WO2017088631A1 - 一种移动终端及其增减调节方法及装置、存储介质 - Google Patents

一种移动终端及其增减调节方法及装置、存储介质 Download PDF

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Publication number
WO2017088631A1
WO2017088631A1 PCT/CN2016/104346 CN2016104346W WO2017088631A1 WO 2017088631 A1 WO2017088631 A1 WO 2017088631A1 CN 2016104346 W CN2016104346 W CN 2016104346W WO 2017088631 A1 WO2017088631 A1 WO 2017088631A1
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Prior art keywords
sensor
gesture
action
real
return value
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PCT/CN2016/104346
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English (en)
French (fr)
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张海龙
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努比亚技术有限公司
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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
    • 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
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • 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

Definitions

  • the present invention relates to the field of mobile communication technologies, and in particular, to a mobile terminal, an adjustment and reduction adjustment method and device thereof, and a storage medium.
  • buttons, screen touches and the like In the electronic device, such as sound, brightness, size, radius, etc. increase and decrease operations, currently there are mainly physical buttons, screen touches and the like.
  • the physical button structure is more complicated and affects the appearance.
  • the main purpose of the embodiments of the present invention is to provide a mobile terminal, an adjustment and reduction adjustment method and device thereof, and a storage medium, which are intended to solve the technical problems of complicated structure and inconvenient operation of the existing increase and decrease adjustment mode.
  • An embodiment of the present invention provides a method for increasing or decreasing a mobile terminal, where the method includes the following steps:
  • a gesture action is detected over the preset sensor array projection
  • the mobile terminal is adjusted up and down according to the type of the gesture action.
  • an embodiment of the present invention further provides an apparatus for increasing or decreasing a mobile terminal, including:
  • the detecting module is configured to detect that a gesture of the preset sensor array is over the gesture
  • An acquisition module configured to acquire real-time return values of all sensors in the sensor array
  • the determining module is configured to determine the type of the gesture action according to the arrangement manner of the sensor array and the real-time return value of the sensor;
  • the adjustment module is configured to perform an increase/decrease adjustment on the mobile terminal according to the type of the gesture action.
  • an embodiment of the present invention provides a computer storage medium, where the computer storage medium stores computer executable instructions, and the computer executable instructions are configured to perform the following steps:
  • a gesture action is detected over the preset sensor array projection
  • the mobile terminal is adjusted up and down according to the type of the gesture action.
  • an embodiment of the present invention provides a mobile terminal, where the mobile terminal includes a sensor and a processor, where the processor is configured to:
  • a gesture action is detected over the preset sensor array projection
  • the mobile terminal is adjusted up and down according to the type of the gesture action.
  • the invention provides a mobile terminal, an adjustment and reduction adjustment method and device thereof, and a storage medium, the method comprising the steps of: detecting a gesture of a preset sensor array projection; acquiring real-time return of all sensors in the sensor array The value of the gesture is determined according to the arrangement of the sensor array and the real-time return value of the sensor; the mobile terminal is adjusted according to the type of the gesture, and the change of the gesture is recognized by the sensor array.
  • the increase or decrease of the mobile terminal is simple and easy, and the user experience is improved.
  • FIG. 1 is a schematic structural diagram of hardware of an optional mobile terminal embodying various embodiments of the present invention
  • FIG. 2 is a schematic diagram of a wireless communication system of the mobile terminal shown in FIG. 1;
  • FIG. 3 is a flowchart of a method for increasing or decreasing a mobile terminal according to Embodiment 1 of the present invention
  • FIG. 4 is a schematic diagram of a rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 5 is a schematic diagram of another rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 6 is a schematic diagram of another rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 7 is a schematic diagram of another rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 8 is a schematic diagram of another rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 9 is a schematic diagram of another rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 10 is a schematic diagram of another rectangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 11 is a schematic diagram of a triangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 12 is a schematic diagram of another triangular sensor array according to Embodiment 1 of the present invention.
  • FIG. 13 is a schematic diagram of a multi-sensor array according to Embodiment 1 of the present invention.
  • FIG. 14 is a block diagram showing an exemplary structure of an increase/decrease adjustment apparatus for a mobile terminal according to Embodiment 2 of the present invention.
  • FIG. 15 is a block diagram showing an exemplary structure of an increase/decrease adjustment apparatus for a mobile terminal according to Embodiment 3 of the present invention.
  • FIG. 16 is a block diagram showing an exemplary structure of an increase/decrease adjustment apparatus for a mobile terminal according to Embodiment 4 of the present invention.
  • FIG. 17 is a block diagram showing an exemplary structure of an increase/decrease adjustment apparatus for a mobile terminal according to Embodiment 5 of the present invention.
  • the mobile terminal can be implemented in various forms.
  • the terminal described in the present invention may include, for example, a mobile phone, a smart phone, a notebook computer, a digital broadcast receiver, a PDA (Personal Digital Assistant), a PAD (Tablet), a PMP (Portable Multimedia Player), a navigation device, etc.
  • Mobile terminals and fixed terminals such as digital TVs, desktop computers, and the like.
  • the terminal is a mobile terminal.
  • those skilled in the art will appreciate that configurations in accordance with embodiments of the present invention can be applied to fixed type terminals in addition to components that are specifically for mobile purposes.
  • FIG. 1 is a schematic diagram showing the hardware structure of a mobile terminal embodying various embodiments of the present invention.
  • the mobile terminal 100 may include a wireless communication unit 110, an A/V (Audio/Video) input unit 120, a user input unit 130, a sensing unit 140, an output unit 150, a memory 160, an interface unit 170, a controller 180, and a power supply unit 190. and many more.
  • Figure 1 illustrates a mobile terminal having various components, but it should be understood that not all illustrated components are required to be implemented. More or fewer components can be implemented instead. The elements of the mobile terminal will be described in detail below.
  • Wireless communication unit 110 typically includes one or more components that permit radio communication between mobile terminal 100 and a wireless communication system or network.
  • the wireless communication unit can include at least one of the mobile communication module 112, the wireless internet module 113, and the short-range communication module 114.
  • the mobile communication module 112 transmits a radio signal to a base station (eg, an access point, a Node B) And/or at least one of the external terminal and the server and/or receive a radio signal therefrom.
  • a base station eg, an access point, a Node B
  • Such radio signals may include voice call signals, video call signals, or various types of data transmitted and/or received in accordance with text and/or multimedia messages.
  • the wireless internet module 113 supports wireless internet access of the mobile terminal.
  • the module can be internally or externally coupled to the terminal.
  • the wireless Internet access technologies involved in the module may include WLAN (Wireless LAN) (Wi-Fi), Wibro (Wireless Broadband), Wimax (Worldwide Interoperability for Microwave Access), HSDPA (High Speed Downlink Packet Access), etc. .
  • the short range communication module 114 is a module for supporting short range communication.
  • Some examples of short-range communication technologies include BluetoothTM, Radio Frequency Identification (RFID), Infrared Data Association (IrDA), Ultra Wide Band (UWB), ZigbeeTM, and the like.
  • the A/V input unit 120 is for receiving an audio or video signal.
  • the A/V input unit 120 may include a camera 121 and a microphone 1220 that processes image data of still pictures or video obtained by the image capturing device in a video capturing mode or an image capturing mode.
  • the processed image frame can be displayed on the display unit 151.
  • the image frames processed by the camera 121 may be stored in the memory 160 (or other storage medium) or transmitted via the wireless communication unit 110, and two or more cameras 1210 may be provided according to the configuration of the mobile terminal.
