WO2018014534A1 - 智能眼镜和摄像显示装置 - Google Patents

智能眼镜和摄像显示装置 Download PDF

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Publication number
WO2018014534A1
WO2018014534A1 PCT/CN2017/072030 CN2017072030W WO2018014534A1 WO 2018014534 A1 WO2018014534 A1 WO 2018014534A1 CN 2017072030 W CN2017072030 W CN 2017072030W WO 2018014534 A1 WO2018014534 A1 WO 2018014534A1
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WIPO (PCT)
Prior art keywords
camera
image
display screen
transmission module
wireless transmission
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2017/072030
Other languages
English (en)
French (fr)
Inventor
成智华
杨金龙
王聪
何玉雪
刘纯
姜春苗
丁文涛
钟兴宁
黄俊睿
马书明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Original Assignee
Gree Electric Appliances Inc of Zhuhai
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Gree Electric Appliances Inc of Zhuhai filed Critical Gree Electric Appliances Inc of Zhuhai
Publication of WO2018014534A1 publication Critical patent/WO2018014534A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • 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
    • H04N7/181Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast for receiving images from a plurality of remote sources
    • 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
    • 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

Definitions

  • the present invention relates to the field of camera display technology, and in particular to smart glasses and camera display devices.
  • the camera display captures the video through the camera and stores or sends the video to the display device, which is displayed on the display device on the display device.
  • Traditional real-time shooting and playback requires a video capture device and display device.
  • the photographer needs a handheld camera.
  • the video capture device is generally bulky and has poor flexibility, which is not conducive to the photographer's action, and the photographer needs to constantly shoot. Adjust the shooting angle.
  • the video viewer needs to hold the display device or fix the display device when watching the video. Due to the large size of the display device, there is also a situation of inconvenience.
  • a smart glasses comprising: a frame, a camera, a display screen and a wireless transmission module, wherein two ends of the frame are respectively connected with a bracket, the display screen is disposed on the frame, and the camera is disposed on the frame, And the camera is disposed in a direction away from the display screen toward the bracket, and the wireless transmission module is electrically connected to the camera and the display screen respectively;
  • the camera is configured to capture an image and send an image through the wireless transmission module
  • the display screen is configured to receive an image through the wireless transmission module and play the image.
  • the camera is coupled to the wireless transmission module for connection to a wireless network through the wireless transmission module.
  • the wireless transmission module sets an association unit, configured to preset at least one associated smart glasses,
  • the camera is used for wireless connection with the associated smart glasses through the wireless transmission module.
  • the camera is connected to the wireless transmission module, and is configured to be wirelessly connected to the server by using the wireless transmission module;
  • the display screen is connected to the wireless transmission module, and is configured to connect to the server through the wireless transmission module to receive an image and play.
  • the wireless transmission module includes an antenna, and the antenna is electrically connected to the camera and the display screen, respectively, and the antenna is disposed in the bracket.
  • the bracket is provided with a control button, and the control button is electrically connected to the display screen and the camera.
  • a microphone and a speaker are also included, both of which are electrically coupled to the wireless transmission module.
  • the camera is electrically connected to the display screen
  • the camera is further configured to capture an image and send the image to the display screen;
  • the display screen is further configured to receive an image captured by the camera and play the image.
  • the number of the cameras is two, and the two cameras are symmetrically disposed on the frame.
  • An image display device includes a first smart glasses and a second smart glasses, wherein the first smart glasses and the second smart glasses are connected by wireless;
  • the first smart glasses include a first frame, a first camera, a first display, and a first wireless transmission module, and a first bracket is connected to one end of the first frame, and the first display is disposed on the first On the first frame, the first camera is disposed on the first frame, and the first camera is disposed facing the first display in a direction away from the first bracket, the first wireless The transmission module is electrically connected to the first camera and the first display screen respectively;
  • the second smart glasses include a second frame, a second camera, a second display, and a second wireless transmission module, and a second bracket is respectively connected to one end of the second frame, and the second display is disposed on the second frame.
  • the second camera is disposed on the second frame, and the second camera is disposed toward the second display facing away from the second bracket, the second wireless
  • the transmission module is electrically connected to the second camera and the second display screen respectively;
  • the first camera is configured to capture an image, and send an image to the second display screen by using the first wireless transmission module;
  • the second camera is configured to capture an image, and send an image to the first display screen by using the second wireless transmission module;
  • the first display screen is configured to receive an image by using the first wireless transmission module, and play an image
  • the second display screen is configured to receive an image through the second wireless transmission module and play an image.
  • the user wears the smart glasses, captures an image or video through the camera on the smart glasses, and sends the image to the display on the smart glasses, and the user of the other smart glasses can conveniently wear the smart glasses.
  • FIG. 1 is a schematic structural view of a smart spectacles according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural view of another direction of smart glasses according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of another direction of smart glasses according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of still another direction of smart glasses according to an embodiment of the present invention.
  • FIG. 5 is a block diagram showing the logical structure of smart glasses according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of an image display device according to an embodiment of the present invention.
  • a smart glasses 10 of an embodiment includes a frame 100, a camera 110, and a display screen 120.
  • the two ends of the frame 100 are respectively connected with a bracket 101, for example, the frame 100.
  • a bracket 101 is respectively connected to the same side of the two ends, and the display screen 120 is disposed on the frame 100, the camera 110 is on the frame 100, and the camera 110 faces the display screen 120 facing away from the bracket 101.
  • the wireless transmission module is electrically connected to the camera 110 and the display screen 120 respectively.
  • the camera 110 is disposed on a side of the display screen 120 facing away from the bracket 101, and the camera 110 is disposed.
  • the display screen 120 is configured to receive an image through the wireless transmission module and play the image.
  • the image is a still image, and for example, the image is a moving image, for example, the moving image is a multi-frame image, for example, the image is a video.
  • the image may be a single-screen image or a video composed of multi-frame image frames.
