WO2018120895A1 - 一种智能眼镜 - Google Patents

一种智能眼镜 Download PDF

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Publication number
WO2018120895A1
WO2018120895A1 PCT/CN2017/099796 CN2017099796W WO2018120895A1 WO 2018120895 A1 WO2018120895 A1 WO 2018120895A1 CN 2017099796 W CN2017099796 W CN 2017099796W WO 2018120895 A1 WO2018120895 A1 WO 2018120895A1
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WO
WIPO (PCT)
Prior art keywords
video
audio
terminal device
information
uplink
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PCT/CN2017/099796
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English (en)
French (fr)
Inventor
白欲立
Original Assignee
联想新视界(北京)科技有限公司
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Publication of WO2018120895A1 publication Critical patent/WO2018120895A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/414Specialised client platforms, e.g. receiver in car or embedded in a mobile appliance
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/414Specialised client platforms, e.g. receiver in car or embedded in a mobile appliance
    • H04N21/41407Specialised client platforms, e.g. receiver in car or embedded in a mobile appliance embedded in a portable device, e.g. video client on a mobile phone, PDA, laptop
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/10Adaptations for transmission by electrical cable
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B2027/0178Eyeglass type
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof

Definitions

  • the present invention relates to the field of smart devices, and in particular to smart glasses.
  • Embodiments of the present invention provide a smart glasses that can provide power through an external terminal device and provide data operation processing.
  • the embodiment of the present invention provides the following technical solutions:
  • a smart glasses comprising: a lens body and a terminal device connected to the lens body through a connection cable; wherein the glasses body is configured to transmit the acquired video information and audio information to the terminal device for optimization processing, And receiving the optimized processed video information and audio information from the terminal device for display and playback.
  • connection cable comprises: a video uplink, a video downlink, a power transmission line, an audio uplink, and an audio downlink.
  • the glasses body comprises: an audio and video acquisition device configured to acquire video information and audio information, and transmit video information and audio information to the terminal device through the video uplink and the audio uplink;
  • An audio and video playing module configured to output audio information and video information that is optimized and processed by the terminal device and transmitted by the video downlink and the audio downlink;
  • a battery assembly configured to be connected to the terminal device through the power transmission line to provide power through the terminal device.
  • the glasses body further includes a data processing device respectively connected to the audio and video acquisition device and the audio and video playback module.
  • the data processing device is configured to convert the video information acquired by the audio-video acquiring device into a serial digital signal form, and transmit the video information in the form of the serial digital signal to the terminal device through the video uplink And configured to display the optimized processed video information transmitted by the video downlink on the audio and video playback module.
  • said data processing device is further configured to convert video information transmitted by said video down line into a digital video signal form and to control said audio and video playback module to perform a display operation.
  • the terminal device comprises:
  • a power supply module configured to be connected to the glasses body through the power transmission line to provide power to the glasses body and the terminal device;
  • An image processing module configured to optimize video information transmitted by the video uplink, the optimization process including converting the video information into a parallel digital signal form, and performing video information in the form of the parallel digital signal Compressing processing; and configured to transmit the compressed video information back to the glasses body;
  • An audio processing module configured to receive audio information transmitted by the audio uplink, analyze and process the audio information, and configured to transmit an audio control signal and audio information to be output through an audio downlink.
  • the terminal device further includes a denoising module configured to perform denoising processing on the video information transmitted by the video uplink, and the denoised processed video information is transmitted to the image processing module for optimization processing.
  • a denoising module configured to perform denoising processing on the video information transmitted by the video uplink, and the denoised processed video information is transmitted to the image processing module for optimization processing.
  • the glasses body is provided with a Type C interface
  • the terminal device is provided with a MicroB interface
  • the connection cable is configured as a USB 3.1 type cable, and is respectively connected to the Type C interface and the MicroB interface.
  • the audiovisual acquisition device comprises a camera and a radio device
  • the audio and video playback module comprises a display screen and a speaker device.
  • the power supply module includes at least one battery pack and a power conversion module coupled to the external power source, the power conversion module converting power of the external power source to DC power for supply to the battery pack.
  • the embodiment of the invention has the following technical effects:
  • the optical body and the terminal device are connected by using a wired connection, and the video information and the audio information acquired by the optical device are optimized by the terminal device, and the supplementary power is also provided to the optical device by the terminal device, thereby It can ensure the endurance of the lens body while ensuring the lightness of the lens body.