  • the microphone 122 can receive sound (audio data) via a microphone in an operation mode of a telephone call mode, a recording mode, a voice recognition mode, and the like, and can process such sound as audio data.
  • the processed audio (voice) data can be converted to a format output that can be transmitted to the mobile communication base station via the mobile communication module 112 in the case of a telephone call mode.
  • the microphone 122 can implement various types of noise cancellation (or suppression) algorithms to cancel (or suppress) noise or interference generated during the process of receiving and transmitting audio signals.
  • the user input unit 130 may generate key input data according to a command input by the user to control various operations of the mobile terminal.
  • the user input unit 130 allows the user to input various types of information, and may include a keyboard, a pot, a touch pad (eg, detecting resistance due to contact, Touch sensitive components of pressure, capacitance, etc.), scroll wheels, rockers, and the like.
  • a touch pad eg, detecting resistance due to contact, Touch sensitive components of pressure, capacitance, etc.
  • the sensing unit 140 detects the current state of the mobile terminal 100 (eg, the open or closed state of the mobile terminal 100), the location of the mobile terminal 100, the presence or absence of contact (ie, touch input) by the user with the mobile terminal 100, and the mobile terminal.
  • the sensing unit 140 can sense whether the slide type phone is turned on or off.
  • the sensing unit 140 can detect whether the power supply unit 190 provides power or whether the interface unit 170 is coupled to an external device.
  • the interface unit 170 serves as an interface through which at least one external device can connect with the mobile terminal 100.
  • the external device may include a wired or wireless headset port, an external power (or battery charger) port, a wired or wireless data port, a memory card port, a port for connecting a device having an identification module, and an audio input/output. (I/O) port, video I/O port, headphone port, and more.
  • the identification module may be stored to verify various information used by the user using the mobile terminal 100 and may include a User Identification Module (UIM), a Customer Identification Module (SIM), a Universal Customer Identity Module (USIM), and the like.
  • the device having the identification module may take the form of a smart card, and thus the identification device may be connected to the mobile terminal 100 via a port or other connection device.
  • the interface unit 170 can be configured to receive input from an external device (eg, data information, power, etc.) and transmit the received input to one or more components within the mobile terminal 100 or can be used at the mobile terminal and external device Transfer data between.
  • the interface unit 170 may function as a path through which power is supplied from the base to the mobile terminal 100 or may be used as a transmission of various command signals allowing input from the base to the mobile terminal 100 The path to the terminal.
  • Various command signals or power input from the base can be used as signals for identifying whether the mobile terminal is accurately mounted on the base.
  • the output unit 150 is configured to provide an output signal in a visual, audio, and/or tactile manner (eg, For example, audio signals, video signals, alarm signals, vibration signals, etc.).
  • the output unit 150 may include a display unit 151, an audio output module 152, and the like.
  • the display unit 151 can display information processed in the mobile terminal 100. For example, when the mobile terminal 100 is in a phone call mode, the display unit 151 can display a user interface (UI) or a graphical user interface (GUI) related to a call or other communication (eg, text messaging, multimedia file download, etc.). When the mobile terminal 100 is in a video call mode or an image capturing mode, the display unit 151 may display a captured image and/or a received image, a UI or GUI showing a video or image and related functions, and the like.
  • UI user interface
  • GUI graphical user interface
  • the display unit 151 can function as an input device and an output device.
  • the display unit 151 may include at least one of a liquid crystal display (LCD), a thin film transistor LCD (TFT-LCD), an organic light emitting diode (OLED) display, a flexible display, a three-dimensional (3D) display, and the like.
  • LCD liquid crystal display
  • TFT-LCD thin film transistor LCD
  • OLED organic light emitting diode
  • a flexible display a three-dimensional (3D) display, and the like.
  • 3D three-dimensional
  • Some of these displays may be configured to be transparent to allow a user to view from the outside, which may be referred to as a transparent display, and a typical transparent display may be, for example, a TOLED (Transparent Organic Light Emitting Diode) display or the like.
  • TOLED Transparent Organic Light Emitting Diode
  • the mobile terminal 100 may include two or more display units (or other display devices), for example, the mobile terminal may include an external display unit (not shown) and an internal display unit (not shown) .
  • the touch screen can be used to detect touch input pressure as well as touch input position and touch input area.
  • the audio output module 152 may convert audio data received by the wireless communication unit 110 or stored in the memory 160 when the mobile terminal is in a call signal receiving mode, a call mode, a recording mode, a voice recognition mode, a broadcast receiving mode, and the like.
  • the audio signal is output as sound.
  • the audio output module 152 can provide audio output (eg, call signal reception sound, message reception sound, etc.) associated with a particular function performed by the mobile terminal 100.
  • the audio output module 152 can include a speaker, a buzzer, and the like.
  • the memory 160 can store a software program that is processed and controlled by the controller 180. And so on, or data that has been output or is about to be output (for example, a phone book, a message, a still image, a video, etc.) can be temporarily stored. Moreover, the memory 160 can store data regarding vibrations and audio signals of various manners that are output when a touch is applied to the touch screen.
  • the memory 160 may include at least one type of storage medium including a flash memory, a hard disk, a multimedia card, a card type memory (eg, SD or DX memory, etc.), a random access memory (RAM), a static random access memory ( SRAM), read only memory (ROM), electrically erasable programmable read only memory (EEPROM), programmable read only memory (PROM), magnetic memory, magnetic disk, optical disk, and the like.
  • the mobile terminal 100 can cooperate with a network storage device that performs a storage function of the memory 160 through a network connection.
  • the controller 180 typically controls the overall operation of the mobile terminal. For example, the controller 180 performs the control and processing associated with voice calls, data communications, video calls, and the like. Additionally, the controller 180 can include a multimedia module 1810 for reproducing (or playing back) multimedia data, which can be constructed within the controller 180 or can be configured to be separate from the controller 180. The controller 180 may perform a pattern recognition process to recognize a handwriting input or a picture drawing input performed on the touch screen as a character or an image.
  • the power supply unit 190 receives external power or internal power under the control of the controller 180 and provides appropriate power required to operate the various components and components.
  • the various embodiments described herein can be implemented in a computer readable medium using, for example, computer software, hardware, or any combination thereof.
  • the embodiments described herein may be through the use of application specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable gate arrays (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable gate arrays ( An FPGA, a processor, a controller, a microcontroller, a microprocessor, at least one of the electronic units designed to perform the functions described herein, in some cases, such an embodiment may be at the controller 180 Implemented in the middle.
  • implementations such as procedures or functions may be implemented with separate software modules that permit the execution of at least one function or operation.
  • Software code can be used by The software application (or program) written in a suitable programming language is implemented, and the software code can be stored in the
  • the mobile terminal has been described in terms of its function.
  • a slide type mobile terminal among various types of mobile terminals such as a folding type, a bar type, a swing type, a slide type mobile terminal, and the like will be described as an example. Therefore, the present invention can be applied to any type of mobile terminal, and is not limited to a slide type mobile terminal.
  • the mobile terminal 100 as shown in FIG. 1 may be configured to operate using a communication system such as a wired and wireless communication system and a satellite-based communication system that transmits data via frames or packets.
  • a communication system such as a wired and wireless communication system and a satellite-based communication system that transmits data via frames or packets.
  • Such communication systems may use different air interfaces and/or physical layers.
  • air interfaces used by communication systems include, for example, Frequency Division Multiple Access (FDMA), Time Division Multiple Access (TDMA), Code Division Multiple Access (CDMA), and Universal Mobile Telecommunications System (UMTS) (in particular, Long Term Evolution (LTE)). ), Global System for Mobile Communications (GSM), etc.