  • the image described in the following embodiments includes a video, that is, the video is one of images.
  • the bracket 101 of the smart glasses 10 is used to support the frame 100 for the user to wear on the head.
  • the smart glasses 10 are worn on the head, and the camera 110 faces the line of sight of the user, that is, the front of the user, and the camera 110 follows The user's movement is taken to capture the user's surrounding environment, and the image captured by the camera 110 is transmitted through the wireless network, so that the user can capture the image in a very convenient situation and send it to other video display devices to play the image or video;
  • the user can also play the image received through the wireless network through the display screen 120 on the smart glasses 10 without the need for the handheld display device, thereby enabling the user to conveniently view the image in action, and the smart glasses 10 of the present embodiment have the use.
  • Flexible features that effectively improve the convenience of user actions.
  • the camera 110 is electrically connected to the display screen 120; the camera 110 is further configured to capture an image and send an image to the display screen 120; the display screen The 120 is further configured to receive an image captured by the camera 110 and play the image.
  • the display screen 120 can display the image captured by the camera 110 in real time through the electrical connection with the camera 110, so that when the user is walking, the display screen of the display screen 120 is switched to the shooting screen of the camera 110, thereby The user can view the image captured by the camera 110 in real time, thereby avoiding the line of sight blocking caused by the display screen 120, and facilitating the user's action.
  • the bracket 101 is provided with a control button 180, and the control button 180 is electrically connected to the display screen 120 and the camera 110, and the control button 180 is used to control the
  • the smart glasses 10 further includes a control module 170.
  • the control keys 180 are electrically connected to the control module 170.
  • the control module 170 is electrically connected to the display screen 120 and the camera 110.
  • the control module 170 is used to control The playback image of the display screen 120, such that the user can control the image switching of the display screen 120 through the control key 180, so that the display screen 120 can play the image received by the wireless network, and can also play the image captured by the camera 110 in real time.
  • the camera 110 is coupled to the wireless transmission module for connecting to a wireless network through the wireless transmission module.
  • the camera 110 is configured to wirelessly connect to the display screen of other smart glasses through the wireless transmission module.
  • the camera 110 is configured to wirelessly connect with the smart glasses associated with the preset through the wireless transmission module.
  • the camera 110 is configured to wirelessly connect to the smart glasses associated with the presets through the wireless transmission module.
  • the camera 110 is configured to wirelessly connect to the display screen of the smart glasses associated with the preset by the wireless transmission module.
  • the camera 110 is configured to wirelessly connect to the display screen of the smart glasses associated with the plurality of presets through the wireless transmission module.
  • the wireless transmission module is configured to be configured to preset at least one associated smart glasses, and the camera 110 is configured to wirelessly connect with the associated smart glasses through the wireless transmission module.
  • the wireless transmission module is configured to be configured to preset at least one associated smart glasses, and the camera 110 is configured to wirelessly connect with the associated smart glasses through the wireless transmission module.
  • a plurality of smart glasses can be wirelessly connected to each other, so that images can be shared among multiple users.
  • the method further includes a wireless transmission module, the camera 110 is connected to the wireless transmission module, and is configured to wirelessly connect with the server through the wireless transmission module; the display screen 120 is connected to the wireless transmission module, and is configured to pass the wireless A transmission module is connected to the server to receive an image and play.
  • the wireless transmission module includes an antenna.
  • the wireless transmission module includes an antenna 130, and the antenna 130 and the camera respectively 110 and the display screen 120 are electrically connected, and the antenna 130 is configured to transmit a wireless signal and connect to a wireless network.
  • the camera 110 is capable of transmitting the captured image through the antenna 130
  • the display screen 120 is capable of receiving an image through the antenna 130.
  • the presentation 130 is electrically coupled to the control module 170.
  • the control module 170 includes a codec sub-module for encoding and decoding the image, such that the image captured by the camera 110 passes.
  • the encoding of the codec sub-module is transmitted in the form of a code stream through the antenna 130 in the wireless network, and the display screen 120 receives the code stream transmitted in the wireless network through the antenna 130, and obtains an image and plays it through decoding of the codec sub-module.
  • the antenna 130 is disposed in the bracket 101.
  • the antenna 130 is a metal antenna 130, and the bracket 101 is wrapped around the outside of the antenna 130.
  • the antenna 130 is inside the bracket 101. Since the bracket 101 functions to support the frame 100, the bracket 101 can effectively connect the antenna 130. The hiding makes the smart glasses 10 smaller in size and facilitates the wearing of the smart glasses 10.
  • the antenna 130 is integrally formed with the bracket 101.
  • the antenna 130 is a metal antenna 130
  • the bracket 101 is a metal bracket 101
  • the antenna 130 and the bracket 101 are integrally formed by welding
  • the antenna 130 and The bracket 101 is integrally formed by casting, and the antenna 130 and the bracket 101 are integrally formed, thereby avoiding the extra space occupied by the antenna 130, effectively reducing the volume and weight of the smart glasses 10, and facilitating the wearing of the smart glasses 10.
  • the wireless network is a mobile cellular communication network.
  • the mobile cellular communication network includes one or more of 2G, 3G, and 4G networks.
  • the wireless network is WIFI (Wireless Fidelity, wireless LAN based on IEEE 802.11b standard).
  • the network for example, the antenna 130 of the smart glasses 10 is connected to the Internet via a mobile cellular communication network or a WIFI network, and transmits image data on the Internet.
  • the smart glasses 10 further includes a microphone 140 and a speaker 150, both of the microphone 140 and the speaker 150 are connected to the wireless device.
  • the transmission module is electrically connected, for example, the microphone 140 and the speaker 150 are both electrically connected to the antenna 130.
  • the microphone 140 and the speaker 150 are both electrically connected to the antenna 130 through a control module 170, for example
  • the microphone 140 and the speaker 150 are disposed on the frame 100.
  • the microphone 140 and the speaker 150 are disposed on the frame 100.
