CN106020459B - Intelligent glasses, and control method and control system of intelligent glasses - Google Patents

Intelligent glasses, and control method and control system of intelligent glasses Download PDF

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CN106020459B
CN106020459B CN201610316237.XA CN201610316237A CN106020459B CN 106020459 B CN106020459 B CN 106020459B CN 201610316237 A CN201610316237 A CN 201610316237A CN 106020459 B CN106020459 B CN 106020459B
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human
computer interaction
preset
intelligent glasses
interaction interface
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CN106020459A (en
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张义荣
应宜伦
覃浩宇
王岩
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Shanghai Qinggan Intelligent Technology Co Ltd
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Shanghai Qinggan Intelligent Technology Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality

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Abstract

The invention provides intelligent glasses, and a control method and a control system of the intelligent glasses, wherein the control system of the intelligent glasses comprises: the first human-computer interaction module is used for displaying a first human-computer interaction interface corresponding to a human-computer interaction interface of the preset vehicle machine so as to interact with a system host of the preset vehicle machine to realize control over the preset vehicle machine; the second human-computer interaction module is used for displaying a second human-computer interaction interface corresponding to the preset function so as to realize the corresponding preset function; and the starting module is used for respectively starting the first human-computer interaction module and the second human-computer interaction module to operate when receiving the external starting signal and the internal starting signal. According to the invention, when the intelligent glasses are worn, the information of the whole preset vehicle machine (such as IPDA) system is displayed to the virtual image in front of the eyes of the user through the intelligent glasses, the intelligent glasses control the vehicle machine system, the original control system of the vehicle machine is recovered when the intelligent glasses are taken off, and the intelligent glasses are recovered to the state of common intelligent glasses.

Description

Intelligent glasses, and control method and control system of intelligent glasses
Technical Field
The invention relates to the technical field of intelligent control, in particular to the technical field of intelligent wearing equipment, and specifically relates to intelligent glasses, and a control method and a control system of the intelligent glasses.
Background
With the development of the automobile industry, in-automobile communication has become a trend, and people mainly carry out in-automobile autonomous communication in two modes of key pressing and voice control technology in the process of driving an automobile at present. Along with the popularization of automobile consumption, the requirement of people on the comfort level of automobile products during driving is higher and higher, vehicle-mounted entertainment electronic products are additionally arranged on the whole automobile system in a large scale, and the challenge of automobile driving safety is inevitably brought by the popularization of entertainment products. When a user uses a vehicle-mounted entertainment product, the common modes at home and abroad are basically key control, touch screen control and a small amount of voice control.
The intelligent glasses are also called as intelligent glasses, and refer to a general name of glasses which are provided with an independent operating system like an intelligent mobile phone, can be provided with programs provided by software service providers such as software and games by a user, can complete functions of adding schedules, map navigation, interacting with friends, taking photos and videos, developing video calls with friends and the like through voice or action control, and can realize wireless network access through a mobile communication network. Smart glasses will create a new consumer electronics market. The smart glasses have the functions of the smart phone, meanwhile, the killer mace meeting the requirements of portability and large-screen visual experience of consumers and the like is also provided, and as a substitute and an effective supplement of the future smart phone, the smart glasses are a revolutionary product in the consumer electronics field after a personal computer and the smart phone. At present, the intelligent type of the intelligent glasses is stronger, but the interactive application of the intelligent glasses and other equipment involves less. For example, when a person wearing the smart glasses drives a car, the person still needs to turn the head to drive the car machine when the car machine needs to be controlled to operate the human-computer interface of the car machine, so that inconvenience is brought to driving.
Disclosure of Invention
In view of the above drawbacks of the prior art, an object of the present invention is to provide smart glasses, a method and a system for operating the smart glasses, so as to solve the problem of inconvenient operations caused by the need of turning a head to operate a human-computer interface of a vehicle-mounted device when a person wearing the smart glasses needs to operate the vehicle-mounted device during driving.
