WO2018120231A1 - 一种智能眼镜 - Google Patents

一种智能眼镜 Download PDF

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Publication number
WO2018120231A1
WO2018120231A1 PCT/CN2016/113977 CN2016113977W WO2018120231A1 WO 2018120231 A1 WO2018120231 A1 WO 2018120231A1 CN 2016113977 W CN2016113977 W CN 2016113977W WO 2018120231 A1 WO2018120231 A1 WO 2018120231A1
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Prior art keywords
display screen
smart glasses
cameras
camera
display
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PCT/CN2016/113977
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English (en)
French (fr)
Inventor
孙立军
雷先友
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上海摩软通讯技术有限公司
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Priority to PCT/CN2016/113977 priority Critical patent/WO2018120231A1/zh
Publication of WO2018120231A1 publication Critical patent/WO2018120231A1/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
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof

Definitions

  • the present application relates to the field of portable wearable devices, and in particular, to smart glasses.
  • Smart glasses like smart phones, have a separate operating system, which can be installed by software, games, and other software service providers. You can add schedules, map navigation, interact with friends, and take photos by voice or motion control. A general term for such a type of glasses that can be used to implement wireless network access through video communication, video calling with friends, and the like.
  • Virtual Reality (VR) is a high-tech that has emerged in recent years. It uses computer simulation to generate a virtual world in three-dimensional space, providing users with simulations of visual, auditory, tactile and other senses. Under the circumstance, you can observe things in the three-dimensional space in a timely and unrestricted manner.
  • the inventors have found that the current smart glasses are usually used, if the environment needs to be viewed, the smart glasses stop displaying the images being played, and then the user can stop using the smart glasses and take off. Glasses, viewing the surrounding environment, complex operation, reducing the flexibility of smart glasses.
  • One technical problem to be solved by some embodiments of the present invention is to provide a smart glasses that intelligently view the surrounding environment without affecting the normal display of images by the smart glasses.
  • An embodiment of the present application provides a smart glasses, including: a glasses body and a first display
  • the screen further includes: a second display screen and a camera;
  • the lens body comprises: a frame portion and a tripod portion, the first display screen is disposed on the frame portion; the camera is located outside the lens body; and the second display screen is connected to the frame portion It is used to display the image captured by the camera, in working state, parallel to the first display.
  • the added camera is used to capture the surrounding environment, and the image is displayed on the second display screen because the second display screen and the first display
  • the display screens are parallel, so that the surrounding environment can be displayed on the second display screen without affecting the normal display screen of the first display of the smart glasses, so that the surrounding environment can be viewed in real time while using the smart glasses.
  • the shooting directions of the cameras are different, and the second display screen is used to display images captured by the cameras.
  • Setting multiple cameras to shoot different directions and multi-angle shooting enhances the accuracy of detection of the surrounding environment, thereby improving the ability of smart glasses to detect the environment.
  • the second display screen is configured to display images captured by the cameras in turn, or to simultaneously display images captured by the cameras.
  • the second display screen displays the pictures taken by each camera in turn, ensuring that there is no missing view of the surrounding environment, and the second display screen can simultaneously display the images captured by the cameras, which is a different display mode for the surrounding environment image, and the second display is enhanced.
  • the display shows the flexibility of the image.
  • each camera is symmetrically disposed on both sides of the stand portion.
  • the camera is symmetrically set to ensure that the detection range does not overlap and the maximum range is detected.
  • the lens body further includes: an extension bracket, the extension bracket is connected to one end of the tripod portion, and the end of the extension bracket away from the tripod portion is provided with a camera.
  • an extension bracket Use the extension bracket and set the camera on the extension bracket away from the tripod end, which increases the detection of the rear environment of the smart glasses, and Moreover, the use of the extension frame avoids the obstruction of the camera head by the human head, so that the environmental detection is more complete and accurate.
  • the extension bracket is collapsible.
  • the extension bracket can be contracted, so that the glasses wearer can extend and extend the bracket according to the situation to adapt to the wearing of the glasses, and at the same time, the glasses can be conveniently carried.
  • the smart glasses further include: driving means for controlling the second display screen to move to a position at a predetermined distance from the first display screen. Since the second display screen is parallel to the first display screen, the second display screen reaches a proper distance from the first display screen by the control of the driving device, which is more advantageous for viewing the second display screen display while using the first display screen. Content.
  • the driving device includes: a motor and a slide rail; the motor is coupled to the glasses body, the slide rails are respectively coupled to the motor and the second display screen; and the motor is configured to drive the second display screen on the slide rails mobile.
  • the motor provides power for the movement of the second display screen, which makes the second display screen smoother and more stable when moving, and saves power.
  • the second display screen has a rotating shaft on a side close to the frame portion, and the second display screen is rotated by the rotating shaft. With the rotating shaft, the angle adjustment of the second display screen can be adjusted, and when the second display screen is not in use, it can be retracted to the side of the frame, so that the visual volume of the smart glasses is more flexible and compact.
  • FIG. 1 is a schematic structural view of a smart eyeglass according to a first embodiment of the present application
  • FIG. 2 is a schematic structural diagram of a smart eyeglass according to a second embodiment of the present application.
  • FIG. 3 is a schematic structural diagram of a smart glasses according to a third embodiment of the present application.
  • FIG. 4 is a schematic view showing the operation of a motor and a slide rail in a smart eyeglass according to a third embodiment of the present application;
  • FIG. 5 is a schematic structural view showing rotation of a second display screen in a smart glasses according to a third embodiment of the present application.
  • a first embodiment of the present application relates to a smart eyewear.
  • the smart glasses may be virtual reality (VR) glasses, or may be Augmented Reality (“AR”) glasses, or may be Mixed Reality (“MR”) glasses.
  • VR virtual reality
  • AR Augmented Reality
  • MR Mixed Reality
  • smart glasses are used.
  • the VR glasses will be described as an example.