  • One end of the proximity bracket 101, for example, the microphone 140 and the speaker 150 are disposed on the same end of the lens frame 100.
  • the microphone 140 and the speaker 150 are respectively disposed at both ends of the lens frame 100.
  • the microphone 140 is used to record sound when the camera 110 is photographed; the speaker 150 is used to play sounds in the image when the display screen 120 plays an image.
  • control key 180 is coupled to microphone 140 and speaker 150 via control module 170, which is also used to control the volume of microphone 140 and speaker 150.
  • the smart glasses 10 further include A shield 160 is coupled to one side of the display screen 120 facing away from the camera 110.
  • the shield 160 is disposed around the display screen 120, so that after the user wears the smart glasses 10, the face of the eye edge can be in close contact with the shield 160, which can effectively protect the user's eyes and avoid the viewing distance being too close.
  • the visual acuity is affected, and on the other hand, the interference of the external environment on the display screen 120 is reduced, so that the user's line of sight can be concentrated on the display screen 120, so that the viewing effect is better.
  • the shield 160 is a rubber shield 160, and the rubber shield 160 is soft in material and more comfortable to use, for example, the shield 160 has a curved structure.
  • the side of the shield 160 away from the display screen 120 has an arcuate structure that more closely matches the face of the human body, thereby making the shield 160 easier to fit the face, making the use of the shield 160 more comfortable.
  • the thickness of the shroud 160 is 30 mm to 45 mm, preferably, the thickness of the shroud 160 is 36 mm to 42 mm, and preferably, the thickness of the shroud 160 is 38 mm.
  • the thickness of the shroud 160 is the shroud 160 and The distance from the side of the display 120 to the other side of the shield 160 away from the display 120 is understood to be that the thickness of the shield 160 is not too large, so that the user's eyes are too far away from the display 120, so that the user cannot Clearly viewing the details of the image, the thickness of the shield 160 is not too small, too small, so that the user's eyes are too close to the display screen 120, which is likely to cause visual fatigue of the user, resulting in visual acuity. Therefore, in this embodiment, the shield The thickness of 160 mm is effective to protect the eyes of the user and makes the user's viewing of the image better.
  • the ratio of the thickness of the shield 160 to the width of the display screen 120 is (0.5 to 0.8): 1, preferably, the ratio of the thickness of the shield 160 to the width of the display screen 120 is 0.618:1, it should be understood that The distance that the user views the display screen 120 is positively correlated with the size of the display screen 120. The larger the display screen 120 is, the farther the viewing distance is, and the smaller the display screen 120 is, the closer the viewing distance is. Therefore, in the present embodiment, the shield is The thickness of 160 is positively related to the width of the display screen 120, and the ratio of the thickness of the shield 160 to the width of the display screen 120 is 0.618:1, so that the user can clearly view the image and can avoid the display and the display. 120 visual fatigue caused by too close distance.
  • the number of the cameras 110 is two, and the two cameras 110 are symmetrically disposed on the frame 100, for example.
  • the two cameras 110 are symmetrically disposed on the frame 100 symmetrically about the central axis of the frame 100.
  • the two cameras 110 are disposed on the same horizontal line of the frame 100.
  • the display 120 is displayed.
  • the number of the two display screens is two, and the two display screens 120 are respectively disposed in the frame 100.
  • the images are captured by the two cameras 110 at different horizontal angles on the same horizontal plane, thereby making the image
  • the two images have a certain deviation angle
  • the two display screens 120 respectively display the images corresponding to the two display screens 120, so that the images displayed by the two display screens 120 have a horizontal angle.
  • the deviation is more in line with the visual angles of the left and right eyes of the human body, so that the image presents a three-dimensional effect, the display effect is better, and the image is more vivid and realistic.
  • two display screens 120 are used to play the same image.
  • two display screens 120 are used to play different images.
  • two display screens 120 are controlled by the control button 180 to play the same image or play different images.
  • the two display screens 120 can simultaneously play the same image.
  • the two display screens 120 respectively display images of the two cameras 110, thereby causing visual effects. More vivid and lifelike.
  • each frame image of the image captured by the two cameras 110 is evenly divided into a plurality of pixel columns along the vertical direction of the image, and then the sliced pixel columns are sequentially overlapped one by one.
  • the three-dimensional image is synthesized, and the multi-frame three-dimensional image is synthesized into an image, thereby making the image have a three-dimensional effect, and the composite image is displayed on a display device, so that the image playback has a three-dimensional effect.
  • a camera display device 20 of an embodiment includes: a first smart glasses 210 and a second smart glasses 220, wherein the first smart glasses 210 and the second smart glasses 220 are connected by wireless;
  • the first smart glasses 210 include a first frame 211, a first camera 212, a first display 213, and a first wireless transmission module.
  • One end of each of the two ends of the first frame 211 is respectively connected with a first bracket 214.
  • the first display screen 213 is disposed on the first frame 211, the first camera 212 is disposed on the first frame 211, and the first camera 212 faces away from the first display screen 213.
  • the first bracket 214 is disposed in a direction, the first wireless transmission module is electrically connected to the first camera 212 and the first display screen 213, respectively;
  • the second smart glasses 220 includes a second frame 221 and a second camera.
  • the second display 223 and the second wireless transmission module are connected to the second frame 221, and the second display 223 is disposed on the second frame 221.
  • the second camera 222 is disposed in the office
  • the second frame 221 is disposed, and the second camera 222 is disposed toward the second display 223 facing away from the second bracket 224, and the second wireless transmission module and the second camera 222 are respectively
  • the second display 223 Electrically connecting; the first camera 212 is configured to capture an image, and send an image to the second display screen 223 through the first wireless transmission module; the second camera 222 is configured to capture an image, and pass the
  • the second wireless transmission module sends an image to the first display screen 213; the first display screen 213 is configured to receive an image by the first wireless transmission module, and play an image; the second display screen 223 is used for The image is received by the second wireless transmission module and the image is played.