  • FDMA Frequency Division Multiple Access
  • TDMA Time Division Multiple Access
  • CDMA Code Division Multiple Access
  • UMTS Universal Mobile Telecommunications System
  • LTE Long Term Evolution
  • GSM Global System for Mobile Communications
  • the following description relates to a CDMA communication system, but such teachings are equally applicable to other types of systems.
  • a CDMA wireless communication system can include a plurality of mobile terminals 100, a plurality of base stations (BS) 270, a base station controller (BSC) 275, and a mobile switching center (MSC) 280.
  • the MSC 280 is configured to interface with a public switched telephone network (PSTN) 290.
  • PSTN public switched telephone network
  • the MSC 280 is also configured to interface with a BSC 275 that can be coupled to the base station 270 via a backhaul line.
  • the backhaul line can be constructed in accordance with any of a number of well known interfaces including, for example, E1/T1, ATM, IP, PPP, Frame Relay, HDSL, ADSL, or xDSL. It will be appreciated that the system as shown in FIG. 2 may include multiple BSC 2750s.
  • Each BS 270 can serve one or more partitions (or regions), each of which is covered by a multi-directional antenna or an antenna directed to a particular direction radially away from the BS 270. Alternatively, each partition may be covered by two or more antennas for diversity reception. Each BS 270 can be configured to support multiple frequency allocations, and each frequency allocation has a particular frequency spectrum (eg, 1.25 MHz, 5 MHz, etc.).
  • BS 270 may also be referred to as a Base Transceiver Subsystem (BTS) or other equivalent terminology.
  • BTS Base Transceiver Subsystem
  • the base station can be used to generally represent a single BSC 275 and at least one BS 270.
  • a base station can also be referred to as a cellular station.
  • each partition of a particular BS 270 may be referred to as a plurality of cellular stations.
  • a broadcast transmitter (BT) 295 transmits a broadcast signal to the mobile terminal 100 operating within the system.
  • a broadcast receiving module 111 as shown in FIG. 1 is provided at the mobile terminal 100 to receive a broadcast signal transmitted by the BT 295.
  • GPS Global Positioning System
  • the satellite 300 helps locate at least one of the plurality of mobile terminals 100.
  • a plurality of satellites 300 are depicted, but it is understood that useful positioning information can be obtained using any number of satellites.
  • the GPS module 115 as shown in Figure 1 is typically configured to cooperate with the satellite 300 to obtain desired positioning information. Instead of GPS tracking technology or in addition to GPS tracking technology, other techniques that can track the location of the mobile terminal can be used. Additionally, at least one GPS satellite 300 can selectively or additionally process satellite DMB transmissions.
  • BS 270 receives reverse link signals from various mobile terminals 100.
  • Mobile terminal 100 typically participates in calls, messaging, and other types of communications.
  • Each reverse link signal received by a particular base station 270 is processed within a particular BS 270.
  • the obtained data is forwarded to the relevant BSC 275.
  • the BSC provides call resource allocation and coordinated mobility management functions including a soft handoff procedure between the BSs 270.
  • the BSC 275 also routes the received data to the MSC 280, which provides additional routing services for interfacing with the PSTN 290.
  • PSTN 290 interfaces with MSC 280, which forms an interface with BSC 275, and BSC 275 controls BS 270 accordingly to transmit forward link signals to mobile terminal 100.
  • a first embodiment of the present invention provides a method for increasing or decreasing a mobile terminal.
  • the method includes the steps of:
  • the sensor array is located on the side of the middle frame of the mobile terminal, and the sensor array is disposed in multiple directions to recognize the change of the gesture action, thereby adjusting and adjusting the mobile terminal, which is simple and easy, and improves the user experience.
  • the type of the gesture action includes: an incremental gesture action and a decrease gesture gesture; wherein the incremental gesture action includes: a clockwise screwing action, a sliding motion, and an upper pressing motion, Decrease gestures include: counterclockwise screwing, sliding motion, and lower pressing motion.
  • the types of the gesture actions are determined according to the arrangement manner of the sensor array and the real-time return value of the sensor, including:
  • the sensors in the rectangular sensor array are labeled as: upper left sensor, upper right sensor, lower left sensor, and lower right sensor, and their arrangement is as shown in FIG. 4, where A represents the upper left sensor, B represents the upper right sensor, C represents the lower left sensor, and D represents Lower right sensor;
  • the return values of the lower left sensor and the lower right sensor are first enhanced and then weakened, and then the upper left sensor and the upper right sensor are also first enhanced and then weakened, and then determined.
  • the gesture action of the rectangular sensor array projection is a sliding motion, and the system will perform incremental processing on the control target (sound/brightness/size...);
  • the return values of the upper left sensor and the upper right sensor are first enhanced and then weakened, and then the lower left sensor and the lower right sensor are also first enhanced and then weakened, and then determined.
  • the gesture action of the rectangular sensor array projection is a sliding motion, and the system will reduce the control target (sound/brightness/size...);
  • the return values of the upper left sensor, the upper right sensor, the lower left sensor, and the lower right sensor simultaneously increase, and the return values of the upper left sensor and the upper right sensor are much larger than the lower left.
  • the gesture action for determining that the rectangular sensor array is projected is an upper pressing action, and when the upper pressing action value is greater than a preset first pressing threshold, the system will control the target (the sound) / brightness / size (7) do incremental processing;
  • the return values of the upper left sensor, the upper right sensor, the lower left sensor, and the lower right sensor simultaneously increase, and the return values of the upper left sensor and the upper right sensor are much smaller than the lower left.
  • the gesture action for determining that the rectangular sensor array is projected is a lower pressing action, and when the lower pressing action value is greater than the preset second pressing threshold, the system will control the target (the sound) / Brightness / Size%) Do the reduction processing.
  • the types of the gestures determined according to the arrangement manner of the sensor array and the real-time return value of the sensor include:
  • the sensors in the triangular sensor array are sequentially labeled clockwise as: a first sensor, a second sensor, and a third sensor, arranged in a manner as shown in FIG. 11, wherein A represents a first sensor, B represents a second sensor, and C represents Third sensor;
  • the gesture of the triangle sensor array is determined to be clockwise. Screwing action, the system will incrementally process the control target (sound/brightness/size...);
  • the type of the gesture action is determined according to the arrangement of the effective sensors as a rectangle or a triangle.
  • the real-time return value of the sensor indicates that the sensor C, the sensor D, and the sensor E return.
  • the sensor arrays may be arranged in a circular shape or other shapes, and may be determined by the shape characteristics of the arrangement of the sensor arrays and the change trend of the real-time return values of the sensors. It is within the scope of the present invention to change the type of gesture action, thereby increasing or decreasing the adjustment of the mobile terminal.
  • a mobile terminal increase and decrease adjustment apparatus includes:
  • the detecting module 10 is configured to detect that a preset sensor array projection has a gesture action
  • the obtaining module 20 is configured to acquire real-time return values of all sensors in the sensor array
  • the determining module 30 is configured to determine the type of the gesture action according to the arrangement manner of the sensor array and the real-time return value of the sensor;
  • the adjustment module 40 is configured to perform an increase/decrease adjustment on the mobile terminal according to the type of the gesture action.
  • the sensor array is located on the side of the middle frame of the mobile terminal, and the sensor array is disposed in multiple directions to recognize the change of the gesture action, thereby adjusting and adjusting the mobile terminal, which is simple and easy, and improves the user experience.