  • FIG. 1 is a schematic structural diagram of a smart glasses according to an embodiment of the present invention.
  • connection cable 2 is a schematic structural diagram of a connection cable according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a lens body according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a terminal device according to an embodiment of the present invention.
  • the embodiment of the invention provides a smart glasses, which comprises a wired body and a terminal device, which have the advantages of long battery life, fast data processing speed and light weight of the glasses.
  • FIG. 1 is a schematic structural diagram of a smart glasses according to an embodiment of the present invention.
  • the smart glasses in the embodiment of the present invention include a glasses body 100 and a terminal device 200, and the glasses body 100 and the terminal device 200 are connected by connecting cables 200.
  • Video information, audio information, and corresponding control information are transmitted through a connection cable.
  • the glasses body 100 in this embodiment can acquire video information and audio information, and can transmit the acquired video information and video information to the terminal device 200 for optimization processing, and receive the optimized processed video information and audio from the terminal device 200.
  • Information is displayed and played.
  • the terminal device 200 in the embodiment of the present invention may be configured as a separate data processor for providing operation processing of supplemental power and audio and video to the glasses body 100.
  • the terminal device 200 may include one or more electronic devices connected to the glasses body 100.
  • the smart device may include a terminal connection device connected to the glasses body, and a device connected to the terminal. a connected electronic device, the terminal connecting device can be configured to be capable of accommodating or mounting a connecting device of the electronic device, and the terminal connecting device and the electronic device can process the video and audio data acquired by the optical lens body to reduce the optical body of the optical lens Size; at the same time, the terminal connection device has a built-in power supply module to provide power supplement for the glasses body.
  • the electronic device can be installed in the terminal connection device, the effect of convenient carrying can be realized.
  • the electronic device receives the video data information transmitted by the electronic device by connecting with the terminal connection device, or sends the processed video data information that needs to be played to the smart terminal connection device. That is, the electronic device side can also further edit the video data information.
  • connection cable 300 which can serve as a transmission cable for audio and video information, and in order to minimize the number of connection lines in the connection cable 300, the present invention
  • the connection cable in the embodiment adopts the signal transmission cable structure as shown in FIG. 2, that is, FIG. 2 is a schematic diagram of a signal transmission structure of the connection cable in the embodiment of the present invention.
  • the connection cable 300 in the embodiment of the present invention may include a video uplink 301, a video downlink 302, a power transmission line 303, an audio uplink 304, and an audio downlink 305.
  • the video uplink 301 is used to transmit the video information acquired by the optical device 100 to the terminal device 200
  • the video downlink 302 is used to transmit the video information optimized by the terminal device 200 to the optical lens body 100
  • the audio uplink 304 is used to transmit the audio information acquired by the glasses body 100 to the terminal device 200
  • the audio downlink 305 is used to transmit the audio information optimized by the terminal device 200 to the glasses body 100.
  • the power transmission line 303 is for outputting power in the terminal device 200 to the glasses body 100, thereby charging and supplying power to the glasses body 100.
  • connection cable 300 in the embodiment of the present invention may adopt a USB 3.1 cable, and the configurations of each line are as follows:
  • the power transmission line 303 includes two lines, one of which is a +5V power line and the other is a ground line;
  • the video uplink 301 includes two high-speed signal differential pair lines of TX+ and TX-;
  • the video downlink 302 includes: RX+ and RX - Two high speed signal differential pair lines;
  • the audio uplink 304 and the audio downlink 305 comprise DP and DM2 lines, respectively, for transmitting audio signals and control signals.
  • the port of the optical fiber unit 100 connected to the connection cable 300 can be configured as a Type C interface
  • the port on the smart terminal 200 connected to the connection cable 300 can be configured as a MicroB interface
  • the MicroB interface has an anti-plug function.
  • the terminal device 200 in the embodiment of the present invention may include a terminal connection device connected to the glasses body 100 through the connection cable 300 and an electronic device installed on the terminal connection device, and the electronic device may be a portable mobile terminal. Such as mobile phones, tablets and other equipment.
  • the terminal connection device can further establish a data connection between the electronic device and the scope of the glasses. That is to say, the electronic device can also optimize the audio information and the video information transmitted by the glasses body, and the electronic device can also send the audio information and the video information to be displayed and played to the glasses body for display and playback.
  • FIG. 3 it is a schematic structural diagram of the optical fiber body in the embodiment of the present invention, wherein the optical lens body in the embodiment of the present invention may include: an audio and video acquisition module 101, an audio and video playback module 102, and a battery. Component 103.