  • the first camera 212 of the first smart glasses 210 performs the shooting, and the image captured by the first camera 212 is transmitted to the second smart glasses 220 in real time through the wireless network.
  • the first wireless transmission module includes a first antenna 215, and the second wireless transmission module includes a second antenna 225, the first antenna 215 is electrically coupled to the first camera 212 and the first display 213
  • the second antenna 225 is electrically connected to the second camera 222 and the second display screen 223, and the first antenna 215 and the second antenna 225 are connected by wireless.
  • the first smart glasses 210 are connected to the wireless network through the first antenna 215, and the second smart glasses 220 are connected to the wireless network through the second antenna 225, so that the first smart glasses 210 and the second smart glasses 220 are wireless. connection.
  • images captured by the first smart glasses 210 and the second smart glasses 220 can be mutually transmitted, for example, images captured by the second camera 222 of the second smart glasses 220 are transmitted through a wireless real-time network.
  • the image is transmitted to the first display screen 213 of the first smart glasses 210 and displayed on the first display screen 213; or the image captured by the first camera 212 of the first smart glasses 210 is transmitted to the second smart glasses 220 in real time through the wireless network.
  • the second display screen 223 is displayed on the second display screen 223. In this way, the two users can switch the screen of the display screen to each other, and can view the image taken by the environment of the other party.
  • the first camera 212 is electrically connected to the first display screen 213, the second camera 222 is electrically connected to the second display screen 223; the first camera 212 is also used for shooting. And sending an image to the first display screen 213; the first display screen 213 is further configured to receive an image captured by the first camera 212 and play an image; the second camera 222 is further configured to shoot The image is sent to the second display screen 223; the second display screen 223 is further configured to receive an image captured by the second camera 222 and play the image.
  • the first display screen 213 of the first smart glasses 210 displays an image captured by the second camera 222.
  • the first display screen 213 of the first smart glasses 210 displays an image captured by the first camera 212, so that the user can pass Control button to control the display An image taken by a smart glasses worn by a user or an image taken by other smart glasses worn by a user.
  • the camera display device 20 may further include a plurality of smart glasses, each of which is equipped with a camera, a display screen and an antenna, and a plurality of users can send captured images to each other, and both can watch other users to shoot.