  • the type of the gesture action includes: an incremental gesture action and a decrease gesture gesture; wherein the incremental gesture action includes: a clockwise screwing action, a sliding motion, and an upper pressing motion, Decrease gestures include: counterclockwise screwing, sliding motion, and lower pressing motion.
  • the determining module 30 includes: a rectangle determining unit 31 configured to:
  • the return values of the upper left sensor and the lower right sensor are weakened, and when the upper right sensor and the lower left sensor are in an increasing trend, the gesture of the rectangular sensor array is determined to be clockwise. Screwing action
  • the return values of the upper left sensor and the lower right sensor are in an increasing trend, and when the upper right sensor and the lower left sensor are in a weakening trend, it is determined that the gesture of the rectangular sensor array is counterclockwise Screwing action
  • the return value of the upper left sensor and the upper right sensor is first increased and then weakened, and then the lower left sensor and the lower right sensor are also first enhanced and then weakened, and the rectangular sensor array projection is determined.
  • the gesture action in the sky is a downward movement;
  • the return values of the upper left sensor, the upper right sensor, the lower left sensor, and the lower right sensor simultaneously increase, and the return values of the upper left sensor and the upper right sensor are much larger than those of the lower left sensor and the lower right sensor.
  • the gesture action of the rectangular sensor array projection is an upper pressing action
  • the return values of the upper left sensor, the upper right sensor, the lower left sensor, and the lower right sensor simultaneously increase, and the return values of the upper left sensor and the upper right sensor are much smaller than those of the lower left sensor and the lower right sensor.
  • the gesture operation of the rectangular sensor array projection is a lower pressing operation.
  • the determining module 30 further includes: a triangle determining unit 32 configured to:
  • the sensors in the triangular sensor array are sequentially labeled clockwise as: a first sensor, a second sensor, and a third sensor;
  • the gesture of the triangle sensor array is determined to be clockwise. Screwing action
  • the determining module 30 further includes: a selection determining unit 33 configured to: according to the change of the real-time return value of the sensor when the number of the sensor array is greater than or equal to The size is selected from the sensor array as three or four most varied sensors as effective sensors, and the type of the gesture action is determined according to the arrangement of the effective sensors as a rectangle or a triangle.
  • Each module included in the increase/decrease adjustment device of the mobile terminal in the embodiment of the present invention, and each unit included in each module can be implemented by a processor in the mobile terminal; of course, the logic circuit can also be implemented;
  • the processor may be a central processing unit (CPU), a microprocessor (MPU), a digital signal processor (DSP), or a field programmable gate array (FPGA).
  • the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage medium, including a plurality of instructions.
  • a computer device (which may be a personal computer, server, or network device, etc.) is caused to perform all or part of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • program codes such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • the embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores computer executable instructions, and the computer executable instructions are used to perform an increase/decrease adjustment method of the mobile terminal in the embodiment of the present invention.
  • an embodiment of the present invention further provides a mobile terminal, where the mobile The terminal includes a sensor and a processor, wherein the processor is configured to:
  • a gesture action is detected over the preset sensor array projection
  • the mobile terminal is adjusted up and down according to the type of the gesture action.
  • the foregoing embodiment method can be implemented by means of software plus a necessary general hardware platform, and of course, can also be through hardware, but in many cases, the former is better.
  • Implementation Based on such understanding, the technical solution of the present invention, which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk,
  • the optical disc includes a number of instructions for causing a terminal device (which may be a cell phone, a computer, a server, an air conditioner, or a network device, etc.) to perform the methods described in various embodiments of the present invention.
