WO2016206518A1 - 一种支架调整系统、调整支架及检测装置 - Google Patents

一种支架调整系统、调整支架及检测装置 Download PDF

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Publication number
WO2016206518A1
WO2016206518A1 PCT/CN2016/083681 CN2016083681W WO2016206518A1 WO 2016206518 A1 WO2016206518 A1 WO 2016206518A1 CN 2016083681 W CN2016083681 W CN 2016083681W WO 2016206518 A1 WO2016206518 A1 WO 2016206518A1
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Prior art keywords
distance
adjustment
real
terminal
angle
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PCT/CN2016/083681
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English (en)
French (fr)
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林舜铭
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中兴通讯股份有限公司
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Publication of WO2016206518A1 publication Critical patent/WO2016206518A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M13/00Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles
    • F16M13/02Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or attaching to, an object, e.g. tree, gate, window-frame, cycle

Definitions

  • the present application relates to, but is not limited to, the field of terminal applications, and in particular, a bracket adjustment system, an adjustment bracket, and a detection device.
  • terminals such as smartphones or tablets.
  • a smart phone to read an e-book; watching a video on a tablet, browsing a web page, editing a document, and conducting a video conference, etc.
  • holding the terminal for a long time is likely to cause a pain in the user's arm.
  • a bracket appears on the market. After the terminal is fixed on the bracket, the angle and height that the user is used when using the terminal are obtained by adjusting the bracket, and the user does not need to hold the grip. With the terminal, the problem of sore arm is solved.
  • the presence of the above-described stent solves the problem of sore arm, but if the user adjusts the posture (for example, adjusts the posture due to visual fatigue), the user needs to manually re-adjust the bracket to facilitate the use of the terminal. Moreover, as the time of using the terminal increases, the frequency of the adjustment bracket will become larger and larger, and the height and angle of the bracket need to be manually adjusted in the terminal use, which affects the user experience.
  • the present application provides a bracket adjustment system, an adjustment bracket, and a detection device, which can automatically adjust the height and angle of the terminal when used, thereby improving the user experience.
  • the present application provides a bracket adjustment system, including: an adjustment bracket and a detecting device paired with the adjustment bracket; wherein
  • the detecting device includes a distance sensor, and the detecting device is configured to detect distance information of the distance sensor to the terminal according to a preset period, and send the information to the adjusting bracket;
  • the adjustment bracket includes a calculation module and an adjustment module;
  • the calculating module is configured to calculate a real-time distance and a real-time angle between the user's eyes and the terminal according to the received distance information from the distance sensor to the terminal and the distributed position information of the distance sensor;
  • the adjusting module is configured to compare the real-time distance and the real-time angle between the calculated user's eyes and the terminal with the pre-stored reference distance and the reference angle, and adjust the adjustment bracket so that the real-time distance is equal to the reference distance, and real-time The angle is equal to the reference angle.
  • the present application provides a detecting apparatus, which includes three or more distance sensors, and the detecting apparatus further includes a distribution setting module and a transmitting module;
  • the distribution setting module is configured to set the distance sensor in an eyelid area of the user or other area that can determine the position of the eye of the user according to the distribution of the face;
  • the sending module is configured to detect distance information from the distance sensor to the terminal according to a preset period, and send the distance information from the distance sensor to the terminal to the adjustment bracket.
  • the distribution setting module is configured to distribute the distance sensor in the eyelid area of the user or other area that can determine the position of the user's eyes through the eyeglass frame according to the distribution of the face.
  • the application further provides an adjustment bracket, including a calculation module and an adjustment module; wherein
  • the calculating module is configured to calculate a real-time distance and a real-time angle between the user's eyes and the terminal according to the received distance information from the distance sensor to the terminal and the distributed position information of the distance sensor;
  • the adjustment module is configured to adjust the adjustment bracket such that the real-time distance is equal to the reference distance and the real-time angle by comparing the calculated real-time distance and the real-time angle between the user's eyes and the terminal with the pre-stored reference distance and the reference angle. Equal to the reference angle.
  • the pre-stored reference distance and the reference angle include a reference distance and a reference angle corresponding to an operation mode of using one of a camera, watching a video, viewing a webpage, reading an e-book, and viewing a picture;
  • the adjustment bracket further includes a mode selection module, The mode selection module is configured to determine a current working mode of the terminal according to an external instruction, so that the adjustment module adjusts the adjustment bracket according to a corresponding reference distance and a reference angle of the current working module of the terminal.
  • the adjustment bracket further includes an external adjustment module, the external adjustment module is configured to adjust a distance and an angle between the user's eyes and the terminal according to the received external command, and confirm that when the adjustment is completed, the adjustment will be completed.
  • the distance and angle between the user's eyes and the terminal serve as a reference distance and a reference angle.
  • the external command is a control command generated based on the sound signal.
  • the adjustment bracket is disposed on the rotor device.
  • the application further provides a computer readable storage medium storing computer executable instructions that are implemented when the computer executable instructions are executed.