To achieve the above and other related objects, the present invention provides a smart glasses manipulation system, including: the first human-computer interaction module is used for acquiring current driving information from a preset vehicle machine and realizing the system function of the preset vehicle machine after the intelligent glasses establish network communication with the preset vehicle machine, and simultaneously displaying a first human-computer interaction interface corresponding to the human-computer interaction interface of the preset vehicle machine in the intelligent glasses; the first human-computer interaction module interacts with a system host of the preset vehicle machine to realize control of the preset vehicle machine when receiving a first control signal for controlling the first human-computer interaction interface; the second human-computer interaction module is used for realizing a preset function, displaying a second human-computer interaction interface corresponding to the preset function in the intelligent glasses, and interacting with the host of the intelligent glasses to realize the corresponding preset function when receiving a second control signal for controlling the second human-computer interaction interface; the starting module is respectively connected with the first human-computer interaction module and the second human-computer interaction module and used for starting the first human-computer interaction module to operate when receiving an external starting signal and starting up according to the received external starting signal, and starting the second human-computer interaction module to operate when receiving an internal starting signal and starting up according to the received internal starting signal.
Preferably, the external start signal is generated by triggering a change-over switch installed on a vehicle corresponding to the preset vehicle machine and connected to the preset vehicle machine.
Preferably, the smart glasses and the preset vehicle machine establish network communication in a MiracastP2P, wifi AP and/or Bluetooth mode.
Preferably, the generation method of the first human-machine interaction interface is the same as that of the preset in-vehicle human-machine interaction interface, or the first human-machine interaction interface is generated by projecting the preset in-vehicle human-machine interaction interface.
Preferably, the first human-computer interaction module and the second human-computer interaction module are connected with a handheld electronic device through a wireless network.
Preferably, the first manipulation signal and the second manipulation signal include a voice manipulation signal, a touch screen manipulation signal and/or a gesture manipulation signal.
Preferably, the first control signal further comprises a control signal from a control device in the vehicle.
Preferably, the second human-computer interaction module comprises a navigation unit, a video-audio entertainment unit and an electronic equipment interconnection control unit for realizing the preset function.
Preferably, the first human-computer interaction module further includes a vehicle state display unit for displaying a vehicle state according to the current driving information obtained from the preset vehicle machine, in addition to the navigation unit, the audio-video entertainment unit and the electronic device interconnection control unit, so as to implement a system function of the preset vehicle machine.
Preferably, after the intelligent glasses establish network communication with the preset vehicle, the navigation information in the navigation unit and the audio-video entertainment information in the audio-video entertainment unit can be acquired from the preset vehicle.
Preferably, after the intelligent glasses establish network communication with the preset vehicle machine, the audio signals input into the intelligent glasses are directly collected by the preset vehicle machine from a power amplifier system of the vehicle; and inputting the video signal of the intelligent glasses, and acquiring the video signal through a video HUB connected between the preset vehicle machine and the vehicle host.
Preferably, the vehicle state display unit includes a driving state, warning information and a reverse image.
Preferably, the first human-computer interaction module transmits the video or the picture shot in the smart glasses to the preset vehicle machine.
In order to achieve the above object, the present invention further provides a pair of smart glasses, wherein the smart glasses comprise the smart glasses operating system as described above.
In order to achieve the above object, the present invention further provides a method for operating and controlling smart glasses, wherein the method for operating and controlling smart glasses comprises: after receiving an external starting signal and starting according to the external starting signal, enabling intelligent glasses to establish network communication with a preset vehicle machine, acquiring current driving information from the preset vehicle machine, displaying a first human-computer interaction interface corresponding to the human-computer interaction interface of the preset vehicle machine in the intelligent glasses, and interacting with a system host of the preset vehicle machine to realize control over the preset vehicle machine when receiving a first control signal for controlling the first human-computer interaction interface; and after receiving an external starting signal and starting according to the external starting signal, displaying a second human-computer interaction interface corresponding to the preset function in the intelligent glasses, and simultaneously realizing the corresponding preset function when receiving a second control signal for controlling the second human-computer interaction interface.
As described above, the smart glasses, the control method of the smart glasses and the control system of the smart glasses according to the present invention have the following advantages:
1. the intelligent glasses can establish network communication with a preset vehicle machine (such as IPDA), obtain current driving information from the preset vehicle machine and realize system functions of the preset vehicle machine, display a first human-computer interaction interface corresponding to a human-computer interaction interface of the preset vehicle machine in the intelligent glasses, interact with a system host of the preset vehicle machine to realize control over the preset vehicle machine when a signal for controlling the first human-computer interaction interface is received, so that after a user wears the intelligent glasses and starts the system, the whole vehicle entertainment system is switched to an intelligent glasses system, after the user wears the intelligent glasses, information of the whole preset vehicle machine (such as IPDA) system is displayed to a virtual image in front of the eye of the user through the intelligent glasses, and after the user puts down and closes the intelligent glasses, the whole vehicle entertainment system is switched to an original entertainment system.