  • the audio and video acquisition module 101 can acquire video information and audio information.
  • it can include a camera and a radio device (such as a microphone), or a radio device can be built in the camera, and has the functions of acquiring images and audio.
  • the audio and video acquisition device 101 can transmit the acquired video information to the terminal device 200 for processing via the video uplink 301.
  • the glasses body 100 may first convert the video information into a differential signal for transmission.
  • the audio and video acquisition device 101 can also transmit the acquired audio information to the terminal device through the audio uplink 304.
  • the glasses body 100 performs denoising processing on the audio information and then transmits the data through the audio uplink 304.
  • the audio and video playback module 102 is for playing audio and video, and the audio and video playback device may include a display screen and a speaker.
  • the display screen in the audio and video playback module 102 can be connected to the video downlink 302 to display the video information optimized by the terminal device 200;
  • the speaker in the audio and video playback module can be connected to the audio downlink 305 to output the audio information transmitted via the terminal device 200.
  • the audio information is preferably analyzed by a processing device to separately extract the control signal and the audio signal therein, and the speaker is controlled to output the audio signal according to the control signal.
  • the battery assembly 103 in the embodiment of the present invention may be connected to the terminal device 200 through the power transmission line 303, and the power supplement of the battery assembly 103 may be provided through the terminal device 200. That is, the battery assembly 103 can be constructed as a rechargeable battery assembly.
  • the glasses body 100 further includes a data processing device 104 connected to the audio and video acquisition module 102 and the audio and video playback module 102, respectively.
  • the data processing device 104 can obtain the video information acquired by the audio and video acquisition module 101.
  • the parallel digital signal form is converted into a serial digital signal form, and then operations such as denoising processing can be performed, and then the video information in the form of a serial digital signal is transmitted to the terminal device 200 through the video uplink 301; and the video downlink can be
  • the optimized processed video information transmitted by 302 is displayed on the audio and video playback module 102.
  • the data processing device 104 can convert the transmitted video information into a differential signal for transmission to increase anti-interference performance.
  • the data processing device 104 of the present invention may include a first conversion module, a second conversion module, and a third processing module, wherein the first conversion module is connected between the camera and the video uplink to output the high-definition camera in parallel.
  • the data signal is converted into a serial differential signal and sent to the RX+/RX-differential pair (video uplink) in the USB3.1 cable to realize parallel-to-serial conversion of the video signal, so that only two fewer lines are used.
  • the high-definition video data transmission can be realized, and the model of the first conversion module can be ds90ub913a.
  • the second conversion module is connected between the display screen and the video downlink, and converts the output differential cvbs signal from the terminal device into a BT656 format digital video signal, and sends it to the display screen for display.
  • the model of the second conversion module can be ADV7182.
  • the third processing module is connected between the microphone, the speaker, the audio downlink 305 and the audio uplink 304 to be connected to the terminal device 200 for transmitting audio data, key data, and lower speed data streams such as various sensors. .
  • data processing device 104 can convert the video information transmitted by video downlink 302 into a digital video signal format and control audio and video playback module 102 to perform display operations.
  • the glasses main body 100 in the embodiment of the present invention can perform simple processing on audio information and video information, but the processing involving a large number of electronic devices or a large number of operations can be integrated into the terminal device for processing, and then implemented in the guarantee. Under the premise of the intelligence of the lens body 100, the lens body can also be made more compact.
  • the terminal device 200 in this embodiment may include: a power supply module 201, an image processing module 202, and an audio processing module 203.
  • the power supply module 201 can be connected to the battery component 103 in the glasses body 100 through the power transmission line 303, so as to provide power to the glasses body 100 on the one hand, and The terminal device 200 does not provide the power required for operation.
  • the power supply module 201 may include at least one battery pack, and a power conversion module connected to the battery pack, and the power conversion module may convert the power provided by the external power source into DC power, and provide the DC power to the battery. The group is powered.
  • the power conversion module can also convert the power of the battery pack into the power required by the glasses body, such as 5 V DC power, and provide the power to the battery component 103 in the glasses body 100 through the power transmission line 303, thereby ensuring The endurance of the glasses body.
  • the image processing module 202 may perform optimization processing on the video information transmitted by the video uplink, and the optimization processing may include converting the video information into a parallel digital signal form, and performing compression processing on the video information in the form of a parallel digital signal, and converting into The differential signal is transmitted back; the compressed video information can then be transmitted back to the glasses body for playing. Further, the image processing module 202 can receive the high definition image data signal from the video uplink 301 and complete the H.265 compression transmission.