  • a preset gesture of the sensor array is detected, and a real-time return value is obtained for all the sensors in the sensor array; and the gesture is determined according to the arrangement manner of the sensor array and the real-time return value of the sensor.
  • the type of the action; the mobile terminal is adjusted up and down according to the type of the gesture action, and the change of the gesture action is recognized by the sensor array, thereby increasing or decreasing the adjustment of the mobile terminal, which is simple and easy, and improves the user experience.

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Abstract

一种移动终端及其增减调节方法及装置、存储介质,属于移动通讯技术领域,所述方法包括步骤:检测到预设的传感器阵列投影上空有手势动作(S10);获取所述传感器阵列中所有传感器的实时返回值(S20);根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型(S30);根据所述手势动作的类型对移动终端进行增减调节(S40),通过传感器阵列识别手势动作的变化,进而对移动终端进行增减调节。

Description

一种移动终端及其增减调节方法及装置、存储介质 技术领域
本发明涉及移动通讯技术领域,尤其涉及一种移动终端及其增减调节方法及装置、存储介质。
背景技术
在电子设备上的比如声音、亮度、尺寸、半径等增大减小操作,当前主要有实体按键、屏幕触摸等方式实现。
实体按键结构较为复杂且影响美观。
屏幕触摸需要调用菜单,较为繁琐。
发明内容
本发明实施例的主要目的在于提出一种移动终端及其增减调节方法及装置、存储介质,旨在解决现有增减调节方式结构复杂、操作不便的技术问题。
为实现上述目的,本发明实施例的技术方案如下:
本发明实施例提供的一种移动终端的增减调节方法,所述方法包括步骤:
检测到预设的传感器阵列投影上空有手势动作;
获取所述传感器阵列中所有传感器的实时返回值;
根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
根据所述手势动作的类型对移动终端进行增减调节。
第二方面,本发明实施例还提出一种移动终端的增减调节装置,包括:
检测模块,配置为检测到预设的传感器阵列投影上空有手势动作;
获取模块,配置为获取所述传感器阵列中所有传感器的实时返回值;
判断模块,配置为根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
调节模块,配置为根据所述手势动作的类型对移动终端进行增减调节。
第三方面,本发明实施例提供一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令配置为执行以下步骤:
检测到预设的传感器阵列投影上空有手势动作;
获取所述传感器阵列中所有传感器的实时返回值;
根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
根据所述手势动作的类型对移动终端进行增减调节。
第四方面,本发明实施例提供一种移动终端,所述移动终端包括传感器和处理器,其中所述处理器配置为:
检测到预设的传感器阵列投影上空有手势动作;
获取所述传感器阵列中所有传感器的实时返回值;
根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
根据所述手势动作的类型对移动终端进行增减调节。
本发明提出的一种移动终端及其增减调节方法及装置、存储介质,所述方法包括步骤:检测到预设的传感器阵列投影上空有手势动作;获取所述传感器阵列中所有传感器的实时返回值;根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;根据所述手势动作的类型对移动终端进行增减调节,通过传感器阵列识别手势动作的变化,进 而对移动终端进行增减调节,简单易行,提高了用户体验。
附图说明
图1为实现本发明各个实施例一个可选的移动终端的硬件结构示意图;
图2为如图1所示的移动终端的无线通信系统示意图;
图3为本发明实施例一所提供的一种移动终端的增减调节方法流程图;
图4为本发明实施例一所提供的一种矩形传感器阵列示意图;
图5为本发明实施例一所提供的另一种矩形传感器阵列示意图;
图6为本发明实施例一所提供的另一种矩形传感器阵列示意图;
图7为本发明实施例一所提供的另一种矩形传感器阵列示意图;
图8为本发明实施例一所提供的另一种矩形传感器阵列示意图;
图9为本发明实施例一所提供的另一种矩形传感器阵列示意图;
图10为本发明实施例一所提供的另一种矩形传感器阵列示意图;
图11为本发明实施例一所提供的一种三角形传感器阵列示意图;
图12为本发明实施例一所提供的另一种三角形传感器阵列示意图;
图13为本发明实施例一所提供的一种多传感器阵列示意图;
图14为本发明实施例二所提供的一种移动终端的增减调节装置示范性结构框图;
图15为本发明实施例三所提供的一种移动终端的增减调节装置示范性结构框图;
图16为本发明实施例四所提供的一种移动终端的增减调节装置示范性结构框图;
图17为本发明实施例五所提供的一种移动终端的增减调节装置示范性结构框图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一 步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
现在将参考附图描述实现本发明各个实施例的移动终端。在后续的描述中,使用用于表示元件的诸如模块、部件或单元的后缀仅为了有利于本发明的说明,其本身并没有特定的意义。因此,模块与部件可以混合地使用。
移动终端可以以各种形式来实施。例如,本发明中描述的终端可以包括诸如移动电话、智能电话、笔记本电脑、数字广播接收器、PDA(个人数字助理)、PAD(平板电脑)、PMP(便携式多媒体播放器)、导航装置等等的移动终端以及诸如数字TV、台式计算机等等的固定终端。下面,假设终端是移动终端。然而,本领域技术人员将理解的是,除了特别用于移动目的的元件之外,根据本发明的实施方式的构造也能够应用于固定类型的终端。
图1为实现本发明各个实施例的移动终端的硬件结构示意。
移动终端100可以包括无线通信单元110、A/V(音频/视频)输入单元120、用户输入单元130、感测单元140、输出单元150、存储器160、接口单元170、控制器180和电源单元190等等。图1示出了具有各种组件的移动终端,但是应理解的是,并不要求实施所有示出的组件。可以替代地实施更多或更少的组件。将在下面详细描述移动终端的元件。
无线通信单元110通常包括一个或多个组件,其允许移动终端100与无线通信系统或网络之间的无线电通信。例如,无线通信单元可以包括移动通信模块112、无线互联网模块113、短程通信模块114中的至少一个。
移动通信模块112将无线电信号发送到基站(例如,接入点、节点B 等等)、外部终端以及服务器中的至少一个和/或从其接收无线电信号。这样的无线电信号可以包括语音通话信号、视频通话信号、或者根据文本和/或多媒体消息发送和/或接收的各种类型的数据。
无线互联网模块113支持移动终端的无线互联网接入。该模块可以内部或外部地耦接到终端。该模块所涉及的无线互联网接入技术可以包括WLAN(无线LAN)(Wi-Fi)、Wibro(无线宽带)、Wimax(全球微波互联接入)、HSDPA(高速下行链路分组接入)等等。
短程通信模块114是用于支持短程通信的模块。短程通信技术的一些示例包括蓝牙TM、射频识别(RFID)、红外数据协会(IrDA)、超宽带(UWB)、紫蜂TM等等。
A/V输入单元120用于接收音频或视频信号。A/V输入单元120可以包括相机121和麦克风1220,相机121对在视频捕获模式或图像捕获模式中由图像捕获装置获得的静态图片或视频的图像数据进行处理。处理后的图像帧可以显示在显示单元151上。经相机121处理后的图像帧可以存储在存储器160(或其它存储介质)中或者经由无线通信单元110进行发送,可以根据移动终端的构造提供两个或更多相机1210。麦克风122可以在电话通话模式、记录模式、语音识别模式等等运行模式中经由麦克风接收声音(音频数据),并且能够将这样的声音处理为音频数据。处理后的音频(语音)数据可以在电话通话模式的情况下转换为可经由移动通信模块112发送到移动通信基站的格式输出。麦克风122可以实施各种类型的噪声消除(或抑制)算法以消除(或抑制)在接收和发送音频信号的过程中产生的噪声或者干扰。
用户输入单元130可以根据用户输入的命令生成键输入数据以控制移动终端的各种操作。用户输入单元130允许用户输入各种类型的信息,并且可以包括键盘、锅仔片、触摸板(例如,检测由于被接触而导致的电阻、 压力、电容等等的变化的触敏组件)、滚轮、摇杆等等。特别地,当触摸板以层的形式叠加在显示单元151上时,可以形成触摸屏。
感测单元140检测移动终端100的当前状态,(例如,移动终端100的打开或关闭状态)、移动终端100的位置、用户对于移动终端100的接触(即,触摸输入)的有无、移动终端100的取向、移动终端100的加速或减速移动和方向等等,并且生成用于控制移动终端100的操作的命令或信号。例如,当移动终端100实施为滑动型移动电话时,感测单元140可以感测该滑动型电话是打开还是关闭。另外,感测单元140能够检测电源单元190是否提供电力或者接口单元170是否与外部装置耦接。
接口单元170用作至少一个外部装置与移动终端100连接可以通过的接口。例如,外部装置可以包括有线或无线头戴式耳机端口、外部电源(或电池充电器)端口、有线或无线数据端口、存储卡端口、用于连接具有识别模块的装置的端口、音频输入/输出(I/O)端口、视频I/O端口、耳机端口等等。识别模块可以是存储用于验证用户使用移动终端100的各种信息并且可以包括用户识别模块(UIM)、客户识别模块(SIM)、通用客户识别模块(USIM)等等。另外,具有识别模块的装置(下面称为识别装置)可以采取智能卡的形式,因此,识别装置可以经由端口或其它连接装置与移动终端100连接。接口单元170可以用于接收来自外部装置的输入(例如,数据信息、电力等等)并且将接收到的输入传输到移动终端100内的一个或多个元件或者可以用于在移动终端和外部装置之间传输数据。