  • the specific structure is as shown in FIG. 1, including but not limited to: the glasses body 101, the first display screen 102, the second display screen 103, and the cameras (1041, 1042, and 1043).
  • the lens body 101 includes a frame portion 1011 and a stand portion 1012.
  • the first display screen 102 is disposed on the frame portion 1011, and the camera is located outside the lens body 101. That is, the camera can be located on the frame portion 1011 and the frame portion 1012. .
  • the camera 1041 is located at the edge of the frame portion 1011 for photographing the front side of the pair of glasses, and the other two cameras 1042 and 1043 are symmetrically located on both sides of the stand portion 1012 (in In FIG.
  • the camera 1043 is disposed on the right side of the stand portion 1012, and the camera 1042 is disposed on the left side of the stand portion 1012.
  • the camera 1042 and the camera 1043 are used to photograph the scenes on both sides of the frame portion.
  • the second display screen 103 is connected to the frame portion 1011 for displaying an image captured by the camera, and is in parallel with the first display screen 102 in an operating state.
  • the added three cameras can capture the scenes of the smart glasses in different directions
  • the camera 1041 captures the environment in front of the smart glasses
  • the camera 1042 captures the environment on the left side of the smart glasses
  • the camera 1043 shoots on the right side of the smart glasses.
  • the second display screen 103 can display the images captured by the cameras in turn when displaying the captured images.
  • the second display 103 is displayed on the displayed camera, the default is displayed from the 1st, and the image captured by each camera is displayed for 10 seconds, and the images taken by the cameras No. 1 to No. 3 are sequentially played in turn. It can also display the images captured by each camera at the same time.
  • the smart glasses have three cameras. When the second display is used to display the images captured by the camera, the images displayed by the three cameras are simultaneously displayed on the second display. The image occupies a portion of the second display.
  • the smart glasses in the embodiment add a second display screen and a plurality of cameras, and the environment around the smart glasses is photographed by the camera, and the cameras capture images in different directions, thereby enhancing the detection of the surrounding environment.
  • Accuracy, multi-aspect shooting improves the ability of smart glasses to detect the environment; the second display shows the captured image, and parallel with the first display, so as not to affect the normal display of the first display of the smart glasses.
  • the surrounding environment is displayed on the second display screen, and the surrounding environment is viewed in real time while using the smart glasses.
  • a second embodiment of the present application relates to a smart eyewear.
  • the second embodiment is an improvement of the first embodiment, and the main improvement is that in the second embodiment, an extension bracket is added to the lens body, An end of the extension bracket away from the stand portion is provided with a camera and the extension bracket is retractable.
  • the eyeglass body of the smart glasses in the embodiment of the present invention further includes: an extension bracket 105, and the camera 1044 is disposed on the extension bracket.
  • the extension bracket 105 is connected to one end of the tripod portion 1012, and the end of the extension bracket 105 away from the tripod portion 1012 is provided with a camera 1044.
  • the camera 1044 is used to capture images behind the glasses.
  • the smart glasses can provide a comprehensive view of the surrounding environment.
  • the extension bracket 105 is collapsible for retracting into the footrest portion 1012 when the environment behind the glasses is not required to be viewed.
  • the extension bracket is added, and the end of the extension bracket away from the tripod portion is provided with a camera, which realizes the view of the environment behind the smart glasses, and is used together with the other three cameras of the smart glasses to realize the intelligence.
  • the omnidirectional view of the surrounding environment of the glasses; the extension bracket can be contracted, so that the smart glasses can be retracted in the tripod portion of the smart glasses when the rear environment is not required to be viewed, so that the wearer can flexibly select.
  • the third embodiment of the present application relates to a smart glasses, and the third embodiment is an improvement of the second embodiment.
  • the main improvement is that in the third embodiment, the smart glasses further include: a driving device and a rotating shaft.
  • the driving device is configured to control the second display screen to move to a position at a predetermined distance from the first display screen.
  • the structure of the driving device is as shown in FIG. 3, and the driving device includes a motor 1061 and a sliding rail 1062.
  • the motor 1061 is coupled to the lens body 101, and the slide rails 1062 are coupled to the motor 1061 and the second display screen 103, respectively; and the motor 1061 is configured to drive the second display screen 103 to move on the slide rails 1062.
  • the slide rail and the motor cooperate as shown in FIG. 4, the slide rail 1062 is provided with a straight rack 1071, and the motor 1061 is equipped with a gear 1072.
  • the motor 1061 The upper gear 1072 drives the straight rack 1071 on the slide rail 1062.
  • the slide rail 1062 slides out of the glasses body of the smart glasses, and the second display screen 103 connected to the slide rail 1062 moves together with the slide rail 1062 to remove the glasses body of the smart glasses.
  • the second display screen is parallel to the first display screen, and the distance between the second display screen and the first display screen may be preset, and the preset distance is convenient for the wearer to view the content of the second display screen, for example, preset The distance is 50cm.
  • the motor 1061 can control the distance between the second display screen and the first display screen to a preset distance.
  • the second display screen 103 may also have a rotating shaft 108 near the side of the frame. As shown in FIG. 4, the rotating shaft 108 is used for the second display screen 103 to rotate by the rotating shaft, when the second display screen 103 is not required to be used. At the same time, through the rotating shaft 108, the second display screen 103 can be rotated back to the side of the frame, as shown in FIG.
  • the driving device is added, and the motor in the driving device provides power for the movement of the second display screen, and the sliding rails in the driving device make the second display screen more smooth and stable when moving, saving power Controlling the driving device so that the second display screen reaches a suitable distance from the first display screen, which is more convenient for viewing the content displayed by the second display screen while using the first display screen; and near the frame portion of the second display screen
  • One side has a rotating shaft, and the second display screen rotates with the rotating shaft to adjust the angle of the second display screen, so that the glasses wearer can view the content of the second display screen, and at the same time, retract the frame to the frame when the second display screen is not used.
  • the visual volume of the smart glasses is more flexible and compact.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Health & Medical Sciences (AREA)
  • Ophthalmology & Optometry (AREA)
  • Controls And Circuits For Display Device (AREA)