  • the data processing module in the glasses body can perform the decompression operation after receiving the compressed video data, and the output differential cvbs signal is converted into a BT656 format digital video signal and sent to the optical machine for display.
  • the video information is converted into a differential signal for transmission, so as to enhance the anti-interference ability of the data transmission.
  • the audio processing module 203 can receive the audio information transmitted by the audio uplink 404, analyze and process the audio information, and can transmit the audio control signal and the audio information to be output through the audio downlink 305.
  • the terminal device may further obtain voice control information from the outside, and the audio processing module may identify the content in the voice control information, and correspondingly send the voice control instruction to the glasses body, or directly control the glasses body according to the The control instruction performs the corresponding operation.
  • the terminal device 200 may further include a denoising module, and the denoising module may perform denoising processing on the video information transmitted by the video uplink 301, and the denoised processed video information is transmitted to the image processing module 202 for optimization. deal with.
  • the image processing module 202 in the embodiment of the present invention may include a plurality of electronic devices, as it may include a first processing module, a second processing module, and a third processing module and a main control portion.
  • the first processing module is connected between the video uplink and the main control unit, and is configured to convert the serial image signal from the first conversion module into parallel image data, and send the data to the main control unit.
  • the model of the first processing module may be 2) ds90ub 914a, and the model of the main control unit may be HI3516A.
  • the main control unit After receiving the high-definition image data signal in the form of parallel data, the main control unit performs compression transmission according to the H.265 protocol, and outputs a cvbs video signal to the second processing module, where the cvbs video signal is used to implement camera image preview, and the server Dynamic pictures and other related displays.