另外,当移动终端100与外部底座连接时,接口单元170可以用作允许通过其将电力从底座提供到移动终端100的路径或者可以用作允许从底座输入的各种命令信号通过其传输到移动终端的路径。从底座输入的各种命令信号或电力可以用作用于识别移动终端是否准确地安装在底座上的信号。输出单元150被构造为以视觉、音频和/或触觉方式提供输出信号(例 如,音频信号、视频信号、警报信号、振动信号等等)。输出单元150可以包括显示单元151、音频输出模块152等等。
显示单元151可以显示在移动终端100中处理的信息。例如,当移动终端100处于电话通话模式时,显示单元151可以显示与通话或其它通信(例如,文本消息收发、多媒体文件下载等等)相关的用户界面(UI)或图形用户界面(GUI)。当移动终端100处于视频通话模式或者图像捕获模式时,显示单元151可以显示捕获的图像和/或接收的图像、示出视频或图像以及相关功能的UI或GUI等等。
同时,当显示单元151和触摸板以层的形式彼此叠加以形成触摸屏时,显示单元151可以用作输入装置和输出装置。显示单元151可以包括液晶显示器(LCD)、薄膜晶体管LCD(TFT-LCD)、有机发光二极管(OLED)显示器、柔性显示器、三维(3D)显示器等等中的至少一种。这些显示器中的一些可以被构造为透明状以允许用户从外部观看,这可以称为透明显示器,典型的透明显示器可以例如为TOLED(透明有机发光二极管)显示器等等。根据特定想要的实施方式,移动终端100可以包括两个或更多显示单元(或其它显示装置),例如,移动终端可以包括外部显示单元(未示出)和内部显示单元(未示出)。触摸屏可用于检测触摸输入压力以及触摸输入位置和触摸输入面积。
音频输出模块152可以在移动终端处于呼叫信号接收模式、通话模式、记录模式、语音识别模式、广播接收模式等等模式下时,将无线通信单元110接收的或者在存储器160中存储的音频数据转换音频信号并且输出为声音。而且,音频输出模块152可以提供与移动终端100执行的特定功能相关的音频输出(例如,呼叫信号接收声音、消息接收声音等等)。音频输出模块152可以包括扬声器、蜂鸣器等等。
存储器160可以存储由控制器180执行的处理和控制操作的软件程序 等等,或者可以暂时地存储己经输出或将要输出的数据(例如,电话簿、消息、静态图像、视频等等)。而且,存储器160可以存储关于当触摸施加到触摸屏时输出的各种方式的振动和音频信号的数据。
存储器160可以包括至少一种类型的存储介质,所述存储介质包括闪存、硬盘、多媒体卡、卡型存储器(例如,SD或DX存储器等等)、随机访问存储器(RAM)、静态随机访问存储器(SRAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、可编程只读存储器(PROM)、磁性存储器、磁盘、光盘等等。而且,移动终端100可以与通过网络连接执行存储器160的存储功能的网络存储装置协作。
控制器180通常控制移动终端的总体操作。例如,控制器180执行与语音通话、数据通信、视频通话等等相关的控制和处理。另外,控制器180可以包括用于再现(或回放)多媒体数据的多媒体模块1810,多媒体模块1810可以构造在控制器180内,或者可以构造为与控制器180分离。控制器180可以执行模式识别处理,以将在触摸屏上执行的手写输入或者图片绘制输入识别为字符或图像。
电源单元190在控制器180的控制下接收外部电力或内部电力并且提供操作各元件和组件所需的适当的电力。
这里描述的各种实施方式可以以使用例如计算机软件、硬件或其任何组合的计算机可读介质来实施。对于硬件实施,这里描述的实施方式可以通过使用特定用途集成电路(ASIC)、数字信号处理器(DSP)、数字信号处理装置(DSPD)、可编程逻辑装置(PLD)、现场可编程门阵列(FPGA)、处理器、控制器、微控制器、微处理器、被设计为执行这里描述的功能的电子单元中的至少一种来实施,在一些情况下,这样的实施方式可以在控制器180中实施。对于软件实施,诸如过程或功能的实施方式可以与允许执行至少一种功能或操作的单独的软件模块来实施。软件代码可以由以任 何适当的编程语言编写的软件应用程序(或程序)来实施,软件代码可以存储在存储器160中并且由控制器180执行。
至此,己经按照其功能描述了移动终端。下面,为了简要起见,将描述诸如折叠型、直板型、摆动型、滑动型移动终端等等的各种类型的移动终端中的滑动型移动终端作为示例。因此,本发明能够应用于任何类型的移动终端,并且不限于滑动型移动终端。
如图1中所示的移动终端100可以被构造为利用经由帧或分组发送数据的诸如有线和无线通信系统以及基于卫星的通信系统来操作。
现在将参考图2描述其中根据本发明的移动终端能够操作的通信系统。
这样的通信系统可以使用不同的空中接口和/或物理层。例如,由通信系统使用的空中接口包括例如频分多址(FDMA)、时分多址(TDMA)、码分多址(CDMA)和通用移动通信系统(UMTS)(特别地,长期演进(LTE))、全球移动通信系统(GSM)等等。作为非限制性示例,下面的描述涉及CDMA通信系统,但是这样的教导同样适用于其它类型的系统。
参考图2,CDMA无线通信系统可以包括多个移动终端100、多个基站(BS)270、基站控制器(BSC)275和移动交换中心(MSC)280。MSC280被构造为与公共电话交换网络(PSTN)290形成接口。MSC280还被构造为与可以经由回程线路耦接到基站270的BSC275形成接口。回程线路可以根据若干己知的接口中的任一种来构造,所述接口包括例如E1/T1、ATM,IP、PPP、帧中继、HDSL、ADSL或xDSL。将理解的是,如图2中所示的系统可以包括多个BSC2750。
每个BS270可以服务一个或多个分区(或区域),由多向天线或指向特定方向的天线覆盖的每个分区放射状地远离BS270。或者,每个分区可以由用于分集接收的两个或更多天线覆盖。每个BS270可以被构造为支持多个频率分配,并且每个频率分配具有特定频谱(例如,1.25MHz,5MHz等等)。
分区与频率分配的交叉可以被称为CDMA信道。BS270也可以被称为基站收发器子系统(BTS)或者其它等效术语。在这样的情况下,基站可以用于笼统地表示单个BSC275和至少一个BS270。基站也可以被称为蜂窝站。或者,特定BS270的各分区可以被称为多个蜂窝站。
如图2中所示,广播发射器(BT)295将广播信号发送给在系统内操作的移动终端100。如图1中所示的广播接收模块111被设置在移动终端100处以接收由BT295发送的广播信号。在图2中,示出了几个全球定位系统(GPS)卫星300。卫星300帮助定位多个移动终端100中的至少一个。
在图2中,描绘了多个卫星300,但是理解的是,可以利用任何数目的卫星获得有用的定位信息。如图1中所示的GPS模块115通常被构造为与卫星300配合以获得想要的定位信息。替代GPS跟踪技术或者在GPS跟踪技术之外,可以使用可以跟踪移动终端的位置的其它技术。另外,至少一个GPS卫星300可以选择性地或者额外地处理卫星DMB传输。
作为无线通信系统的一个典型操作,BS270接收来自各种移动终端100的反向链路信号。移动终端100通常参与通话、消息收发和其它类型的通信。特定基站270接收的每个反向链路信号被在特定BS270内进行处理。获得的数据被转发给相关的BSC275。BSC提供通话资源分配和包括BS270之间的软切换过程的协调的移动管理功能。BSC275还将接收到的数据路由到MSC280,其提供用于与PSTN290形成接口的额外的路由服务。类似地,PSTN290与MSC280形成接口,MSC与BSC275形成接口,并且BSC275相应地控制BS270以将正向链路信号发送到移动终端100。
基于上述移动终端硬件结构以及通信系统,提出本发明方法各个实施例。
实施例一
如图3所示,本发明第一实施例提出一种移动终端的增减调节方法, 所述方法包括步骤:
S10、检测到预设的传感器阵列投影上空有手势动作;
S20、获取所述传感器阵列中所有传感器的实时返回值;
S30、根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
S40、根据所述手势动作的类型对移动终端进行增减调节。
在本实施例中,所述传感器阵列至于移动终端的中框侧面,通过多个方向摆放传感器阵列识别手势动作的变化,进而对移动终端进行增减调节,简单易行,提高了用户体验。
在本实施例中,所述手势动作的类型包括:增量手势动作和减量手势动作;其中,所述增量手势动作包括:顺时针旋拧动作、上滑动作和上部按压动作,所述减量手势动作包括:逆时针旋拧动作、下滑动作和下部按压动作,。
如图4所示,在本实施例中,当所述传感器阵列的排列方式为矩形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
将矩形传感器阵列中的传感器标记为:左上传感器、右上传感器、左下传感器和右下传感器,其排列方式如图4所示,其中A表示左上传感器,B表示右上传感器,C表示左下传感器,D表示右下传感器;
如图5所示,当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈减弱趋势,右上传感器和左下传感器呈增强趋势时,判定所述矩形传感器阵列投影上空的手势动作为顺时针旋拧动作,此时系统将对控制目标(声音/亮度/尺寸…)做增量处理;
如图6所示,当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈增强趋势,右上传感器和左下传感器呈减弱趋势 时,判定所述矩形传感器阵列投影上空的手势动作为逆时针旋拧动作,此时系统将对控制目标(声音/亮度/尺寸…)做减小处理;
如图7所示,当根据所述传感器的实时返回值计算得到:左下传感器和右下传感器的返回值呈先增强再减弱趋势,继而左上传感器和右上传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为上滑动作,此时系统将对控制目标(声音/亮度/尺寸…)做增量处理;
如图8所示,当根据所述传感器的实时返回值计算得到:左上传感器和右上传感器的返回值呈先增强再减弱趋势,继而左下传感器和右下传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为下滑动作,此时系统将对控制目标(声音/亮度/尺寸…)做减小处理;
如图9所示,当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远大于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为上部按压动作,当上部按压动作值大于预设的第一按压阈值时,此时系统将对控制目标(声音/亮度/尺寸…)做增量处理;
如图10所示,当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远小于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为下部按压动作,当下部按压动作值大于预设的第二按压阈值时,此时系统将对控制目标(声音/亮度/尺寸…)做减小处理。
如图11所示,在本实施例中,当所述传感器阵列的排列方式为三角形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
将三角形传感器阵列中的传感器按顺时针依次标记为:第一传感器、第二传感器和第三传感器,其排列方式如图11所示,其中A表示第一传感器,B表示第二传感器,C表示第三传感器;