  • the image is switched by the control button set on the smart glasses.
  • the server further includes a plurality of smart glasses connected to each other through a server, the server is configured to receive images, and forward images, so that real-time interaction of image data is realized between the plurality of smart glasses, for example, the smart glasses are equipped with a microphone. And speakers, multiple smart glasses can also transmit voice data, enabling voice interaction.
  • each module included is only divided according to functional logic, but is not limited to the above division, as long as the corresponding function can be implemented; in addition, the specific name of each functional unit It is also for convenience of distinguishing from each other and is not intended to limit the scope of protection of the present invention.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Health & Medical Sciences (AREA)
  • Ophthalmology & Optometry (AREA)
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Abstract

本发明涉及一种智能眼镜和摄像显示装置,该智能眼镜包括:镜框、摄像头、显示屏和无线传输模块,镜框的两端分别连接有支架,显示屏设置于镜框上,摄像头设置于镜框上,且摄像头朝向显示屏背向支架的方向设置,无线传输模块分别与摄像头和显示屏电连接;摄像头用于拍摄图像,并通过无线传输模块发送图像;显示屏用于通过无线传输模块接收图像,并播放图像。用户通过佩戴智能眼镜,通过智能眼镜上的摄像头拍摄图像,发送至另一智能眼镜上的显示屏上显示,另一智能眼镜的用户通过佩戴智能眼镜可方便地观看图像,通过智能眼镜上的摄像头进行拍摄以及通过显示屏进行图像观看,具有使用灵活的特点,使得用户在图像拍摄或者图像观看过程中更为方便。

Description

智能眼镜和摄像显示装置
相关申请
本发明申请要求2016年07月18日申请的,申请号为201610569846.6,名称为“智能眼镜和摄像显示装置”的中国专利申请的优先权,在此将其全文引入作为参考。
技术领域
本发明涉及摄像显示技术领域,特别涉及智能眼镜和摄像显示装置。
背景技术
摄像显示是通过摄像头拍摄视频,并将视频存储或发送至显示设备上,通过显示设备上的显示屏显示出来。传统的实时拍摄并播放需要配备视频拍摄设备和显示设备,拍摄者需要手持拍摄设备,视频拍摄设备一般体积较大,灵活性较差,不利于拍摄者的行动,且拍摄者在拍摄时需要不断调整拍摄角度,当拍摄者需要操作其他物品时,如攀登、搬运重物时,将造成拍摄不便。而视频观看者观看视频时需要手持显示设备或将显示设备固定放置,由于显示设备体积较大,同样存在行动不便的情况。
发明内容
基于此,有必要针对传统视频拍摄设备和显示设备使用不灵活的缺陷,提供一种智能眼镜和摄像显示装置,具有使用灵活的特点,有效提高用户使用时的便利性,便于用户的行动。
一种智能眼镜,包括:镜框、摄像头、显示屏和无线传输模块,所述镜框的两端分别连接有支架,所述显示屏设置于所述镜框上,所述摄像头设置于所述镜框上,且所述摄像头朝向所述显示屏背向所述支架的方向设置,所述无线传输模块分别与所述摄像头和所述显示屏电连接;
所述摄像头用于拍摄图像,并通过所述无线传输模块发送图像;
所述显示屏用于通过所述无线传输模块接收图像,并播放图像。
在一个实施例中,所述摄像头连接所述无线传输模块,用于通过所述无线传输模块连接至无线网络。
在一个实施例中,所述无线传输模块设置关联单元,用于预设至少一关联智能眼镜,所 述摄像头用于通过所述无线传输模块与关联智能眼镜无线连接。
在一个实施例中,所述摄像头连接所述无线传输模块,用于通过所述无线传输模块与服务器无线连接;
所述显示屏连接所述无线传输模块,用于通过所述无线传输模块连接所述服务器以接收图像并播放。
在一个实施例中,所述无线传输模块包括天线,所述天线分别与所述摄像头以及所述显示屏电连接,所述天线设置于所述支架内。
在一个实施例中,所述支架上设置有控制键,所述控制键与所述显示屏以及所述摄像头电连接。
在一个实施例中,还包括麦克风和扬声器,所述麦克风和所述扬声器均与所述无线传输模块电连接。
在一个实施例中,所述摄像头与所述显示屏电连接;
所述摄像头还用于拍摄图像,并将图像发送至所述显示屏;
所述显示屏还用于接收所述摄像头拍摄的图像,并播放图像。
在一个实施例中,所述摄像头的数量为两个,两个所述摄像头对称设置于所述镜框上。
一种摄像显示装置,包括第一智能眼镜和第二智能眼镜,所述第一智能眼镜和所述第二智能眼镜通过无线连接;
所述第一智能眼镜包括第一镜框、第一摄像头、第一显示屏和第一无线传输模块,所述第一镜框的两端的一面分别连接有第一支架,所述第一显示屏设置于所述第一镜框上,所述第一摄像头设置于所述第一镜框上,且所述第一摄像头朝向所述第一显示屏背向所述第一支架的方向设置,所述第一无线传输模块分别与所述第一摄像头和所述第一显示屏电连接;
所述第二智能眼镜包括第二镜框、第二摄像头、第二显示屏和第二无线传输模块,所述第二镜框的两端的一面分别连接有第二支架,所述第二显示屏设置于所述第二镜框上,所述第二摄像头设置于所述第二镜框上,且所述第二摄像头朝向所述第二显示屏背向所述第二支架的方向设置,所述第二无线传输模块分别与所述第二摄像头和所述第二显示屏电连接;
所述第一摄像头用于拍摄图像,并通过所述第一无线传输模块将图像发送至所述第二显示屏;
所述第二摄像头用于拍摄图像,并通过所述第二无线传输模块将图像发送至所述第一显示屏;
所述第一显示屏用于通过所述第一无线传输模块接收图像,并播放图像;
所述第二显示屏用于通过所述第二无线传输模块接收图像,并播放图像。