  • the second processing module can be connected between the video downlink and the main control unit, and is configured to output the cvbs video signal output by the main control unit to the second conversion module in the glasses body through the video downlink to perform display output.
  • the third processing module includes a USB 2.0 hub that is coupled to the main control, audio uplink, and audio downlink for transmitting audio and video information as well as control information. That is to say, the audio processing module can be integrated in the main control unit for processing audio information.
  • the glasses body and the terminal device are connected by means of a wired connection, and the video information and the audio information acquired by the glasses body are optimized by the terminal device, and the terminal device is also the glasses body.
  • the supplemental power is provided, so that the endurance of the lens body can be ensured while ensuring the lightness of the lens body.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • General Engineering & Computer Science (AREA)
  • Eyeglasses (AREA)
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Abstract

本发明提供了一种智能眼镜,其包括眼镜本体和通过连接线缆与所述眼镜本体连接的终端设备;其中,所述眼镜本体配置为将获取的视频信息和音频信息传输至所述终端设备进行优化处理,并从所述终端设备接收优化处理后的视频信息和音频信息进行显示和播放。本发明实施例在实现眼镜本体的轻巧化的同时还能实现强大的数据运算处理功能。

Description

一种智能眼镜 技术领域
本发明涉及智能设备领域,特别涉及一种智能眼镜。
背景技术
对于现有的智能眼镜设备(如AR眼镜),由于需要保证显示图像的高清效果,以及较快的数据处理速度,通常需要在眼镜端设置大量的电子器件,以保证更加智能化的特点。而相应的功耗问题以及需要大宽带数据传输的问题就随之而来,这也给本领域技术人员带来困扰,并作为当下亟待解决的技术问题。
发明内容
本发明实施例提供了一种能够通过外接的终端设备提供电力并提供数据运算处理的智能眼镜。
为了解决上述技术问题,本发明实施例提供了如下的技术方案:
一种智能眼镜,其包括眼镜本体和通过连接线缆与所述眼镜本体连接的终端设备;其中,所述眼镜本体配置为将获取的视频信息和音频信息传输至所述终端设备进行优化处理,并从所述终端设备接收优化处理后的视频信息和音频信息进行显示和播放。
作为优选,所述连接线缆包括:视频上行线路、视频下行线路、电力传输线路、音频上行线路和音频下行线路。
作为优选,所述眼镜本体包括:音视频获取设备,其配置为获取视频信息和音频信息,并通过所述视频上行线路和音频上行线路向终端设备传输视频信息和音频信息;
音视频播放模块,其配置为输出播放经所所述视频下行线路和音频下行线路传送的由所述终端设备优化处理后的音频信息和视频信息;
电池组件,其配置为通过所述电力传输线路与所述终端设备连接,以通过所述终端设备提供电力。
作为优选,所述眼镜本体还包括分别与所述音视频获取设备和音视频播放模块连接的数据处理设备,
所述数据处理设备配置为将所述音视频获取设备获取的视频信息转换为串行数字信号形式,并通过所述视频上行线路将所述串行数字信号形式的视频信息传输至所述终端设备;并配置为将所述视频下行线路传送的优化处理后的视频信息在音视频播放模块上显示。
作为优选,所述数据处理设备进一步配置为将所述视频下线路传送的视频信息转化为数字视频信号形式,并控制所述音视频播放模块执行显示操作。
作为优选,所述终端设备包括:
供电模块,其配置为通过所述电力传输线路与所述眼镜本体连接,以为所述眼镜本体和终端设备提供电力;