Abstract

一种智能眼镜,包括:眼镜本体(101)、第一显示屏(102)、第二显示屏(103)和摄像头(1041、1042、1043);该眼镜本体(101)包括镜框部(1011)和脚架部(1012),该第一显示屏(102)设置在该镜框部(1011)上;该摄像头(1041、1042、1043)位于该眼镜本体(101)的外侧;该第二显示屏(103)与该镜框部(1011)连接,用于显示该摄像头(1041、1042、1043)拍摄到的影像,在工作状态,该第二显示屏(103)与该第一显示屏(102)平行。

Description

一种智能眼镜 技术领域
本申请涉及便携式穿戴设备技术领域,特别涉及一种智能眼镜。
背景技术
智能眼镜,是指像智能手机一样,具有独立的操作系统,可以由用户安装软件、游戏等软件服务商提供的程序,可通过语音或动作操控完成添加日程、地图导航、与好友互动、拍摄照片和视频、与朋友展开视频通话等功能,并可以通过移动通讯网络来实现无线网络接入的这样一类眼镜的总称。虚拟现实(Virtual Reality,简称“VR”),是近年来出现的高新技术,它利用电脑模拟产生一个三维空间的虚拟世界,提供使用者关于视觉、听觉、触觉等感官的模拟,让使用者如同身历其境一般,可以及时、没有限制地观察三度空间内的事物。
发明人在实现本发明的过程中发现,现在的智能眼镜,通常在使用时,如果需要查看周围环境,智能眼镜停止显示正在播放的影像,才能查看周围环境,或者用户停止使用智能眼镜,摘下眼镜,查看周围环境,操作复杂,降低了智能眼镜的灵活性。
发明内容
本发明部分实施例所要解决的一个技术问题在于提供一种智能眼镜,使得在不影响智能眼镜正常显示影像的同时,智能查看周围的环境。
本申请的一个实施例提供了一种智能眼镜,包括:眼镜本体和第一显示 屏,还包括:第二显示屏和摄像头;眼镜本体,包括:镜框部和脚架部,第一显示屏设置在镜框部上;摄像头位于眼镜本体的外侧;第二显示屏与镜框部连接,用于显示摄像头拍摄到的影像,在工作状态,与第一显示屏平行。
本实施例提供的智能眼镜,通过在智能眼镜上增加第二显示屏和摄像头,增设的摄像头用于拍摄周围的环境,并将图像显示在第二显示屏上,因为第二显示屏与第一显示屏平行,所以,能实现不影响智能眼镜第一显示屏正常显示画面的情况下,将周围环境显示在第二显示屏上,实现在使用智能眼镜的同时,实时查看周围环境。
在本申请的一个实施例中,摄像头至少有2个,各摄像头的拍摄方向不同,该第二显示屏用于显示各摄像头拍摄到的影像。设置多个摄像头拍摄不同方向,多角度拍摄,增强了对周围环境检测的准确性,从而提高了智能眼镜环境检测的能力。
在本申请的一个实施例中,第二显示屏,用于轮流显示各摄像头拍摄到的影像,或者用于同时显示各摄像头拍摄到的影像。第二显示屏轮流显示各摄像头拍摄的画面,保证没有遗漏的查看周围环境,并且,第二显示屏还能同时显示各摄像头拍摄的影像,是对周围环境影像的不同显示模式,增强了第二显示屏显示影像的灵活性。
在本申请的一个实施例中,各摄像头对称设置在该脚架部的两侧。摄像头对称设置,确保检测范围不重叠,最大范围的检测周围环境。
在本申请的一个实施例中,眼镜本体还包括:延伸支架,延伸支架和脚架部的一端连接,延伸支架远离脚架部的一端设有摄像头。使用延伸支架,并在延伸支架远离脚架部端设置摄像头,增加了对智能眼镜后部环境的检测,并 且,使用延伸架,避免了人体头部对摄像头的遮挡,使环境检测更加完整准确。
在本申请的一个实施例中,该延伸支架可收缩。通过延伸支架可收缩,使得眼镜佩戴者可根据情况伸缩延伸支架以适应眼镜的佩戴,同时,可以方便携带眼镜。