上述智能眼镜和摄像显示装置,用户通过佩戴智能眼镜,通过智能眼镜上的摄像头拍摄图像或视频,发送至另一智能眼镜上的显示屏上显示,另一智能眼镜的用户通过佩戴智能眼镜可方便地观看图像或视频,通过智能眼镜上的摄像头进行拍摄以及通过显示屏进行图像观看,具有使用灵活的特点,使得用户在图像拍摄或者图像观看过程中更为方便。
附图说明
图1为本发明一实施例的智能眼镜的一方向结构示意图;
图2为本发明一实施例的智能眼镜的另一方向结构示意图;
图3为本发明一实施例的智能眼镜的又一方向结构示意图;
图4为本发明一实施例的智能眼镜的再一方向结构示意图;
图5为本发明一实施例的智能眼镜的逻辑结构框图;
图6为本发明一实施例的摄像显示装置的结构示意图。
具体实施方式
为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳实施例。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本发明的公开内容的理解更加透彻全面。
如图1和图2所示,一实施例的一种智能眼镜10,包括镜框100、摄像头110和显示屏120,所述镜框100的两端分别连接有支架101,例如,所述镜框100的两端的相同一面分别连接有支架101,所述显示屏120设置于所述镜框100上,所述摄像头110所述镜框100上,且所述摄像头110朝向所述显示屏120背向所述支架101的方向设置,所述无线传输模块分别与所述摄像头110和所述显示屏120电连接,例如,所述摄像头110设置于所述显示屏120背向所述支架101的一面,所述摄像头110用于拍摄图像,并通过所述无线传输模块发送图像;所示显示屏120用于通过所述无线传输模块接收图像,并播放图像。例如,该图像为静态图像,又如,该图像为动态图像,例如,该动态图像为多帧图像,例如,该图像为视频。具体地,该图像可以是单一画面的图像,也可以是由多帧图像画面组成的视频。以下实施例中的所述的图像包括视频,即视频为图像的一种。
具体地,智能眼镜10的支架101用于支撑镜框100,便于用户佩戴在头上,使用时,将智能眼镜10佩戴在头上,摄像头110朝向用户的视线方向,即用户的前方,摄像头110随着用户的移动而对用户周边环境进行拍摄,摄像头110拍摄到的图像通过无线网络发送出去,使得用户能够在极为便利地情况下拍摄图像,发送至其他视频显示设备,以播放该图像或视频;此外,用户还能够通过智能眼镜10上的显示屏120播放通过无线网络接收到的图像,而无需手持显示设备,进而使得用户能够在行动中方便地观看图像,本实施例的智能眼镜10具有使用灵活的特点,有效提高用户行动的便利性。
在一个实施例中,如图5所示,所述摄像头110与所述显示屏120电连接;所述摄像头110还用于拍摄图像,并将图像发送至所述显示屏120;所述显示屏120还用于接收所述摄像头110拍摄的图像,并播放图像。
在本实施例中,显示屏120通过与摄像头110的电连接,能够实时显示摄像头110拍摄的图像,这样,当用户在行走时,将显示屏120的显示画面切换至摄像头110的拍摄画面,从而使得用户能够观看到摄像头110实时拍摄的图像,进而避免由于显示屏120造成的视线阻挡,便于用户的行动。例如,请结合图4和图5,所述支架101上设置有控制键180,所述控制键180与所述显示屏120以及所述摄像头110电连接,所述控制键180用于控制所述显示屏120和所述摄像头110,例如,该智能眼镜10还包括控制模块170,控制键180与控制模块170电连接,控制模块170与显示屏120以及摄像头110电连接,控制模块170用于控制显示屏120的播放图像,这样,用户通过控制键180能够控制显示屏120的图像切换,使得显示屏120能够播放由无线网络接收的图像,也能够播放摄像头110实时拍摄的图像。
在一个实施例中,所述摄像头110连接所述无线传输模块,用于通过所述无线传输模块连接至无线网络。例如,所述摄像头110用于通过所述无线传输模块与其它智能眼镜的所述显示屏无线连接。又如,所述摄像头110用于通过所述无线传输模块与预设关联的智能眼镜无线连接。又如,所述摄像头110用于通过所述无线传输模块与若干预设关联的智能眼镜无线连接。又如,所述摄像头110用于通过所述无线传输模块与预设关联的智能眼镜的所述显示屏无线连接。又如,所述摄像头110用于通过所述无线传输模块与若干预设关联的智能眼镜的所述显示屏无线连接。
例如,所述无线传输模块设置关联单元,用于预设至少一关联智能眼镜,所述摄像头110用于通过所述无线传输模块与关联智能眼镜无线连接。这样,多个智能眼镜之间能够相互无线连接,从而使得多用户之间能够分享图像。
例如,还包括无线传输模块,所述摄像头110连接所述无线传输模块,用于通过所述无线传输模块与服务器无线连接;所述显示屏120连接所述无线传输模块,用于通过所述无线传输模块连接所述服务器以接收图像并播放。
为了连接至无线网络,在一个实施例中,所述无线传输模块包括天线,在一个实施例中,如图1所示,所述无线传输模块包括天线130,所述天线130分别与所述摄像头110以及所述显示屏120电连接,天线130用于传输无线信号,连接至无线网络。摄像头110能够通过天线130将拍摄的图像发送,而显示屏120能够通过天线130接收图像。在一个实施例中,如图5所示,显现130与控制模块170电连接,控制模块170包括编解码子模块,编解码子模块用于对图像编码和解码,这样,摄像头110拍摄的图像通过编解码子模块的编码,以码流形式通过天线130在无线网络中传输,而显示屏120通过天线130接收无线网络中传输的码流,通过编解码子模块的解码,获得图像并播放。
为了减小天线130体积,使得智能眼镜10的体积更小,便于智能眼镜10的佩戴,在一个实施例中,如图1所示,所述天线130设置于所述支架101内。在本实施例中,天线130为金属天线130,支架101包覆于天线130外侧,这样,天线130在支架101内部,由于支架101起支撑镜框100的作用,因此,支架101能够有效将天线130隐藏,使得智能眼镜10的体积更小,便于智能眼镜10的佩戴。在另外的实施例中,所述天线130与所述支架101一体成型,例如,天线130为金属天线130,支架101为金属支架101,天线130与支架101通过焊接一体成型,例如,天线130与支架101通过铸造一体成型,通过将天线130和支架101一体成型设置,避免天线130占用额外空间,有效减小智能眼镜10的体积和重量,便于智能眼镜10的佩戴。
例如,无线网络为移动蜂窝通信网络,例如,移动蜂窝通信网络包括2G、3G和4G网络中的一种或多种,又如,无线网络为WIFI(Wireless Fidelity,基于IEEE 802.11b标准的无线局域网)网络,例如,智能眼镜10的天线130通过移动蜂窝通信网络或者WIFI网络接入到互联网,在互联网上进行图像数据的传输。