图像处理模块,其配置为对所述视频上行线路传送的视频信息进行优化处理,所述优化处理包括将所述视频信息转换为并行数字信号形式,以及对所述并行数字信号形式的视频信息执行压缩处理;并配置为将压缩处理后的视频信息回传至所述眼镜本体;以及
音频处理模块,其配置为接收所述音频上行线路传输的音频信息,并对所述音频信息进行分析处理,并配置为通过音频下行线路传输音频控制信号和所要输出的音频信息。
作为优选,所述终端设备还包括去噪模块,其配置为对所述视频上行线路传送的视频信息进行去噪处理,并经去噪处理后的视频信息传送至图像处理模块进行优化处理。
作为优选,所述眼镜本体上设置有Type C接口,所述终端设备上设置有MicroB接口,所述连接线缆构造为USB3.1型线缆,并分别与所述Type C接口和MicroB接口连接。
作为优选,所述音视频获取设备包括摄像头和收音设备;所述音视频播放模块包括显示屏和扬声设备。
作为优选,所述供电模块包括至少一个蓄电池组和与外接电源连接的电力转换模块,所述电力转换模块将外接电源的电力转换为直流电力以提供至所述蓄电池组。
与现有技术相比,本发明实施例具备以下技术效果:
本发明实施例中,通过有线连接的方式连接眼镜本体和终端设备,并利用终端设备对眼镜本体获取的视频信息和音频信息进行优化处理,以及还可以通过终端设备为眼镜本体提供补充电力,从而可以在保证眼镜本体的轻巧化的同时还能够保证眼镜本体的续航能力。
附图说明
图1为本发明实施例中的一种智能眼镜的原理结构图;
图2为本发明实施例中的连接线缆的原理结构图;
图3为本发明实施例中的眼镜本体的原理结构图;
图4为本发明实施例中的终端设备的原理结构图。
附图标记说明
100-眼镜本体               200-终端设备
300-连接线缆               101-音视频获取模块
102-音视频播放模块         103-电池组件
201-供电模块               202-图像处理模块
203-音频处理模块           301-视频上行线路
302-视频下行线路           303-电力传输线路
304-音频上行线路           305-音频下行线路
具体实施方式
下面,结合附图对本发明的具体实施例进行详细的说明,但不作为本发明的限定。
本发明实施例提供了一种智能眼镜,该智能眼镜包括有线连接的眼镜本体和终端设备,具有续航时间长,且数据处理速度快,且眼镜轻巧化的特点。
如图1所示为本发明实施例中的一种智能眼镜的原理结构图。其中,本发明实施例中的智能眼镜包括眼镜本体100和终端设备200,该眼镜本体100和终端设备200通过连接线缆200实现连接。通过连接线缆传输视频信息、音频信息和相应的控制信息。而本实施例中的眼镜本体100可以获取视频信息和音频信息,并可以将获取的视频信息和视频信息传输至终端设备200进行优化处理,并从终端设备200接收优化处理后的视频信息和音频信息进行显示和播放。
在此,需要说明的是,本发明实施例中的终端设备200可以构造成一个单独的数据处理器,用于为眼镜本体100提供补充电力和音视频的运算处理。在其他实施例中,该终端设备200可以包括与眼镜本体100连接的一个或多个电子设备,如本发明实施例中,智能设备可以包括与眼镜本体连接的终端连接设备,以及与终端连接设备连接的电子设备,该终端连接设备可以构造成能够容纳或装设电子设备的连接器件,并且,终端连接设备和电子设备可以对眼镜本体获取的视频、音频数据进行处理,以减小眼镜本体的大小;同时终端连接设备内置供电模块为眼镜本体提供电力补充。另外,由于电子设备可以装设在终端连接设备中,即可以实现方便携带的效果。
具体的,电子设备通过与终端连接设备连接而接收其传输的视频数据信息,或者向智能终端连接设备发送经过处理后的需要进行播放的视频数据信息。即电子设备端也可以对视频数据信息进行进一步的编辑。
另外,终端设备200与眼镜本体100是通过连接线缆300进行连接的,该连接线缆300可以作为音视频信息的传输线缆,而且为了尽量减少连接线缆300内连接线路的数量,本发明实施例中的连接线缆采用如图2所示的信号传输线缆结构,即图2为本发明实施例中的连接线缆的信号传输结构示意图。其中,本发明实施例中的连接线缆300可以包括视频上行线路301、视频下行线路302、电力传输线路303、音频上行线路304和音频下行线路305。其中,视频上行线路301用于将眼镜本体100获取的视频信息传送至终端设备200,而视频下行线路302用于将经终端设备200处优化处理过的视频信息传输至眼镜本体100。同样的,音频上行线路304用于将眼镜本体100获取的音频信息传送至终端设备200,而音频下行线路305用于将经终端设备200处优化处理过的音频信息传输至眼镜本体100。而电力传输线路303用于将终端设备200中的电力输出给眼镜本体100,从而为眼镜本体100充电和供电。
另外,本发明实施例中的连接线缆300可以采用USB3.1线缆,并且各线路的配置如下:
电力传输线路303包括2根线路,其中一根为+5V电力线,另一根为地线;视频上行线路301包括TX+和TX-两个高速信号差分对线路;视频下行线路302包括:RX+和RX-两个高速信号差分对线路;音频上行线路304和音频下行线路305分别包括DP和DM2根线路,用于传输音频信号和控制信号。
另外,眼镜本体100上与该连接线缆300连接的端口可以构造为Type C接口,而智能终端200上于连接线缆300连接的端口可以构造为MicroB接口,该MicroB接口具有防插反的功能。