在本申请的一个实施例中,智能眼镜还包括:驱动装置,用于控制所述第二显示屏移动至与第一显示屏间距为预设距离的位置。由于第二显示屏与第一显示屏平行,通过驱动装置的控制,使第二显示屏到达与第一显示屏合适的间距,更有利于在使用第一显示屏的同时查看第二显示屏显示的内容。
在本申请的一个实施例中,驱动装置包括:马达和滑轨;马达与眼镜本体连接,滑轨分别与马达和第二显示屏连接;马达用于驱动该第二显示屏在该滑轨上移动。马达为第二显示屏移动提供的动力,滑轨使第二显示屏在移动时更加平滑稳定,且节省动力。
在本申请的一个实施例中,第二显示屏靠近镜框部的一侧具有转轴,第二显示屏利用转轴转动。利用转轴,可以调整第二显示屏的角度调节,还可以在第二显示屏不使用时,收回至镜框一侧,使智能眼镜的视觉体积较为灵活小巧。
附图说明
一个或多个实施例通过与之对应的附图中的图片进行示例性说明,这些示例性说明并不构成对实施例的限定,附图中具有相同参考数字标号的元件表示为类似的元件,除非有特别申明,附图中的图不构成比例限制。
图1根据本申请第一实施例的一种智能眼镜的结构示意图;
图2是根据本申请第二实施例的一种智能眼镜的结构示意图;
图3是根据本申请第三实施例的一种智能眼镜的结构示意图;
图4是根据本申请第三实施例的一种智能眼镜中马达与滑轨的工作示意图;
图5根据本申请第三实施例的一种智能眼镜中第二显示屏转动的结构示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明部分实施例进行进一步详细说明。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。
本申请的第一实施例涉及一种智能眼镜。智能眼镜可以虚拟现实(VR)眼镜,还可以是增强现实(Augmented Reality,简称“AR”)眼镜,还可以是混合现实(Mixreality,简称“MR”)眼镜,在本实施方式中,以智能眼镜为VR眼镜为例进行说明。具体结构如图1所示,包括但不限于:眼镜本体101、第一显示屏102、第二显示屏103和摄像头(1041、1042和1043)。
眼镜本体101包括:镜框部1011和脚架部1012,第一显示屏102设置在镜框部1011上,摄像头位于该眼镜本体101的外侧,也就是说摄像头可以位于镜框部1011和脚架部1012上。其中,摄像头至少有2个,各个摄像头的拍摄方向不同,且摄像头对称设置在该脚架部1012的两侧,本实施例中以3个摄像头进行说明。摄像头1041位于镜框部1011边缘处,用于拍摄眼镜所对正前方的景象,另外两个摄像头1042和1043分别对称位于脚架部1012的两侧(在 图1中摄像头1043是布置在脚架部1012的右侧,摄像头1042是布置在脚架部1012的左侧),摄像头1042和摄像头1043用于拍摄眼镜脚架部两侧的景象。第二显示屏103与镜框部1011连接,用于显示摄像头拍摄的影像,在工作状态,与第一显示屏102平行。
在本实施例中,增加的3个摄像头,可以拍摄智能眼镜不同方向的景象,摄像头1041拍摄位于智能眼镜前方的环境,摄像头1042拍摄位于智能眼镜左侧的环境,摄像头1043拍摄位于智能眼镜右侧的环境,第二显示屏103在显示拍摄到的影像时,可以轮流显示各摄像头拍摄到的影像,例如,有3个摄像头,对3个摄像头编号分别为1号、2号和3号,第二显示屏103在显示的摄像头拍摄到的影像的时候,默认从1号开始显示,每个摄像头拍摄的影像显示10秒,依次轮流播放1号至3号的摄像头拍摄的画面。还可以同时显示各摄像头拍摄到的影像,例如,智能眼镜有3个摄像头,当需要使用第二显示屏显示摄像头拍摄的影像时,第二显示屏上同时显示3个摄像头拍摄的影像,每个影像占据第二显示屏一部分。