为了便于佩戴智能眼镜10的用户实现语音交互,在一个实施例中,如图4所示,该智能眼镜10还包括麦克风140和扬声器150,所述麦克风140和所述扬声器150均与所述无线传输模块电连接,例如,所述麦克风140和所述扬声器150均与所述天线130电连接,例如,所述麦克风140和所述扬声器150均通过控制模块170与所述天线130电连接,例如,麦克风140和扬声器150设置于镜框100上,例如,麦克风140和扬声器150设置于镜框100靠 近支架101的一端,例如,麦克风140和扬声器150均设置于镜框100同一端上,例如,麦克风140和扬声器150分别设置于镜框100的两端。麦克风140用于在摄像头110拍摄时,录制声音;扬声器150用于在显示屏120播放图像时,播放图像内的声音。这样,用户在佩戴智能眼镜10后,不仅能够拍摄和播放图像,并且能够录制以及播放声音,从而实现语音交互,提高了智能眼镜10的实用性。例如,控制键180通过控制模块170与麦克风140和扬声器150连接,控制键180还用于控制麦克风140和扬声器150的音量。
为了保护用户的眼睛,并且使得用户在观看图像时视线能够集中到显示屏120上,使得图像观看效果更佳,在一个实施例中,如图1和图3所示,该智能眼镜10还包括护罩160,所述护罩160连接于所述显示屏120背向所述摄像头110的一面。例如,该护罩160环绕所述显示屏120设置,这样,用户在佩戴智能眼镜10后,眼睛边缘的脸部能够贴紧于护罩160,一方面能够有效保护用户眼睛,避免观看距离过近而导致视力受影响,另一方面,减少外部环境对显示屏120的干扰,使得用户的视线能够集中到显示屏120上,使得观看效果更佳。
为了使得护罩160的使用更为舒适,例如,所述护罩160为橡胶护罩160,橡胶制成的护罩160材质柔软,使用更为舒适,例如,所述护罩160具有弧形结构,例如,护罩160远离显示屏120的一边具有弧形结构,弧形结构与人体的脸部更为匹配,进而使得护罩160更易贴紧脸部,使得护罩160的使用更为舒适。
在一个实施例中,护罩160的厚度为30mm~45mm,优选地,护罩160厚度为36mm~42mm,优选地,护罩160厚度为38mm,具体地,护罩160厚度为护罩160与显示屏120连接的一边至护罩160远离显示屏120另一边的距离,应该理解的是,护罩160的厚度不宜太大,太大则使得用户眼睛与显示屏120距离太远,使得用户无法清楚观看图像的细节,护罩160的厚度也不宜太小,太小则使得用户眼睛与显示屏120距离太近,容易造成用户视觉疲劳,导致视力受影响,因此,本实施例中,护罩160厚度为38mm能够有效保护用户的眼睛,并且使得用户观看图像的效果更佳。
例如,护罩160的厚度与显示屏120的宽度的比例为(0.5~0.8):1,优选地,护罩160的厚度与显示屏120的宽度的比例为0.618:1,应该理解的是,用户观看显示屏120的距离与显示屏120的大小正相关,显示屏120越大,则观看距离越远,显示屏120越小,则观看距离越近,因此,在本实施例中,护罩160的厚度与显示屏120的宽度呈正相关函数关系,且护罩160的厚度与显示屏120的宽度的比例为0.618:1,这样,使得用户能够清晰地观看图像,且能够避免由于与显示屏120距离过近而导致的视觉疲劳。
为了使得拍摄的图像更为形象、逼真,在一个实施例中,请参见图1和图2,所述摄像头110数量为两个,两个所述摄像头110对称设置于所述镜框100上,例如,两个摄像头110以镜框100的中轴线为对称轴对称设置于镜框100上,例如,两个摄像头110设置于镜框100的同一水平线上,例如,如图1和图3所示,显示屏120的数量为两个,两个显示屏120分别设置于镜框100内,这样,当用户佩戴智能眼镜10进行图像拍摄时,通过两个摄像头110在同一水平面上以不同水平角度偏差拍摄图像,从而使得两个图像具有一定的偏差角度,而两个图像发送至显示屏120后,两个显示屏120分别显示两个显示屏120对应拍摄的图像,进而使得两个显示屏120显示的图像具有水平角度偏差,更为符合人体左眼和右眼的视觉角度,从而使得图像呈现三维效果,显示效果更佳,图像更为形象、逼真。
例如,两个显示屏120用于播放同一图像,例如,两个显示屏120用于播放不同图像,例如,通过控制键180控制两个显示屏120播放同一图像或者播放不同图像,这样,当图像源来自同一摄像头110时,两个显示屏120能够同时播放同一图像,当图像源来自两个不同摄像头110时,两个显示屏120分别对应显示两个摄像头110的图像,进而使得产生的视觉效果更形象、逼真。
在另外的实施例中,将两个摄像头110拍摄的图像的每一帧图像沿图像的竖直方向将两张图像均匀切分成若干份像素列,随后将切分后的像素列逐一按顺序重叠合成三维图像,将多帧三维图像合成图像,进而使得图像具有三维效果,将该合成图像在一个显示设备上显示,能够使得图像播放具有三维效果。
如图6所示,一实施例的一种摄像显示装置20,包括:第一智能眼镜210和第二智能眼镜220,所述第一智能眼镜210和所述第二智能眼镜220通过无线连接;所述第一智能眼镜210包括第一镜框211、第一摄像头212、第一显示屏213和第一无线传输模块,所述第一镜框211的两端的一面分别连接有第一支架214,所述第一显示屏213设置于所述第一镜框211上,所述第一摄像头212设置于所述第一镜框211上,且所述第一摄像头212朝向所述第一显示屏213背向所述第一支架214的方向设置,所述第一无线传输模块分别与所述第一摄像头212和所述第一显示屏213电连接;所述第二智能眼镜220包括第二镜框221、第二摄像头222、第二显示屏223和第二无线传输模块,所述第二镜框221的两端的一面分别连接有第二支架224,所述第二显示屏223设置于所述第二镜框221上,所述第二摄像头222设置于所述第二镜框221上,且所述第二摄像头222朝向所述第二显示屏223背向所述第二支架224的方向设置,所述第二无线传输模块分别与所述第二摄像头222和所述第二显示屏223 电连接;所述第一摄像头212用于拍摄图像,并通过所述第一无线传输模块将图像发送至所述第二显示屏223;所述第二摄像头222用于拍摄图像,并通过所述第二无线传输模块将图像发送至所述第一显示屏213;所述第一显示屏213用于通过所述第一无线传输模块接收图像,并播放图像;所述第二显示屏223用于通过所述第二无线传输模块接收图像,并播放图像。
具体地,使用时,用户佩戴第一智能眼镜210,通过第一智能眼镜210的第一摄像头212进行拍摄,第一摄像头212拍摄的图像通过无线网络实时传输至第二智能眼镜220上的第二显示屏223,另一用户佩戴第二智能眼镜220,可实时观看第二显示屏223上的播放的图像,由于智能眼镜具有极高的灵活性,使得用户在佩戴智能眼镜时无需手持拍摄设备或播放设备,进而使得用户双手得到解放,便于用户操作以及活动,使得用户拍摄或观看更为方便。
在一个实施例中,第一无线传输模块包括第一天线215,第二无线传输模块包括第二天线225,所述第一天线215与所述第一摄像头212以及所述第一显示屏213电连接,所述第二天线225与所述第二摄像头222以及所述第二显示屏223电连接,所述第一天线215与所述第二天线225通过无线连接。具体地,第一智能眼镜210通过第一天线215接入到无线网络,第二智能眼镜220通过第二天线225接入到无线网络,从而使得第一智能眼镜210和第二智能眼镜220实现无线连接。