当根据所述传感器的实时返回值计算得到:第一传感器、第二传感器和第三传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为顺时针旋拧动作,此时系统将对控制目标(声音/亮度/尺寸…)做增量处理;
如图12所示,当根据所述传感器的实时返回值计算得到:第一传感器、第三传感器和第二传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为逆时针旋拧动作,此时系统将对控制目标(声音/亮度/尺寸…)做减小处理。
如图13所示,在本实施例中,当所述传感器阵列的数量大于等于5时,根据所述传感器的实时返回值的变化大小,从所述传感器阵列中选出3个或4个变化最大的传感器作为有效传感器,并根据有效传感器的排列方式为矩形或三角形来判定所述手势动作的类型,在图13中,由传感器的实时返回值可知,传感器C、传感器D和传感器E的返回值变化较大,而传感器A和传感器B的返回值一直较弱,故选取传感器C、传感器D和传感器E作为有效传感器,并根据其排列方式,采用三角形阵列来判定手势动作类型,方法如上,兹不赘述。
作为另一种实施例,所述传感器阵列的排列方式还可以为圆形或其他形状,都可以通过传感器阵列的排列方式的形状特性及所述传感器的实时返回值的变化趋势来判断导致这种变化趋势的手势动作的类型,从而对移动终端进行增减调节,这些都在本发明的保护范围之内。
实施例二
如图14所述,在本实施例中,一种移动终端的增减调节装置,包括:
检测模块10,配置为检测到预设的传感器阵列投影上空有手势动作;
获取模块20,配置为获取所述传感器阵列中所有传感器的实时返回值;
判断模块30,配置为根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
调节模块40,配置为根据所述手势动作的类型对移动终端进行增减调节。
在本实施例中,所述传感器阵列至于移动终端的中框侧面,通过多个方向摆放传感器阵列识别手势动作的变化,进而对移动终端进行增减调节,简单易行,提高了用户体验。
在本实施例中,所述手势动作的类型包括:增量手势动作和减量手势动作;其中,所述增量手势动作包括:顺时针旋拧动作、上滑动作和上部按压动作,所述减量手势动作包括:逆时针旋拧动作、下滑动作和下部按压动作。
实施例三
如图15所示,在本实施例中,所述判断模块30包括:矩形判断单元31,配置为:
将矩形传感器阵列中的传感器标记为:左上传感器、右上传感器、左下传感器和右下传感器;
当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈减弱趋势,右上传感器和左下传感器呈增强趋势时,判定所述矩形传感器阵列投影上空的手势动作为顺时针旋拧动作;
当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈增强趋势,右上传感器和左下传感器呈减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为逆时针旋拧动作;
当根据所述传感器的实时返回值计算得到:左下传感器和右下传感器 的返回值呈先增强再减弱趋势,继而左上传感器和右上传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为上滑动作;
当根据所述传感器的实时返回值计算得到:左上传感器和右上传感器的返回值呈先增强再减弱趋势,继而左下传感器和右下传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为下滑动作;
当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远大于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为上部按压动作;
当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远小于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为下部按压动作。
实施例四
如图16所示,在本实施例中,所述判断模块30还包括:三角形判断单元32,配置为:
将三角形传感器阵列中的传感器按顺时针依次标记为:第一传感器、第二传感器和第三传感器;
当根据所述传感器的实时返回值计算得到:第一传感器、第二传感器和第三传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为顺时针旋拧动作;
当根据所述传感器的实时返回值计算得到:第一传感器、第三传感器和第二传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为逆时针旋拧动作。
实施例五
如图17所示,在本实施例中,所述判断模块30还包括:选择判断单元33,配置为:当所述传感器阵列的数量大于等于5时,根据所述传感器的实时返回值的变化大小,从所述传感器阵列中选出3个或4个变化最大的传感器作为有效传感器,并根据有效传感器的排列方式为矩形或三角形来判定所述手势动作的类型。
本发明实施例中移动终端的增减调节装置中所包括的各模块,以及各模块所包括的各单元,都可以通过移动终端中的处理器来实现;当然也可通过的逻辑电路实现;在实施例的过程中,处理器可以为中央处理器(CPU)、微处理器(MPU)、数字信号处理器(DSP)或现场可编程门阵列(FPGA)等。
需要说明的是,本发明实施例中,如果以软件功能模块的形式实现上述的移动终端的增减调节方法,并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明实施例的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机、服务器、或者网络设备等)执行本发明各个实施例所述方法的全部或部分。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read Only Memory)、磁碟或者光盘等各种可以存储程序代码的介质。这样,本发明实施例不限制于任何特定的硬件和软件结合。
相应地,本发明实施例再提供一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,该计算机可执行指令用于执行本发明实施例中移动终端的增减调节方法。
基于前述的实施例,本发明实施例再提供一种移动终端,所述移动 终端包括传感器和处理器,其中所述处理器配置为:
检测到预设的传感器阵列投影上空有手势动作;
获取所述传感器阵列中所有传感器的实时返回值;
根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
根据所述手势动作的类型对移动终端进行增减调节。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本发明各个实施例所述的方法。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
工业实用性
本发明实施例中,检测到预设的传感器阵列投影上空有手势动作;获取所述传感器阵列中所有传感器的实时返回值;根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;根据所述手势动作的类型对移动终端进行增减调节,通过传感器阵列识别手势动作的变化,进而对移动终端进行增减调节,简单易行,提高了用户体验。

Claims (20)

  1. 一种移动终端的增减调节方法,所述方法包括步骤:
    检测到预设的传感器阵列投影上空有手势动作;
    获取所述传感器阵列中所有传感器的实时返回值;
    根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
    根据所述手势动作的类型对移动终端进行增减调节。
  2. 根据权利要求1所述的方法,其中,所述手势动作的类型包括:增量手势动作和减量手势动作;其中,所述增量手势动作包括:顺时针旋拧动作、上滑动作和上部按压动作,所述减量手势动作包括:逆时针旋拧动作、下滑动作和下部按压动作。
  3. 根据权利要求2所述的方法,其中,当所述传感器阵列的排列方式为矩形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
    将矩形传感器阵列中的传感器标记为:左上传感器、右上传感器、左下传感器和右下传感器;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈减弱趋势,右上传感器和左下传感器呈增强趋势时,判定所述矩形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈增强趋势,右上传感器和左下传感器呈减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为逆时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左下传感器和右下传感器的返回值呈先增强再减弱趋势,继而左上传感器和右上传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为上 滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右上传感器的返回值呈先增强再减弱趋势,继而左下传感器和右下传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为下滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远大于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为上部按压动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远小于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为下部按压动作。
  4. 根据权利要求2所述的方法,其中,当所述传感器阵列的排列方式为三角形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
    将三角形传感器阵列中的传感器按顺时针依次标记为:第一传感器、第二传感器和第三传感器;
    当根据所述传感器的实时返回值计算得到:第一传感器、第二传感器和第三传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:第一传感器、第三传感器和第二传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为逆时针旋拧动作。
  5. 根据权利要求3或4所述的方法,其中,当所述传感器阵列的数 量大于等于5时,根据所述传感器的实时返回值的变化大小,从所述传感器阵列中选出3个或4个变化最大的传感器作为有效传感器,并根据有效传感器的排列方式为矩形或三角形来判定所述手势动作的类型。
  6. 一种移动终端的增减调节装置,包括:
    检测模块,配置为检测到预设的传感器阵列投影上空有手势动作;
    获取模块,配置为获取所述传感器阵列中所有传感器的实时返回值;
    判断模块,配置为根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
    调节模块,配置为根据所述手势动作的类型对移动终端进行增减调节。
  7. 根据权利要求6所述的装置,其中,所述手势动作的类型包括:增量手势动作和减量手势动作;其中,所述增量手势动作包括:顺时针旋拧动作、上滑动作和上部按压动作,所述减量手势动作包括:逆时针旋拧动作、下滑动作和下部按压动作。
  8. 根据权利要求7所述的装置,其中,所述判断模块包括:矩形判断单元,配置为:
    将矩形传感器阵列中的传感器标记为:左上传感器、右上传感器、左下传感器和右下传感器;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈减弱趋势,右上传感器和左下传感器呈增强趋势时,判定所述矩形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈增强趋势,右上传感器和左下传感器呈减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为逆时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左下传感器和右下传感 器的返回值呈先增强再减弱趋势,继而左上传感器和右上传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为上滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右上传感器的返回值呈先增强再减弱趋势,继而左下传感器和右下传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为下滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远大于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为上部按压动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远小于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为下部按压动作。
  9. 根据权利要求7所述的装置,其中,所述判断模块还包括:三角形形判断单元,配置为:
    将三角形传感器阵列中的传感器按顺时针依次标记为:第一传感器、第二传感器和第三传感器;
    当根据所述传感器的实时返回值计算得到:第一传感器、第二传感器和第三传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:第一传感器、第三传感器和第二传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为逆时针旋拧动作。
  10. 根据权利要求8或9所述的装置,其中,所述判断模块还包括:选择判断单元,配置为:
    当所述传感器阵列的数量大于等于5时,根据所述传感器的实时返回值的变化大小,从所述传感器阵列中选出3个或4个变化最大的传感器作为有效传感器,并根据有效传感器的排列方式为矩形或三角形来判定所述手势动作的类型。
  11. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,所述计算机可执行指令配置为执行以下步骤:
    检测到预设的传感器阵列投影上空有手势动作;
    获取所述传感器阵列中所有传感器的实时返回值;
    根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
    根据所述手势动作的类型对移动终端进行增减调节。
  12. 根据权利要求11所述的存储介质,其中,所述手势动作的类型包括:增量手势动作和减量手势动作;其中,所述增量手势动作包括:顺时针旋拧动作、上滑动作和上部按压动作,所述减量手势动作包括:逆时针旋拧动作、下滑动作和下部按压动作。
  13. 根据权利要求12所述的存储介质,其中,当所述传感器阵列的排列方式为矩形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
    将矩形传感器阵列中的传感器标记为:左上传感器、右上传感器、左下传感器和右下传感器;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈减弱趋势,右上传感器和左下传感器呈增强趋势时,判定所述矩形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈增强趋势,右上传感器和左下传感器呈减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为逆时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左下传感器和右下传感器的返回值呈先增强再减弱趋势,继而左上传感器和右上传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为上滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右上传感器的返回值呈先增强再减弱趋势,继而左下传感器和右下传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为下滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远大于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为上部按压动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远小于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为下部按压动作。
  14. 根据权利要求12所述的存储介质,其中,当所述传感器阵列的排列方式为三角形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
    将三角形传感器阵列中的传感器按顺时针依次标记为:第一传感器、第二传感器和第三传感器;
    当根据所述传感器的实时返回值计算得到:第一传感器、第二传感 器和第三传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:第一传感器、第三传感器和第二传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为逆时针旋拧动作。
  15. 根据权利要求13或14所述的一种存储介质,其中,所述计算机可执行指令配置为执行以下步骤:当所述传感器阵列的数量大于等于5时,根据所述传感器的实时返回值的变化大小,从所述传感器阵列中选出3个或4个变化最大的传感器作为有效传感器,并根据有效传感器的排列方式为矩形或三角形来判定所述手势动作的类型。
  16. 一种移动终端,所述移动终端包括传感器和处理器,其中所述处理器配置为:
    检测到预设的传感器阵列投影上空有手势动作;
    获取所述传感器阵列中所有传感器的实时返回值;
    根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型;
    根据所述手势动作的类型对移动终端进行增减调节。
  17. 根据权利要求16所述的移动终端,其中,所述手势动作的类型包括:增量手势动作和减量手势动作;其中,所述增量手势动作包括:顺时针旋拧动作、上滑动作和上部按压动作,所述减量手势动作包括:逆时针旋拧动作、下滑动作和下部按压动作。
  18. 根据权利要求17所述的移动终端,其中,当所述传感器阵列的排列方式为矩形排列时,所述根据传感器阵列的排列方式及所述传感器的实时返回值判断所述手势动作的类型包括:
    将矩形传感器阵列中的传感器标记为:左上传感器、右上传感器、 左下传感器和右下传感器;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈减弱趋势,右上传感器和左下传感器呈增强趋势时,判定所述矩形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右下传感器的返回值呈增强趋势,右上传感器和左下传感器呈减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为逆时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:左下传感器和右下传感器的返回值呈先增强再减弱趋势,继而左上传感器和右上传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为上滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器和右上传感器的返回值呈先增强再减弱趋势,继而左下传感器和右下传感器也呈先增强再减弱趋势时,判定所述矩形传感器阵列投影上空的手势动作为下滑动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远大于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为上部按压动作;
    当根据所述传感器的实时返回值计算得到:左上传感器、右上传感器、左下传感器和右下传感器的返回值同时呈增强趋势,且左上传感器和右上传感器的返回值远小于左下传感器和右下传感器的返回值时,判定所述矩形传感器阵列投影上空的手势动作为下部按压动作。
  19. 根据权利要求17所述的移动终端,其中,当所述传感器阵列的排列方式为三角形排列时,所述根据传感器阵列的排列方式及所述传感 器的实时返回值判断所述手势动作的类型包括:
    将三角形传感器阵列中的传感器按顺时针依次标记为:第一传感器、第二传感器和第三传感器;
    当根据所述传感器的实时返回值计算得到:第一传感器、第二传感器和第三传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为顺时针旋拧动作;
    当根据所述传感器的实时返回值计算得到:第一传感器、第三传感器和第二传感器的返回值依次呈先增强再减弱并循环时,判定所述三角形传感器阵列投影上空的手势动作为逆时针旋拧动作。
  20. 根据权利要求18或19所述的移动终端,其中,所述处理器,还配置为:当所述传感器阵列的数量大于等于5时,根据所述传感器的实时返回值的变化大小,从所述传感器阵列中选出3个或4个变化最大的传感器作为有效传感器,并根据有效传感器的排列方式为矩形或三角形来判定所述手势动作的类型。
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