2. The user also brings intelligent glasses when backing, so that the original car backing image and the 360-degree panorama can be processed by a preset car machine (such as IPDA) and then presented in the intelligent glasses.
3. The intelligent glasses can control a preset vehicle machine (such as IPDA) system through the common operation of touch, camera shooting gesture, voice and other modes.
4. The intelligent glasses position the virtual image below the sight of the user, and the sight of a person driving a vehicle with the intelligent glasses is not blocked from seeing the rearview mirror.
5. The bone conduction transducer for audio output is arranged above the joint ear, so that the performance of the bone conduction transducer can be improved, and the voice recognition capability of the car machine is better and more reliable.
6. The intelligent glasses have the entertainment function of common intelligent glasses when not connected with a vehicle machine.
Drawings
Fig. 1 is a schematic diagram illustrating a network connection of smart glasses according to the present invention.
Fig. 2 is a block diagram illustrating a structure of a vehicle-mounted device system control system in an intelligent glasses according to the present invention.
Fig. 3 is a functional diagram of a pair of smart glasses according to the present invention.
Fig. 4 is a schematic view of an application scenario model of the smart glasses according to the present invention in the in-vehicle mode.
Fig. 5 is a schematic view illustrating the usage of the smart glasses of the present invention in the in-vehicle mode.
Fig. 6 is a schematic view of an application scene model of the smart glasses according to the present invention in the off-board mode.
Fig. 7 is a schematic view showing the use of smart glasses according to the present invention in the off-board mode.
Description of the element reference numerals
1 Intelligent glasses
11 intelligent glasses control system
111 first human-computer interaction module
112 second human-computer interaction module
113 starting module
2 presetting vehicle machine
3 change-over switch
4 original vehicle main machine
5 video HUB
6 original vehicle power amplifier system
7 hand-held electronic equipment
Detailed Description
The embodiments of the present invention are described below with reference to specific embodiments, and other advantages and effects of the present invention will be easily understood by those skilled in the art from the disclosure of the present specification. The invention is capable of other and different embodiments and of being practiced or of being carried out in various ways, and its several details are capable of modification in various respects, all without departing from the spirit and scope of the present invention.
The invention aims to provide intelligent glasses, and a control method and a control system of the intelligent glasses, which are used for solving the problem of inconvenient operation caused by the fact that a person wearing the intelligent glasses still needs to turn around to operate a human-computer interface of a vehicle machine when the vehicle machine needs to be controlled during driving in the prior art. The following will explain the principle and implementation of the smart glasses, the control method of the smart glasses and the control system of the smart glasses in detail, so that those skilled in the art can understand the smart glasses, the control method of the smart glasses and the control system of the smart glasses without creative labor.
As shown in fig. 1, the present embodiment provides smart glasses, where the smart glasses 1 include: the intelligent glasses comprise an intelligent glasses frame and an intelligent glasses control system 11 arranged in the intelligent glasses frame; as shown in fig. 2, in the present embodiment, the smart glasses operating system 11 includes: a first human-computer interaction module 111, a second human-computer interaction module 112 and an activation module 113.
In this embodiment, the car machine is a vehicle-mounted infotainment product installed in an automobile, and the car machine is required to be capable of realizing information communication between a person and a car and between the car and the outside (car and car). The smart glasses 1 need to establish network communication with a preset vehicle machine 2 (e.g., IPDA, Intelligent Personal Driving Assistant) and a handheld electronic device 7 (e.g., a mobile phone and a tablet computer), and the smart glasses 1 and the preset vehicle machine 2 and the handheld electronic device 7 may establish network communication in a MiracastP2P, wifi AP and/or bluetooth manner. The IPDA is a processing external terminal, and the intelligent glasses 1 are in butt joint with the external terminal when in use, so that the direct data exchange with the original vehicle host 4 is avoided, and the software development cost for different vehicle-mounted systems is reduced.
In this embodiment, the starting module 113 is respectively connected to the first human-computer interaction module 111 and the second human-computer interaction module 112, and is configured to start the first human-computer interaction module 111 to operate when receiving an external starting signal and starting up according to the received external starting signal, and start the second human-computer interaction module 112 to operate when receiving an internal starting signal and starting up according to the received internal starting signal.
