the value of the vibration frequency to be higher as the notification level is higher.
  4.  請求項3において、
     前記報知規則は定める前記視覚要素の前記報知レベル毎の値、前記聴覚要素の前記報知レベル毎の値、及び前記触覚要素の前記報知レベル毎の値は、前記報知レベルを変数とする1次関数によって表される車両用報知システム。
    In claim 3,
    The notification rule defines a value for each notification level of the visual element, a value for the notification level of the auditory element, and a value for the notification level of the tactile element as a linear function with the notification level as a variable. A vehicle notification system represented by:
  5.  請求項3又は4において、
     前記車両用報知システムは、前記報知媒体の動作を制御する報知制御装置(30)を備え、
     前記報知装置は、
     当該報知装置が対象とする状態量に基づいて前記報知レベルを判定する報知レベル判定部(F22)と、
     前記報知媒体のうち、報知に利用する前記報知媒体を選択する報知媒体選択部(F23)と、
     前記報知媒体選択部で選択した前記報知媒体を用い、前記報知レベル判定部が判定した前記報知レベルと前記報知規則とに基づいて定まる報知態様で報知を実施するように、前記報知制御装置に要求する報知処理部(F24)と、を備え、
     前記報知制御装置は、
     前記報知処理部からの要求を受け付ける報知要求受付部(F33)と、
     前記報知要求受付部が受け付けた要求に基づいて前記報知媒体を動作させることで当該報知装置が要求する態様の報知を実現する報知実施部(F34)と、を備える車両用報知システム。
    In claim 3 or 4,
    The vehicle notification system includes a notification control device (30) for controlling the operation of the notification medium,
    The notification device
    A notification level determination unit (F22) that determines the notification level based on a state quantity targeted by the notification device;
    Of the notification media, a notification medium selection unit (F23) that selects the notification medium used for notification;
    Using the notification medium selected by the notification medium selection unit, the notification control device is requested to perform notification in a notification mode determined based on the notification level determined by the notification level determination unit and the notification rule. A notification processing unit (F24) for performing,
    The notification control device includes:
    A notification request receiving unit (F33) for receiving a request from the notification processing unit;
    A vehicle notification system comprising: a notification execution unit (F34) that realizes notification in a mode requested by the notification device by operating the notification medium based on a request received by the notification request reception unit.
  6.  請求項5において、
     前記報知制御装置は、前記車両用報知システムが備える前記報知装置を管理するとともに、各前記報知装置が要求する報知態様が、前記報知規則に則った報知態様となるように指示する報知装置管理部(F32)を備える車両用報知システム。
    In claim 5,
    The notification control device manages the notification device included in the vehicle notification system, and instructs a notification mode requested by each notification device to be a notification mode according to the notification rule. A vehicle notification system comprising (F32).
  7.  請求項6において、
     前記報知制御装置は、
     前記車両用報知システムが備える前記報知媒体を管理する報知媒体管理部(F31)を備え、
     前記報知装置管理部は、前記報知媒体管理部が管理している前記報知媒体の情報を前記報知装置に提供する車両用報知システム。
    In claim 6,
    The notification control device includes:
    A notification medium management unit (F31) for managing the notification medium included in the vehicle notification system;
    The notification device management unit provides the notification device with information of the notification medium managed by the notification medium management unit.
  8.  所定の状態量についての情報を報知するように要求する装置であって、当該状態量に基づいて報知しようとしている情報をドライバに訴えかける強さを表す報知レベルを判定し、当該報知レベルに応じた報知態様で報知するように要求する報知装置(20A、20B,20C、20D)と、
     前記ドライバに情報を報知するための報知媒体として、前記ドライバの視覚を介して前記ドライバに情報を報知するために用いられる視覚報知媒体(51~57)と、前記ドライバの聴覚を介して前記ドライバに情報を報知するために用いられる聴覚報知媒体(61~63)と、前記ドライバの触覚を介して前記ドライバに情報を報知するために用いられる触覚報知媒体(71~73)と、をそれぞれ少なくとも1つずつ備える車両用報知システム(100)で用いられ、前記報知媒体及び前記報知装置の動作を制御する報知制御装置であって、
     前記報知装置からの要求を受け付ける報知要求受付部(F33)と、
     前記報知要求受付部が受け付けた要求に基づいて前記報知媒体を動作させることで当該報知装置が要求する態様の報知を実現する報知実施部(F34)と、
     前記報知装置が要求する報知態様が、前記報知レベル毎の報知態様を定める報知規則に則った報知態様となるように指示する報知装置管理部(F32)と、を備え、
     前記報知規則は、
     前記報知装置が採用する前記報知レベルの段階数と、
     前記視覚報知媒体を用いた報知の態様を変化させる要素である視覚要素のうちの少なくとも1種類の視覚要素の前記報知レベル毎の値と、
     前記聴覚報知媒体を用いた報知の態様を変化させる要素である聴覚要素のうちの少なくとも1種類の聴覚要素の前記報知レベル毎の値と、
     前記触覚報知媒体を用いた報知の態様を変化させる要素である触覚要素のうちの少なくとも1種類の触覚要素の前記報知レベル毎の値と、を定め、
     前記視覚要素、前記聴覚要素、及び前記触覚要素はいずれも、前記報知レベルが上昇するにつれて、当該要素が前記ドライバの感覚器官に訴えかける強さが強くなるように設定されている報知制御装置。
    A device that requests to notify information about a predetermined state quantity, and determines a notification level representing the strength of appealing to the driver for information to be notified based on the state quantity, and according to the notification level. A notification device (20A, 20B, 20C, 20D) that requests to be notified in the notification mode;
    As a notification medium for notifying the driver of information, a visual notification medium (51-57) used for notifying the driver of information via the driver's vision, and the driver via the driver's hearing At least a hearing notification medium (61 to 63) used to notify information to the driver and a tactile notification medium (71 to 73) used to notify the driver of information via the driver's tactile sense, respectively. A notification control device for controlling the operation of the notification medium and the notification device, used in the vehicle notification system (100) provided one by one,
    A notification request receiving unit (F33) for receiving a request from the notification device;