如上所述,本发明实施例中的终端设备200可以包括与眼镜本体100通过连接线缆300连接的终端连接设备和装设在终端连接设备上的电子设备,该电子设备可以是便携的移动终端,如手机、平板等设备。终端连接设备作为电子设备的载体,还可以进一步建立电子设备与眼镜本体之间的数据连接。也就是说,电子设备也可以对眼镜本体传输的音频信息和视频信息进行优化处理,同时电子设备还可以将所要显示播放的音频信息和视频信息发送给眼镜本体进行显示播放。
进一步的,如图3所示,为本发明实施例中的眼镜本体的原理结构图,其中,本发明实施例中的眼镜本体可以包括:音视频获取模块101、音视频播放模块102,以及电池组件103。
其中,音视频获取模块101可以获取视频信息和音频信息,例如,其可以包括摄像头和收音设备(如麦克风),或者摄像头内可以内置收音设备,同时具备获取图像和音频的功能。该音视频获取设备101可以通过视频上行线路301将所获取的视频信息传送至终端设备200进行处理。本发明实施例中,在将视频信息传送至终端设备200之前,眼镜本体100可以先将视频信息转换成差分信号进行传输。另外,该音视频获取设备101还可以通过音频上行线路304将获取的音频信息传输至终端设备上,优选的,眼镜本体100预先对音频信息进行去噪处理再通过音频上行线路304进行传送。
音视频播放模块102用于播放音频和视频,该音视频播放设备可以包括显示屏和扬声器。具体的,音视频播放模块102中的显示屏可以和视频下行线路302连接,以显示由终端设备200优化处理后的视频信息;并且。音视频播放模块中的扬声器可以和音频下行线路305连接,以将经由终端设备200发送的音频信息输出播放。优选的,在将音频信息传送给扬声器之前,优选通过一处理设备对音频信息进行分析处理,以分别提取其中的控制信号和音频信号,并控制扬声器按照控制信号输出音频信号。
另外,本发明实施例中的电池组件103可以通过电力传输线路303与终端设备200连接,该电池组件103的电力补充可以通过终端设备200提供。即电池组件103可以构造为可再充的电池组件。
另外,在一优选实施例中,眼镜本体100还包括分别与音视频获取模块102和音视频播放模块102连接的数据处理设备104,该数据处理设备104可以将音视频获取模块101获取的视频信息从并行数字信号形式转换为串行数字信号形式,并可以继而执行去噪处理等操作,然后通过视频上行线路301将该串行数字信号形式的视频信息传输至终端设备200;并可以将视频下行线路302传送的优化处理后的视频信息在音视频播放模块102上显示输出。优选的,数据处理设备104可以将发送的视频信息转化成差分信号形式进行传输,以增加抗干扰性能。
具体的,本发明的数据处理设备104可以包括第一转换模块、第二转换模块和第三处理模块,其中第一转换模块连接在摄像头和视频上行线路之间,以将高清摄像头输出的是并行数据信号转换成串行差分信号,并发送到USB3.1线缆中的RX+/RX-差分对(视频上行线路)上面去,实现视频信号的并串转换,使得仅仅采用较少的2条线,就可以实现高清视频数据传输,第一转换模块的型号可以是ds90ub913a。
第二转换模块连接在显示屏和视频下行线路之间,其将来自终端设备输出差分cvbs信号转换成BT656格式数字视频信号,输送给显示屏进行显示。该第二转换模块的型号可以是ADV7182。
第三处理模块其连接在麦克风、扬声器、音频下行线路305和音频上行线路304之间,以连接到终端设备200,用来传输音频数据、按键数据、以及各种传感器等速度较低的数据流。
另外,优选的,数据处理设备104可以将视频下行线路302传送的视频信息转化为数字视频信号形式,并控制音视频播放模块102执行显示操作。
也就是说,本发明实施例中的眼镜主体100可以对音频信息和视频信息作简单的处理,但是涉及到大量电子器件或者大量运算的处理过程可以集成到终端设备上进行处理,继而实现在保证眼镜本体100的智能化的前提下,还可以使眼镜本体具备更加轻巧的特点。
如图4所示,为本发明实施例中的终端设别的原理结构图,其中,本实施例中的终端设备200可以包括:供电模块201、图像处理模块202和音频处理模块203。
其中,供电模块201可以通过电力传输线路303与眼镜本体100中的电池组件103连接,从而一方面可以为眼镜本体100提供电力,另一方面还能 未终端设备200提供工作所需电力。本实施例中,供电模块201可以包括至少一组蓄电池组,以及与蓄电池组连接的电力转换模块,该电力转换模块可以将外部电源提供的电力转换成直流电力,并将该直流电力提供给蓄电池组进行供电。另外,电力转换模块还可以将蓄电池组的电力转换为眼镜本体所需要的电力,如5V的直流电力,并通过电力传输线路303将该电力提供至眼镜本体100中的电池组件103,从而可以保证眼镜本体的续航能力。
另外,图像处理模块202可以对视频上行线路传送的视频信息进行优化处理,该优化处理可以包括将视频信息转换为并行数字信号形式,以及对并行数字信号形式的视频信息执行压缩处理,并转换为差分信号进行回传;继而可以将压缩处理后的视频信息回传至所述眼镜本体进行播放。进一步的,该图像处理模块202可以在从视频上行线路301接收到高清图像数据信号,并完成H.265压缩传输。
而眼镜本体中的数据处理模块可以在接收到该压缩的视频数据后,可以执行解压缩操作,并输出的差分cvbs信号转换成BT656格式数字视频信号,输送给光机显示。本发明实施例中通过将视频信息转换成差分信号进行传输,是为了增强数据传输的抗干扰能力。