The external starting signal is generated by triggering a change-over switch 3 which is arranged on a vehicle corresponding to the preset vehicle machine 2 and connected with the preset vehicle machine 2. By means of the change-over switch 3, the first human-machine interaction module 111 can be started to operate. The CAN bus signal or the whole vehicle hard line signal is transmitted to the preset vehicle machine 2 or the original vehicle host machine 4 through the change-over switch 3.
In this embodiment, the first human-computer interaction module 111 is configured to, after the intelligent glasses 1 establish network communication with the preset car machine 2 through a wireless network, obtain current driving information from the preset car machine 2 and implement a system function of the preset car machine 2, and simultaneously display a first human-computer interaction interface corresponding to a human-computer interaction interface of the preset car machine 2 in the intelligent glasses 1; the first human-computer interaction module 111 interacts with a system host of the preset car machine 2 to realize control of the preset car machine 2 when receiving a first control signal for controlling the first human-computer interaction interface.
Therefore, in this embodiment, after the user wears the smart glasses 1 and starts the system, the whole car entertainment system is switched to the smart glasses system through the first human-computer interaction module 111, and after the user wears the smart glasses 1, the information of the whole preset car machine 2 (e.g., IPDA) system is displayed to the virtual image in front of the eye of the user through the smart glasses 1. The generation method of the first human-machine interaction interface is the same as that of the human-machine interaction interface in the preset car machine 2 or the first human-machine interaction interface is generated by projecting the human-machine interaction interface in the preset car machine 2. In addition, when the generation method of the first human-computer interaction interface is the same as the generation method of the human-computer interaction interface in the preset vehicle machine 2, the smart glasses 1 and the preset vehicle machine 2 are connected in two modes, one mode is a single system, that is, the content presented by the preset vehicle machine 2 through the first human-computer interaction interface is the same, and the other mode is a double system, that is, one system of the preset vehicle machine 2 itself is a detailed version, and the content presented through the first human-computer interaction interface of the smart glasses 1 is another system, which is a simple version, and the two modes are different in the expression form of functions but identical in the functions. In the representation form, the main menu of the first human-computer interaction interface is in a page turning mode, and the contents of the main menu are consistent or more concise. That is to say, can switch over smart glasses system and former car machine system of predetermineeing through change over switch 3 (touch button), the UI interface of smart glasses 1 can be different with the UI interface of former car machine 2 of predetermineeing, can be for having the UI interface that is applicable to smart glasses 1.
In addition, the first control signal includes a voice control signal, a touch screen control signal and/or a gesture control signal, so that the smart glasses 1 in this embodiment can control a preset vehicle computer 2 (e.g., IPDA) system through common operations in a touch mode, a camera capture gesture mode, a voice mode, and the like. In addition, in this embodiment, the first control signal further includes a control signal from an in-vehicle control device, for example, the in-vehicle control device is a steering wheel, and the original steering wheel can control the smart glasses 1, such as controlling the smart glasses 1 to switch music, adjusting volume, waking up with voice, and the like.
In this embodiment, the first human-computer interaction module 111 includes a navigation unit, an audio-visual entertainment unit, and an electronic device interconnection control unit for implementing the basic functions of the smart glasses 1, and further includes a vehicle state display unit for displaying a vehicle state according to the current driving information obtained from the preset vehicle 2, so as to implement the system functions of the preset vehicle 2. The vehicle state display unit comprises a driving state, alarm information and a reversing image.
Specifically, as shown in fig. 3, the navigation unit includes a roaming mode and a navigation mode, and in the roaming mode, the current road name, the current traffic condition, and the overspeed warning can be acquired, and in the navigation mode, the common address, the fastest route, the map entering mode, and the address input can be acquired. The electronic device interconnection control unit is used for controlling the handheld electronic device 7 (such as a mobile phone), for example, answering a call, rejecting the call, replying a short message, receiving a WeChat, and the like. The video entertainment unit comprises a music subunit, a radio subunit and a camera subunit, wherein the music subunit can play network music and local music and can display song names, lyrics and the like; the radio subunit can select frequency modulation, adjust volume, listen to songs, recognize songs and the like. The shadow shooting unit can be used for shooting pictures, shooting videos, sharing and uploading the shot pictures or videos and the like.