    A notification execution unit (F34) that realizes notification in a mode requested by the notification device by operating the notification medium based on the request received by the notification request reception unit;
    A notification device management unit (F32) for instructing the notification mode requested by the notification device to be a notification mode in accordance with a notification rule that defines a notification mode for each notification level;
    The notification rule is:
    The number of steps of the notification level adopted by the notification device;
    A value for each notification level of at least one type of visual element among visual elements that is an element that changes a mode of notification using the visual notification medium;
    A value for each notification level of at least one type of auditory element among auditory elements, which is an element that changes the mode of notification using the auditory notification medium;
    A value for each notification level of at least one type of tactile element among tactile elements that are elements that change the mode of notification using the tactile notification medium;
    The notification control device in which each of the visual element, the auditory element, and the tactile element is set so that the strength with which the element appeals to the sensory organ of the driver increases as the notification level increases.
  9.  ドライバに情報を報知するための報知媒体として、前記ドライバの視覚を介して前記ドライバに情報を報知するために用いられる視覚報知媒体(51~57)と、前記ドライバの聴覚を介して前記ドライバに情報を報知するために用いられる聴覚報知媒体(61~63)と、前記ドライバの触覚を介して前記ドライバに情報を報知するために用いられる触覚報知媒体(71~73)と、前記報知媒体の動作を制御し、前記ドライバに所定の態様で情報を報知する報知制御装置(30)と、を備える車両用報知システム(100)で用いられ、
     前記ドライバに対して所定の状態量についての情報を前記報知制御装置に報知させる報知装置であって、
     当該報知装置は、
     報知しようとしている情報を前記ドライバに訴えかける強さの度合いである報知レベルを前記状態量に基づいて判定する報知レベル判定部(F22)と、
     前記報知媒体のうち、前記情報の報知に利用する前記報知媒体を選択する報知媒体選択部(F23)と、
     前記報知媒体選択部が選択した前記報知媒体を用いて、前記報知レベル毎の報知態様を定める所定の報知規則と、前記報知レベル判定部が判定した前記報知レベルと、に基づいて定まる報知態様で報知を実施するように、前記報知制御装置に要求する報知処理部(F24)と、を備え、
     前記報知規則は、
     当該報知装置が採用する前記報知レベルの段階数と、
     前記視覚報知媒体を用いた報知の態様を変化させる要素である視覚要素のうちの少なくとも1つの視覚要素の前記報知レベル毎の値と、
     前記聴覚報知媒体を用いた報知の態様を変化させる要素である聴覚要素のうちの少なくとも1つの聴覚要素の前記報知レベル毎の値と、
     前記触覚報知媒体を用いた報知の態様を変化させる要素である触覚要素のうちの少なくとも1つの触覚要素の前記報知レベル毎の値と、を定めるものであって、
     前記視覚要素、前記聴覚要素、及び前記触覚要素はいずれも、前記報知レベルが上昇するにつれて、当該要素が前記ドライバの感覚器官に訴えかける強さが強くなるように設定されている報知装置。
    As a notification medium for notifying the driver of information, a visual notification medium (51 to 57) used for notifying the driver of information via the driver's vision, and to the driver via the driver's sense of hearing Auditory notification media (61 to 63) used to notify information, tactile notification media (71 to 73) used to notify the driver of information via the driver's sense of touch, and the notification media Used in a vehicle notification system (100) comprising: a notification control device (30) that controls operation and notifies the driver of information in a predetermined manner;
    A notification device that causes the notification control device to notify the driver of information about a predetermined state quantity,
    The notification device
    A notification level determination unit (F22) that determines a notification level, which is a degree of strength for appealing to the driver for information to be notified, based on the state quantity;
    Among the notification media, a notification medium selection unit (F23) that selects the notification medium used for notification of the information;
    A notification mode determined based on a predetermined notification rule for determining a notification mode for each notification level and the notification level determined by the notification level determination unit using the notification medium selected by the notification medium selection unit. A notification processing unit (F24) that requests the notification control device to perform notification,
    The notification rule is:
    The number of steps of the notification level adopted by the notification device;
    A value for each notification level of at least one visual element of visual elements that is an element that changes a mode of notification using the visual notification medium;
    A value for each notification level of at least one auditory element among auditory elements that is an element that changes a mode of notification using the auditory notification medium;
    A value for each notification level of at least one tactile element among tactile elements that are elements that change a notification mode using the tactile notification medium;
    The notification device in which the visual element, the auditory element, and the tactile element are all set so that the strength with which the element appeals to the sensory organ of the driver increases as the notification level increases.
PCT/JP2015/003123 2014-07-24 2015-06-23 Notification system for vehicle, notification control device, and notification device WO2016013153A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2014151056A JP2016024778A (en) 2014-07-24 2014-07-24 Vehicle notification system, notification controller, and notification device
JP2014-151056 2014-07-24