相对于现有技术而言,本实施例中的智能眼镜,增加第二显示屏和多个摄像头,通过摄像头拍摄智能眼镜周围的环境,各个摄像头拍摄不同方向的影像,增强了对周围环境的检测的准确性,多方位拍摄提高了智能眼镜对环境的检测能力;第二显示屏显示拍摄到的影像,且与第一显示屏平行,实现不影响智能眼镜第一显示屏正常显示画面的情况下,将周围环境显示在第二显示屏上,实现在使用智能眼镜的同时,实时查看周围环境。
本申请的第二实施例涉及一种智能眼镜。第二实施例是第一实施例的改进,主要改进之处在于:在第二实施例中,眼镜本体上增设了:延伸支架,该 延伸支架远离脚架部的一端设有摄像头且该延伸支架可伸缩。
具体结构如图2所示,本发明实施例中的智能眼镜的眼镜本体还包括:延伸支架105,该延伸支架上设有摄像头1044。
具体的说,延伸支架105和脚架部1012的一端连接,该延伸支架105远离该脚架部1012的一端设有摄像头1044。摄像头1044用于拍摄处于眼镜后方的影像,与其他3个摄像头一起使用时,智能眼镜可实现对周围环境全方位的查看。延伸支架105可收缩,用于在无需查看眼镜后方环境时,延伸支架可收回至脚架部1012中。
本实施例中提供的智能眼镜,增加延伸支架,该延伸支架远离脚架部的一端设有摄像头,实现了对智能眼镜后方环境的查看,同智能眼镜的其他3个摄像头一起使用,实现对智能眼镜周围环境全方位的查看;延伸支架可收缩,使得智能眼镜在无需查看后方环境时,收回智能眼镜的脚架部中,方便佩戴者灵活选择。
本申请第三实施例涉及一种智能眼镜,第三实施例是第二实施例的改进,主要改进之处在于:在第三实施例中,智能眼镜还包括:驱动装置和转轴。
具体的说,驱动装置用于控制第二显示屏移动至与第一显示屏间距为预设距离的位置。驱动装置结构如图3所示,驱动装置包括:马达1061和滑轨1062。
马达1061与该眼镜本体101连接,滑轨1062分别与马达1061和第二显示屏103连接;马达1061用于驱动第二显示屏103在该滑轨1062上移动。滑轨和马达配合如图4所示,滑轨1062上装有直齿条1071,马达1061上装有齿轮1072,当需要使用第二显示屏103显示摄像头拍摄的影像时,马达1061 上的齿轮1072带动滑轨1062上的直齿条1071,滑轨1062滑动出智能眼镜的眼镜本体,与滑轨1062连接的第二显示屏103同滑轨1062一同移动出智能眼镜的眼镜本体,此时第二显示屏与第一显示屏平行,第二显示屏与第一显示屏之间的距离可以预先设置,该预设距离应方便佩戴者查看第二显示屏的内容,例如,预设距离为50cm。马达1061可控制第二显示屏与第一显示屏距离达到预设的距离。
值得一提的是,第二显示屏103靠近镜框的一侧还可以具有转轴108,如图4所示,转轴108用于第二显示屏103利用转轴转动,当不需要使用第二显示屏103的时候,通过转轴108,第二显示屏103可以转动收回至镜框一侧,如图5所示。
本实施例中提供的智能眼镜,增加驱动装置,驱动装置中的马达为第二显示屏的移动提供了动力,驱动装置中的滑轨使第二显示屏在移动时更加平滑稳定,节省了动力,通过驱动装置的控制,使得第二显示屏到达与第一显示屏合适的距离,更利于在使用第一显示屏的同时查看第二显示屏显示的内容;且在第二显示屏靠近镜框部的一侧具有转轴,第二显示屏利用转轴转动,可以调整第二显示屏的角度,方便眼镜佩戴者查看第二显示屏的内容,同时,在不使用第二显示屏时,收回至镜框的一侧,使得智能眼镜的视觉体积较为灵活小巧。
本领域的普通技术人员可以理解,上述各实施方式是实现本发明的具体实施例,而在实际应用中,可以在形式上和细节上对其作各种改变,而不偏离本发明的精神和范围。