After the intelligent glasses 1 establish network communication with the preset vehicle machine 2, the navigation information in the navigation unit and the audio-video entertainment information in the audio-video entertainment unit can be acquired from the preset vehicle machine 2.
In addition, the preset car machine 2 (such as IPDA) is connected with the original car main machine 4 through an interface or connected with the in-car audio to transmit audio signals. As shown in fig. 1, in this embodiment, after the intelligent glasses 1 establish network communication with the preset car machine 2, the audio signal input to the intelligent glasses 1 is directly acquired from the original car power amplifier system 6 of the vehicle by the preset car machine 2. Namely, the audio output of the preset car machine 2 is directly connected with the original car power amplifier system 6, so that the audio processing capability of the preset car machine 2 can be fully exerted. Therefore, after the intelligent glasses 1 in this embodiment establishes network communication with the preset car machine 2, the sound system of the original car is still used in terms of hearing so as to maintain the original sound effect of the high-end car.
In addition, as shown in fig. 1, after the intelligent glasses 1 establish network communication with the preset car machine 2, the video signal input to the intelligent glasses 1 is collected through a video HUB5 connected between the preset car machine 2 and the vehicle host. Namely, the video HUB5 is used to transmit video signals between the default car computer 2 (e.g., IPDA) and the original car host 4. Thus, if the user returns the smart glasses 1 during reversing, the reverse image and the 360-degree panorama of the original car are processed by the preset car machine 2 (e.g., IPDA) and then presented in the smart glasses 1.
In addition, the first human-computer interaction module 111 transmits the video or the picture shot in the smart glasses 1 to the car presetting machine 2. The first human-computer interaction module 111 stores the video or the picture shot by the intelligent glasses 1 in a FLASH memory of the intelligent glasses 1, and when the intelligent glasses 1 are idle, the first human-computer interaction module 111 automatically downloads the video or the picture in the FLASH memory to the preset vehicle machine 2.
In this embodiment, the first human-computer interaction module 111 is further configured to share the video or the picture taken in the smart glasses 1 with a third-party software platform, for example, a third-party software platform such as a QQ, a wechat, a microblog, a hundredth cloud, or further send the video or the picture to a friend in the third-party software platform.
In this embodiment, the second human-computer interaction module 112 is configured to implement a preset function, display a second human-computer interaction interface corresponding to the preset function in the smart glasses 1, and interact with the host of the smart glasses 1 to implement the corresponding preset function when receiving a second control signal for controlling the second human-computer interaction interface. When the smart glasses 1 are not connected to the car machine, the smart glasses 1 can implement the function of the conventional smart glasses 1 in the prior art.
The second human-computer interaction module 112 includes a navigation unit, an audio-video entertainment unit, and an electronic device interconnection control unit for implementing the preset function. The navigation unit, the video entertainment unit and the electronic device interconnection control unit in the second human-computer interaction module 112 have the same functions and display in the interaction interface as the navigation unit, the video entertainment unit and the electronic device interconnection control unit in the first human-computer interaction module 111. That is, the first human-computer interaction module 111 and the second human-computer interaction module 112 may share a navigation unit, a video entertainment unit, and an electronic device interconnection control unit.
The starting module 113 starts the first human-computer interaction module 111 to operate when receiving an external starting signal and starting up according to the received external starting signal, at this time, the application scene model is as shown in fig. 4, a driver driving a vehicle wears intelligent glasses, the intelligent glasses establish communication connection with a vehicle machine in the vehicle, and meanwhile, can establish communication connection with a mobile phone, and the intelligent glasses 1 enter an in-vehicle mode. As shown in fig. 5, the smart glasses 1 are used in the in-vehicle mode as follows:
wearing glasses, pressing a change-over switch 3 on the car, opening a home page by the intelligent glasses 1, connecting the intelligent glasses 1 with a preset car machine 2, connecting the intelligent glasses 1 with a mobile phone, and switching audio frequencies of the car machine; through intelligent suggestion can carry out: displaying the current state of the vehicle, such as the position in driving; a parking position; whether the engine is started or not; weather conditions; welcome greeting voice or text pictures. And then displaying functional frames such as navigation, telephone, service, vehicle information, music, radio, photographing and the like in the first human-computer interaction interface. And controlling the preset car machine 2 by controlling the first human-computer interaction interface. When the intelligent glasses 1 are powered off, the communication between the intelligent glasses 1 and the preset car machine 2 is not interrupted, data (pictures or videos) are automatically downloaded to the preset car machine 2, and then the communication between the intelligent glasses 1 and the preset car machine 2 and the mobile phone is cut off.