Publications (1)

Publication Number Publication Date
WO2016013153A1 true WO2016013153A1 (en) 2016-01-28

Family

ID=55162702

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2015/003123 WO2016013153A1 (en) 2014-07-24 2015-06-23 Notification system for vehicle, notification control device, and notification device

Country Status (2)

Country Link
JP (1) JP2016024778A (en)
WO (1) WO2016013153A1 (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017187759A1 (en) * 2016-04-27 2017-11-02 株式会社デンソー Assistance system, portable terminal, and on-board device
JP2017200812A (en) * 2016-04-27 2017-11-09 株式会社デンソー Support system, portable terminal, and on-vehicle device
JP2019106109A (en) * 2017-12-14 2019-06-27 クラリオン株式会社 Driving support device and driving support method
CN110015247A (en) * 2017-12-28 2019-07-16 丰田自动车株式会社 Display control unit and display control method
CN113173137A (en) * 2020-01-24 2021-07-27 丰田自动车株式会社 Vehicle informing device
WO2022131367A1 (en) * 2020-12-18 2022-06-23 株式会社村上開明堂 Vehicle cabin interior monitoring system
US11565713B2 (en) * 2017-06-02 2023-01-31 Honda Motor Co., Ltd. Vehicle control system, vehicle control method, and vehicle control program

Families Citing this family (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017161423A (en) * 2016-03-10 2017-09-14 株式会社デンソー Car onboard information presentation device, and information presentation method
JP2017215962A (en) * 2016-05-31 2017-12-07 株式会社Soken Operation assisting device, operation assisting method
WO2017208694A1 (en) * 2016-06-02 2017-12-07 株式会社デンソー Driving assistance apparatus
JP6489446B2 (en) * 2016-11-04 2019-03-27 マツダ株式会社 Vehicle control device
JP6489447B2 (en) * 2016-11-04 2019-03-27 マツダ株式会社 Vehicle control device
JP2018156462A (en) * 2017-03-17 2018-10-04 東芝メモリ株式会社 Mobile object and driving support system including the same
JP2018156539A (en) * 2017-03-21 2018-10-04 三菱自動車工業株式会社 Warning device
JP2019073078A (en) * 2017-10-12 2019-05-16 矢崎総業株式会社 Automatic driving time information transmission method and on-vehicle information presentation device
EP3474253B1 (en) * 2017-10-20 2024-04-10 Honda Research Institute Europe GmbH Gaze-guided communication for assistance in mobility
JP7158839B2 (en) * 2017-10-24 2022-10-24 フォルシアクラリオン・エレクトロニクス株式会社 Driving support device and driving support method
JP2019192090A (en) * 2018-04-27 2019-10-31 トヨタ自動車株式会社 Support system
JP6853807B2 (en) * 2018-10-18 2021-03-31 株式会社東海理化電機製作所 Awakening device, control device, and program
WO2020110781A1 (en) * 2018-11-30 2020-06-04 パナソニックIpマネジメント株式会社 State control device, state control system, and state control method
DE112019007095T5 (en) 2019-03-28 2022-01-05 Honda Motor Co., Ltd. SADDLE SEAT VEHICLE
KR102291720B1 (en) * 2019-11-13 2021-08-19 충남대학교산학협력단 Driving auxiliary device
JP2022095228A (en) * 2020-12-16 2022-06-28 パナソニックIpマネジメント株式会社 Display control apparatus, display control system, and display control method