值得一提的是,本实施例中,第一智能眼镜210和第二智能眼镜220所拍摄的图像能够相互发送,例如,第二智能眼镜220的第二摄像头222拍摄的图像,通过无线实时网络传输到第一智能眼镜210的第一显示屏213上,在第一显示屏213上显示;或者,第一智能眼镜210的第一摄像头212拍摄的图像通过无线网络实时传输至第二智能眼镜220的第二显示屏223上,在第二显示屏223上显示。这样,两个用户能够相互切换显示屏的画面,能够观看到对方所在环境拍摄的图像。
在一个实施例中,所述第一摄像头212与所述第一显示屏213电连接,所述第二摄像头222与所述第二显示屏223电连接;所述第一摄像头212还用于拍摄图像,并将图像发送至所述第一显示屏213;所述第一显示屏213还用于接收所述第一摄像头212拍摄的图像,并播放图像;所述第二摄像头222还用于拍摄图像,并将图像发送至所述第二显示屏223;所述第二显示屏223还用于接收所述第二摄像头222拍摄的图像,并播放图像。例如,第一智能眼镜210的第一显示屏213显示第二摄像头222拍摄的图像,又如,第一智能眼镜210的第一显示屏213显示第一摄像头212拍摄的图像,这样,用户能够通过控制键控制显示屏播 放用户佩戴的智能眼镜所拍摄的图像或者其他用户佩戴的智能眼镜所拍摄的图像。
在另外的实施例中,摄像显示装置20还可以包括多个智能眼镜,每一智能眼镜均配备摄像头、显示屏和天线,多个用户之间可以相互发送拍摄图像,且均能够观看其他用户拍摄的图像,通过设置在智能眼镜上的控制键,实现图像的切换。例如,还包括服务器,多个智能眼镜之间通过服务器相互连接,服务器用于接收图像,并转发图像,这样多个智能眼镜之间实现了实时的图像数据的交互,例如,智能眼镜配备了麦克风和扬声器,多个智能眼镜之间还能传输语音数据,实现了语音的交互。
应该说明的是,上述系统实施例中,所包括的各个模块只是按照功能逻辑进行划分的,但并不局限于上述的划分,只要能够实现相应的功能即可;另外,各功能单元的具体名称也只是为了便于相互区分,并不用于限制本发明的保护范围。
另外,本领域普通技术人员可以理解实现上述各实施例方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,相应的程序可以存储于可读取存储介质中。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不移动矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种智能眼镜(10),其特征在于,包括镜框(100)、摄像头(110)、显示屏(120)和无线传输模块,所述镜框(100)的两端分别连接有支架(101),所述显示屏(120)设置于所述镜框(100)上,所述摄像头(110)设置于所述镜框(100)上,且所述摄像头(110)朝向所述显示屏(120)背向所述支架(101)的方向设置,所述无线传输模块分别与所述摄像头(110)和所述显示屏(120)电连接;
    所述摄像头(110)用于拍摄图像,并通过所述无线传输模块发送图像;
    所述显示屏(120)用于通过所述无线传输模块接收图像,并播放图像。
  2. 根据权利要求1所述的智能眼镜(10),其特征在于,所述摄像头(110)连接所述无线传输模块,用于通过所述无线传输模块连接至无线网络。
  3. 根据权利要求2所述的智能眼镜(10),其特征在于,所述无线传输模块设置关联单元,用于预设至少一关联智能眼镜,所述摄像头(110)用于通过所述无线传输模块与关联智能眼镜无线连接。
  4. 根据权利要求1所述的智能眼镜(10),其特征在于,所述摄像头(110)连接所述无线传输模块,用于通过所述无线传输模块与服务器无线连接;
    所述显示屏(120)连接所述无线传输模块,用于通过所述无线传输模块连接所述服务器以接收图像并播放。
  5. 根据权利要求1所述的智能眼镜(10),其特征在于,所述无线传输模块包括天线(130),所述天线(130)分别与所述摄像头(110)以及所述显示屏(120)电连接,所述天线(130)设置于所述支架(101)内。
  6. 根据权利要求1所述的智能眼镜(10),其特征在于,所述支架(101)上设置有控制键(180),所述控制键(180)与所述显示屏(120)以及所述摄像头(110)电连接。
  7. 根据权利要求1所述的智能眼镜(10),其特征在于,还包括麦克风(140)和扬声器(150),所述麦克风(140)和所述扬声器(150)均与所述无线传输模块电连接。
  8. 根据权利要求1所述的智能眼镜(10),其特征在于,所述摄像头(110)与所述显示屏(120)电连接;
    所述摄像头(110)还用于拍摄图像,并将图像发送至所述显示屏(120);
    所述显示屏(120)还用于接收所述摄像头(110)拍摄的图像,并播放图像。
  9. 根据权利要求1所述的智能眼镜(10),其特征在于,所述摄像头(110)的数量为两个,两个所述摄像头(110)对称设置于所述镜框(100)上。
  10. 一种摄像显示装置(20),其特征在于,包括第一智能眼镜(210)和第二智能眼镜(220),所述第一智能眼镜(210)和所述第二智能眼镜(220)通过无线连接;
    所述第一智能眼镜(210)包括第一镜框(211)、第一摄像头(212)、第一显示屏(213)和第一无线传输模块,所述第一镜框(211)的两端的一面分别连接有第一支架(214),所述第一显示屏(213)设置于所述第一镜框(211)上,所述第一摄像头(212)设置于所述第一镜框(211)上,且所述第一摄像头(212)朝向所述第一显示屏(213)背向所述第一支架(214)的方向设置,所述第一无线传输模块分别与所述第一摄像头(212)和所述第一显示屏(213)电连接;
    所述第二智能眼镜(220)包括第二镜框(221)、第二摄像头(222)、第二显示屏(223)和第二无线传输模块,所述第二镜框(221)的两端的一面分别连接有第二支架(224),所述第二显示屏(223)设置于所述第二镜框(221)上,所述第二摄像头(222)设置于所述第二镜框(221)上,且所述第二摄像头(222)朝向所述第二显示屏(223)背向所述第二支架(224)的方向设置,所述第二无线传输模块分别与所述第二摄像头(222)和所述第二显示屏(223)电连接;
    所述第一摄像头(212)用于拍摄图像,并通过所述第一无线传输模块将图像发送至所述第二显示屏(223);
    所述第二摄像头(222)用于拍摄图像,并通过所述第二无线传输模块将图像发送至所述第一显示屏(213);
    所述第一显示屏(213)用于通过所述第一无线传输模块接收图像,并播放图像;
    所述第二显示屏(223)用于通过所述第二无线传输模块接收图像,并播放图像。
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