The starting module 113 starts the second human-computer interaction module 112 to operate when receiving an internal starting signal and starting up according to the received internal starting signal, at this time, the application scene model is as shown in fig. 6, the wearer wears the smart glasses 1, at this time, the function of the smart glasses 1 is basically the same as that of the common smart glasses, for example, external scenes or pictures can be received from a camera, the pictures are projected through the glasses, and the smart glasses 1 enter an external mode. As shown in fig. 7, the smart glasses 1 are used in the off-board mode as follows:
the intelligent glasses 1 are opened by pressing a key switch on the intelligent glasses 1, the home page is opened by the intelligent glasses 1, the intelligent glasses 1 can generate system sound prompt and pictures of the intelligent glasses 1 at the moment, the home page can be distinguished from the in-vehicle mode, the intelligent glasses 1 and the mobile phone are connected through a wireless network, and then the second man-machine interaction interface displays navigation, telephone, music, radio, photographing and other function frames. And the preset function is realized by controlling the interaction between the second human-computer interaction interface and the host of the intelligent glasses 1.
Therefore, the smart glasses 1 in this embodiment have a basic entertainment function of the smart glasses 1 outside the vehicle, and can navigate and receive vehicle data and the like after being connected with the preset vehicle device 2 (IPDAbox). The function of presetting the car machine 2 is realized.
In this embodiment, the smart glasses 1 frame includes: a center frame support; a light engine for presenting a virtual image; first and second temples extending from both ends of the center frame supporter, respectively; an extension arm extending from the first temple or the second temple; the extension arm comprises an extension part extending to the first glasses leg or the second glasses leg and an elbow part respectively connected with the extension part and the optical machine and enabling the optical machine to be positioned below or above the sight line of a user. Wherein, the virtual image is positioned below the sight of the user by the intelligent glasses 1, and the sight of the person driving the vehicle with the intelligent glasses 1 cannot be shielded to see the rearview mirror.
In this embodiment, the first temple and the second temple are each provided with a bone conduction transducer for audio output at a location above the engaging ear. Install in laminating ear top department through the bone conduction transducer who will be used for audio output, can improve the performance of bone conduction transducer, make car machine speech recognition ability better, more reliable.
The extension arm is provided with a key switch for generating the internal starting signal by triggering and a touch control panel for inputting the first control signal to the first human-computer interaction module 111 and the second control signal to the second human-computer interaction module 112.
In this embodiment, the first temple and/or the second temple are provided with a rechargeable battery and a charging interface connected to the rechargeable battery. A rechargeable battery and a charging interface connected to the rechargeable battery may be mounted only on the first temple or the second temple, or a rechargeable battery and a charging interface connected to the rechargeable battery may be mounted on the first temple and the second temple, respectively.
In this embodiment, the extension may slide along the first temple or the second temple or the extension and the elbow may slide relatively to each other so that the light engine moves toward or away from the face of the user.
In this embodiment, a rotation connecting piece is disposed between the elbow and the optical engine, so that the optical engine can rotate along the direction of the transverse shaft. For example, a rotating shaft, so that the virtual image presented by the smart glasses 1 presents different display angles.
In this embodiment, the optical machine is provided with a sunshade sleeve for improving the display effect of the virtual image under strong light.
In addition, the present embodiment further provides a method for operating and controlling smart glasses, where the method for operating and controlling smart glasses includes:
1) after receiving an external starting signal and starting according to the external starting signal, enabling the intelligent glasses 1 to establish network communication with a preset vehicle machine 2, acquiring current driving information from the preset vehicle machine 2, displaying a first human-machine interaction interface corresponding to a human-machine interaction interface of the preset vehicle machine 2 in the intelligent glasses 1, and interacting with a system host of the preset vehicle machine 2 to realize control over the preset vehicle machine 2 when receiving a first control signal for controlling the first human-machine interaction interface.
2) After receiving an external starting signal and starting according to the external starting signal, displaying a second human-computer interaction interface corresponding to the preset function in the intelligent glasses 1, and meanwhile, realizing the corresponding preset function when receiving a second control signal for controlling the second human-computer interaction interface.