Claims (10)

  1. 一种智能眼镜,包括:眼镜本体、第一显示屏、第二显示屏和摄像头;
    其中,所述眼镜本体包括:镜框部和脚架部,所述第一显示屏设置在所述镜框部上;
    所述摄像头位于所述眼镜本体的外侧;
    所述第二显示屏与所述镜框部连接,用于显示所述摄像头拍摄到的影像,在工作状态,与所述第一显示屏平行。
  2. 根据权利要求1所述的智能眼镜,其中,所述摄像头至少有2个,各所述摄像头的拍摄方向不同,所述第二显示屏用于显示各所述摄像头拍摄到的影像。
  3. 根据权利要求2所述的智能眼镜,其中,所述第二显示屏,用于轮流显示各所述摄像头拍摄到的影像,或者用于同时显示各所述摄像头拍摄到的影像。
  4. 根据权利要求2到4中任一项所述的智能眼镜,其中,各所述摄像头对称设置在所述脚架部的两侧。
  5. 根据权利要求1到4中任一项所述的智能眼镜,其中,所述眼镜本体还包括:延伸支架,所述延伸支架和所述脚架部的一端连接,所述延伸支架远离所述脚架部的一端设有所述摄像头。
  6. 根据权利要求5所述的智能眼镜,其中,所述延伸支架可收缩。
  7. 根据权利要求1到6中任一项所述的智能眼镜,其中,所述智能眼镜还包括:驱动装置,用于控制所述第二显示屏移动至与所述第一显示屏间距为预设距离的位置。
  8. 根据权利要求7所述的智能眼镜,其中,所述驱动装置包括:马达和滑轨;所述马达与所述眼镜本体连接,所述滑轨分别与所述马达和所述第二显示屏连 接;
    所述马达用于驱动所述第二显示屏在所述滑轨上移动。
  9. 根据权利要求1到8中任一项所述的智能眼镜,其中,所述第二显示屏靠近所述镜框部的一侧具有转轴,所述第二显示屏利用所述转轴转动。
  10. 根据权利要求1至9中任意一项所述的智能眼镜,其中,所述智能眼镜为虚拟现实VR眼镜。
PCT/CN2016/113977 2016-12-30 2016-12-30 一种智能眼镜 WO2018120231A1 (zh)

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