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004094367A (en) * 2002-08-29 2004-03-25 Toyota Motor Corp Safety unit for vehicle
US20040145494A1 (en) * 2003-01-08 2004-07-29 Scholz John Arthur Microwave vehicle-to-vehicle warning system
JP2005056372A (en) * 2003-03-26 2005-03-03 Fujitsu Ten Ltd Vehicle control apparatus, vehicle control method, and vehicle control program
JP2010198100A (en) * 2009-02-23 2010-09-09 Honda Motor Co Ltd Support device for recognizing approach of others for vehicle
JP2011169739A (en) * 2010-02-18 2011-09-01 Nec Corp Navigation system and navigation method

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004094367A (en) * 2002-08-29 2004-03-25 Toyota Motor Corp Safety unit for vehicle
US20040145494A1 (en) * 2003-01-08 2004-07-29 Scholz John Arthur Microwave vehicle-to-vehicle warning system
JP2005056372A (en) * 2003-03-26 2005-03-03 Fujitsu Ten Ltd Vehicle control apparatus, vehicle control method, and vehicle control program
JP2010198100A (en) * 2009-02-23 2010-09-09 Honda Motor Co Ltd Support device for recognizing approach of others for vehicle
JP2011169739A (en) * 2010-02-18 2011-09-01 Nec Corp Navigation system and navigation method

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017187759A1 (en) * 2016-04-27 2017-11-02 株式会社デンソー Assistance system, portable terminal, and on-board device
JP2017200812A (en) * 2016-04-27 2017-11-09 株式会社デンソー Support system, portable terminal, and on-vehicle device
US11565713B2 (en) * 2017-06-02 2023-01-31 Honda Motor Co., Ltd. Vehicle control system, vehicle control method, and vehicle control program
JP2019106109A (en) * 2017-12-14 2019-06-27 クラリオン株式会社 Driving support device and driving support method
JP7042604B2 (en) 2017-12-14 2022-03-28 フォルシアクラリオン・エレクトロニクス株式会社 Driving support device and driving support method
CN110015247A (en) * 2017-12-28 2019-07-16 丰田自动车株式会社 Display control unit and display control method
CN113173137A (en) * 2020-01-24 2021-07-27 丰田自动车株式会社 Vehicle informing device
CN113173137B (en) * 2020-01-24 2022-11-18 丰田自动车株式会社 Vehicle informing device
WO2022131367A1 (en) * 2020-12-18 2022-06-23 株式会社村上開明堂 Vehicle cabin interior monitoring system

Also Published As

Publication number Publication date
JP2016024778A (en) 2016-02-08

Similar Documents

Publication Publication Date Title
WO2016013153A1 (en) Notification system for vehicle, notification control device, and notification device
JP6319349B2 (en) Information presentation device
JP6342856B2 (en) Vehicle control device
US11062598B2 (en) Method, mobile user device, and computer program for producing visual information for at least one occupant of a vehicle
KR20190001145A (en) Interface system for vehicle
JP6172106B2 (en) Vehicle information presentation device
US9994235B2 (en) Human-machine interface device and method for sensory augmentation in a vehicle environment
JP6848927B2 (en) Information providing device for autonomous vehicles
JP2007196854A (en) Driving support system and driving support method
JP2018049601A (en) Vehicle provided with driver seat and at least one passenger seat, and method of providing information about driving state being currently experienced by alternate driver and/or at least one passenger
JP6471575B2 (en) Vehicle display control device and vehicle display unit
US20220314982A1 (en) Control device
KR101934294B1 (en) Display device and vehicle comprising the same
WO2016157892A1 (en) Information presentation apparatus
JP2019081450A (en) Display device, display control method, and program
JP2018120352A (en) Dependency estimation device
JP2017039461A (en) Vehicle display and control method of the same
WO2016157891A1 (en) Information presentation apparatus
JP7372381B2 (en) Traffic safety support system
JP7372382B2 (en) Traffic safety support system
JP7422177B2 (en) Traffic safety support system
JP7469358B2 (en) Traffic Safety Support System
JP7351114B2 (en) heads up display device
JP2023151648A (en) Traffic safety support system
JP2023151659A (en) Traffic safety support system

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 15825287

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 15825287

Country of ref document: EP

Kind code of ref document: A1