另外,音频处理模块203可以接收音频上行线路30 4传输的音频信息,并对音频信息进行分析处理,并可以通过音频下行线路305传输音频控制信号和所要输出的音频信息。本发明实施例中,终端设备还可以从外部获取语音控制信息,而音频处理模块可以识别该语音控制信息中的内容,并相应的向眼镜本体发送该语音控制指令,或者直接控制眼镜本体按照该控制指令执行相应的操作。
进一步的,终端设备200内还可以包括去噪模块,该去噪模块可以对视频上行线路301传送的视频信息进行去噪处理,并经去噪处理后的视频信息传送至图像处理模块202进行优化处理。
另外,对于本发明实施例中的图像处理模块202,其可以包括多个电子器件,如其可以包括第一处理模块、第二处理模块和第三处理模块和主控制部。
其中,第一处理模块连接在视频上行线路和主控制部之间,其用于将来自第一转换模块的串行图像信号转换成并行图像数据,并输送给主控制部, 其中第一处理模块的型号可以是2)ds90ub914a,主控部的型号可以是HI3516A。
主控制部接收到并行数据形式的高清图像数据信号后,执行按照H.265协议的压缩传输,并输出一路cvbs视频信号给第二处理模块,该cvbs视频信号用来实现摄像头图像预览,以及服务器动态图片等相关显示。
第二处理模块可以连接在视频下行线路和主控制部之间,其用于将主控制部输出的cvbs视频信号通过视频下行线路输出给眼镜本体中的第二转换模块,进行显示输出。
第三处理模块包括USB2.0集线器,其与主控制、音频上行线路和音频下行线路连接,以用于传输音视频信息以及控制信息。也就是说音频处理模块可以集成在主控制部中,用于处理音频信息。
综上所述,本发明实施例中,通过有线连接的方式连接眼镜本体和终端设备,并利用终端设备对眼镜本体获取的视频信息和音频信息进行优化处理,以及还可以通过终端设备为眼镜本体提供补充电力,从而可以在保证眼镜本体的轻巧化的同时还能够保证眼镜本体的续航能力。
以上实施例仅为本发明的示例性实施例,不用于限制本发明,本发明的保护范围由权利要求书限定。本领域技术人员可以在本发明的实质和保护范围内,对本发明做出各种修改或等同替换,这种修改或等同替换也应视为落在本发明的保护范围内。

Claims (10)

  1. 一种智能眼镜,其包括眼镜本体和通过连接线缆与所述眼镜本体连接的终端设备;其中,
    所述眼镜本体配置为将获取的视频信息和音频信息传输至所述终端设备进行优化处理,并从所述终端设备接收优化处理后的视频信息和音频信息进行显示和播放。
  2. 根据权利要求1所述的智能眼镜,其中,所述连接线缆包括:视频上行线路、视频下行线路、电力传输线路、音频上行线路和音频下行线路。
  3. 根据权利要求2所述的智能眼镜,其中,所述眼镜本体包括:
    音视频获取设备,其配置为获取视频信息和音频信息,并通过所述视频上行线路和音频上行线路向终端设备传输视频信息和音频信息;
    音视频播放模块,其配置为输出播放经所所述视频下行线路和音频下行线路传送的由所述终端设备优化处理后的音频信息和视频信息;
    电池组件,其配置为通过所述电力传输线路与所述终端设备连接,以通过所述终端设备提供电力。
  4. 根据权利要求3所述的智能眼镜,其中,所述眼镜本体还包括分别与所述音视频获取设备和音视频播放模块连接的数据处理设备,
    所述数据处理设备配置为将所述音视频获取设备获取的视频信息转换为串行数字信号形式,并通过所述视频上行线路将所述串行数字信号形式的视频信息传输至所述终端设备;并配置为将所述视频下行线路传送的优化处理后的视频信息在音视频播放模块上显示。
  5. 根据权利要求4所述的智能眼镜,其中,所述数据处理设备进一步配置为将所述视频下线路传送的视频信息转化为数字视频信号形式,并控制所述音视频播放模块执行显示操作。
  6. 根据权利要求2所述的智能眼镜,其特征在于,所述终端设备包括:
    供电模块,其配置为通过所述电力传输线路与所述眼镜本体连接,以为所述眼镜本体和终端设备提供电力;
    图像处理模块,其配置为对所述视频上行线路传送的视频信息进行优化处理,所述优化处理包括将所述视频信息转换为并行数字信号形式,以及对所述并行数字信号形式的视频信息执行压缩处理;并配置为将压缩处理后的视频信息回传至所述眼镜本体;以及
    音频处理模块,其配置为接收所述音频上行线路传输的音频信息,并对所述音频信息进行分析处理,并配置为通过音频下行线路传输音频控制信号和所要输出的音频信息。
  7. 根据权利要求6所述的智能眼镜,其特征在于,所述终端设备还包括去噪模块,其配置为对所述视频上行线路传送的视频信息进行去噪处理,并经去噪处理后的视频信息传送至图像处理模块进行优化处理。
  8. 根据权利要求1所述的智能眼镜,其特征在于,所述眼镜本体上设置Type C接口,所述终端设备上设置有MicroB接口,所述连接线缆构造为USB3.1型线缆,并分别与所述Type C接口和MicroB接口连接。
  9. 根据权利要求3所述的智能眼镜,其特征在于,所述音视频获取设备包括摄像头和收音设备;所述音视频播放模块包括显示屏和扬声设备。
  10. 根据权利要求6所述的智能眼镜,其特征在于,所述供电模块包括至少一个蓄电池组和与外接电源连接的电力转换模块,所述电力转换模块将外接电源的电力转换为直流电力以提供至所述蓄电池组。
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