The smart glasses 1 in the smart glasses control method are described in detail above, and are not described herein again.
To sum up, after the network communication between the intelligent glasses and a preset vehicle machine (such as IPDA) is established, the current driving information is obtained from the preset vehicle machine and the system function of the preset vehicle machine is realized, meanwhile, a first human-machine interaction interface corresponding to the human-machine interaction interface of the preset vehicle machine is displayed in the intelligent glasses, when a signal for controlling the first human-machine interaction interface is received, the intelligent glasses are interacted with a system host of the preset vehicle machine to realize the control of the preset vehicle machine, so that after a user wears the intelligent glasses and starts the system, the whole vehicle entertainment system is switched to an intelligent glasses system, after the user wears the intelligent glasses, the information of the whole preset vehicle machine (such as IPDA) system is displayed to a virtual image in front of the eye of the user through the intelligent glasses, and after the user puts down the intelligent glasses, the whole vehicle entertainment system is switched to the original entertainment system; when a user backs a car, the user also carries intelligent glasses, so that the original car backing image and the 360-degree panorama can be processed by a preset car machine (such as IPDA) and then presented in the intelligent glasses; the intelligent glasses can control a preset vehicle machine (such as IPDA) system through the common operation of touch, camera shooting gesture collection, voice and other modes; the intelligent glasses position the virtual image below the sight of the user, so that the sight of a person driving a vehicle with the intelligent glasses is not blocked to see the rearview mirror; the bone conduction transducer for audio output is arranged above the joint ear, so that the performance of the bone conduction transducer can be improved, and the voice recognition capability of the car machine is better and more reliable. Therefore, the invention effectively overcomes various defects in the prior art and has high industrial utilization value.
The foregoing embodiments are merely illustrative of the principles and utilities of the present invention and are not intended to limit the invention. Any person skilled in the art can modify or change the above-mentioned embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which can be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

Claims (14)

1. A smart eyewear manipulation system, comprising:
the first human-computer interaction module is used for acquiring current driving information from a preset vehicle machine and realizing the system function of the preset vehicle machine after the intelligent glasses establish network communication with the preset vehicle machine, and simultaneously displaying a first human-computer interaction interface corresponding to the human-computer interaction interface of the preset vehicle machine in the intelligent glasses; the first human-computer interaction module interacts with a system host of the preset vehicle machine to realize control of the preset vehicle machine when receiving a first control signal for controlling the first human-computer interaction interface; the generation method of the first human-computer interaction interface is the same as that of the preset in-vehicle human-computer interaction interface or the first human-computer interaction interface is generated by projecting the preset in-vehicle human-computer interaction interface; when the generation method of the first human-computer interaction interface is the same as that of the human-computer interaction interface in the preset vehicle machine, the intelligent glasses are connected with the preset vehicle machine in two modes, wherein one mode is a single system, namely the content displayed by the preset vehicle machine through the first human-computer interaction interface is the same, and the other mode is a double system, namely the preset vehicle machine is a system, the human-computer interaction interface of the preset vehicle machine is a detailed version, the intelligent glasses are the other system, and the first human-computer interaction interface is a simple version; the intelligent glasses include intelligent spectacle frame, intelligent spectacle frame includes: a center frame support; a light engine for presenting a virtual image; first and second temples extending from both ends of the center frame supporter, respectively; an extension arm extending from the first temple or the second temple; the extension arm comprises an extension part extending from the first glasses leg or the second glasses leg and an elbow part which is respectively connected with the extension part and the optical engine and enables the optical engine to be positioned below or above the sight line of a user; a rotary connecting piece which can enable the optical machine to rotate along the direction of the transverse shaft is arranged between the elbow and the optical machine;
the second human-computer interaction module is used for realizing a preset function, displaying a second human-computer interaction interface corresponding to the preset function in the intelligent glasses, and interacting with the host of the intelligent glasses to realize the corresponding preset function when receiving a second control signal for controlling the second human-computer interaction interface;
the starting module is respectively connected with the first human-computer interaction module and the second human-computer interaction module and used for starting the first human-computer interaction module to operate when receiving an external starting signal and starting up according to the received external starting signal, and starting the second human-computer interaction module to operate when receiving an internal starting signal and starting up according to the received internal starting signal.
2. The intelligent glasses control system according to claim 1, wherein the external start signal is generated by triggering a switch installed on a vehicle corresponding to the preset vehicle machine and connected to the preset vehicle machine.
3. The system as claimed in claim 1, wherein the smart glasses establish network communication with the predetermined vehicle machine by means of MiracastP2P, wifi ap and/or bluetooth.
4. The smart eyewear manipulation system of claim 1, wherein the first and second human-computer interaction modules are connected to a handheld electronic device via a wireless network.
5. The smart eyewear manipulation system of claim 1, wherein the first and second manipulation signals comprise voice manipulation signals, touch screen manipulation signals, and/or gesture manipulation signals.
6. The smart eyewear steering system of claim 5, wherein the first steering signal further comprises a control signal from a steering device in the vehicle.
7. The intelligent eyeglass manipulation system of claim 1, wherein the second human-computer interaction module comprises a navigation unit, a video entertainment unit, and an electronic device interconnection control unit for implementing the preset function.
8. The intelligent glasses control system according to claim 7, wherein the first human-computer interaction module further comprises a vehicle state display unit for displaying a vehicle state according to the current driving information obtained from the preset vehicle machine, in addition to the navigation unit, the audio-visual entertainment unit and the electronic device interconnection control unit, so as to implement a system function of the preset vehicle machine.
9. The system of claim 8, wherein the navigation information in the navigation unit and the audiovisual entertainment information in the audiovisual entertainment unit are obtained from the predetermined vehicle machine after the smart glasses establish network communication with the predetermined vehicle machine.
10. The intelligent glasses control system according to claim 9, wherein after the intelligent glasses establish network communication with the preset vehicle machine, the audio signal input to the intelligent glasses is directly collected from a power amplifier system of a vehicle by the preset vehicle machine; and inputting the video signal of the intelligent glasses, and acquiring the video signal through a video HUB connected between the preset vehicle machine and the vehicle host.
11. The smart eyewear manipulation system of claim 8, 9 or 10, wherein the vehicle status display unit comprises driving status, warning information and reverse images.
12. The smart eyewear manipulation system of claim 1, wherein the first human-machine interaction module transmits the video or the picture taken in the smart eyewear to the car preset.
13. Smart glasses comprising a smart glasses manipulation system according to any one of claims 1 to 12.
14. A smart glasses manipulation method, comprising:
after receiving an external starting signal and starting according to the external starting signal, enabling intelligent glasses to establish network communication with a preset vehicle machine, acquiring current driving information from the preset vehicle machine, displaying a first human-computer interaction interface corresponding to the human-computer interaction interface of the preset vehicle machine in the intelligent glasses, and interacting with a system host of the preset vehicle machine to realize control over the preset vehicle machine when receiving a first control signal for controlling the first human-computer interaction interface; the generation method of the first human-computer interaction interface is the same as that of the preset in-vehicle human-computer interaction interface or the first human-computer interaction interface is generated by projecting the preset in-vehicle human-computer interaction interface; when the generation method of the first human-computer interaction interface is the same as that of the human-computer interaction interface in the preset vehicle machine, the intelligent glasses are connected with the preset vehicle machine in two modes, wherein one mode is a single system, namely the content displayed by the preset vehicle machine through the first human-computer interaction interface is the same, and the other mode is a double system, namely the preset vehicle machine is a system, the human-computer interaction interface of the preset vehicle machine is a detailed version, the intelligent glasses are the other system, and the first human-computer interaction interface is a simple version; the intelligent glasses include intelligent spectacle frame, intelligent spectacle frame includes: a center frame support; a light engine for presenting a virtual image; first and second temples extending from both ends of the center frame supporter, respectively; an extension arm extending from the first temple or the second temple; the extension arm comprises an extension part extending from the first glasses leg or the second glasses leg and an elbow part which is respectively connected with the extension part and the optical engine and enables the optical engine to be positioned below or above the sight line of a user; a rotary connecting piece which can enable the optical machine to rotate along the direction of the transverse shaft is arranged between the elbow and the optical machine;
after receiving an external starting signal and starting according to the external starting signal, displaying a second human-computer interaction interface corresponding to a preset function in the intelligent glasses, and meanwhile, realizing the corresponding preset function when receiving a second control signal for controlling the second human-computer interaction interface.
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