  • the technical solution of the present application includes: an adjusting bracket and a detecting device paired with the adjusting bracket; wherein the detecting device includes a distance sensor, and the detecting device is configured to detect the distance from the distance sensor to the terminal according to a preset period
  • the information is sent to the adjustment bracket;
  • the adjustment bracket includes a calculation module and an adjustment module; wherein the calculation module is configured to calculate the user's eyes and the terminal according to the received distance information from the distance sensor to the terminal and the distributed position information of the distance sensor Real-time distance and real-time angle;
  • the adjustment module is configured to adjust the adjustment bracket to be real-time by comparing the calculated real-time distance and real-time angle between the user's eyes and the terminal with the pre-stored reference distance and reference angle The distance is equal to the reference distance and the real-time angle is equal to the reference angle.
  • the adjustment bracket of the fixed terminal is adjusted, so that the real-time distance and the real-time angle of the user's eyes and the terminal are equal to the pre-stored reference distance and reference angle, respectively, and automatically adjusted.
  • the distance and angle between the user's eyes and the terminal enhances the user's experience.
  • FIG. 1 is a schematic structural view of a bracket adjustment system provided by the present application.
  • FIG. 2 is a schematic structural view of a detecting device provided by the present application.
  • FIG. 3 is a schematic structural view of an adjustment bracket provided by the present application.
  • FIG. 1 is a schematic structural diagram of a bracket adjusting system provided by the present application, as shown in FIG. 1 , including: an adjusting bracket and a detecting device paired with the adjusting bracket; wherein
  • the detecting device includes a distance sensor, and the detecting device is configured to detect distance information from the distance sensor to the terminal according to a preset period, and send the information to the adjusting bracket;
  • the preset period is determined according to the statistics and analysis of the user's usage habits, and is mainly set according to the user posture adjustment amplitude and frequency, and generally can be set to about 10 seconds to 1 minute, and the specific time can be adjusted.
  • the adjustment bracket includes a calculation module and an adjustment module;
  • the calculating module is configured to calculate a real-time distance and a real-time angle between the user's eyes and the terminal according to the received distance information from the distance sensor to the terminal and the distributed position information of the distance sensor;
  • the distribution position information of the distance sensor refers to the coordinate information of the distance position of the distance sensor when the distance sensor is set; or the distance between the distance sensor and the angle formed, generally after the distance sensor is set, by manual Measurement obtained.
  • the adjustment module is configured to adjust the adjustment bracket such that the real-time distance is equal to the reference distance and the real-time angle is equal by comparing the calculated real-time distance and real-time angle between the user's eyes and the terminal with the pre-stored reference distance and the reference angle. Reference angle.
  • the detecting apparatus includes three or more distance sensors, and the detecting apparatus further includes a distribution setting module and a transmitting module;
  • a distribution setting module configured to set the distance sensor in an eyelid area of the user or other area in which the position of the user's eyes can be determined according to a distribution of faces
  • the distribution of the distance sensor is mainly set according to the distribution of the face.
  • the distance sensor is generally disposed in the eyelid region.
  • a distance sensor is disposed under the eyelids of the left and right eyes respectively.
  • the distance position is set by a distance sensor, and the distance and angle between the user's eyes and the terminal are calculated by the above three distance sensors.
  • a distance sensor may be respectively disposed in the upper eyelid region and the lower eyelid region, and the two distance sensor positions corresponding to the right eye are generally symmetric with the two distance sensors corresponding to the left eye.
  • the distance sensor is mainly for obtaining the angle and distance for calculation, and for those skilled in the art, more than three distance sensors which can obtain the angle and the distance according to the conventional technique can obtain more accurate position and angle information.
  • the sending module is configured to detect distance information from the distance sensor to the terminal according to a preset period, and send the distance information from the distance sensor to the terminal to the adjustment bracket.
  • the distribution setting module is configured to distribute the distance sensor in an eyelid area of the user or other area where the position of the user's eyes can be determined by the eyeglass frame according to the distribution of the face.
  • the frame of the glasses is only an optional embodiment of the distance sensor.
  • the distance sensor may be directly attached according to the distribution of the face, or the bracket capable of fixing the distance sensor may be fixed to the user.
  • the position of the face can be variously designed and is not limited to the structure of the glasses.
  • FIG. 3 is a schematic structural diagram of an adjustment bracket provided by the present application. As shown in FIG. 3, the adjustment bracket includes a calculation module and an adjustment module;
  • the calculation module is configured to calculate a real-time distance and a real-time angle between the user's eyes and the terminal according to the received distance information from the distance sensor to the terminal and the distributed position information of the distance sensor;
  • the adjustment module is configured to adjust the adjustment bracket such that the real-time distance is equal to the reference distance and the real-time angle is equal to the reference by comparing the calculated real-time distance and real-time angle between the user's eyes and the terminal with the pre-stored reference distance and reference angle. angle.
  • the distance and angle between the user's eyes and the terminal can be adjusted by the mechanical structure of the adjustment angle and the telescopic function and the power device for controlling the mechanical structure provided on the adjustment bracket.
  • Pre-stored reference distances and reference angles include using a camera, watching a video, watching a web page, Reading the corresponding reference distance and reference angle of various working modes, such as an e-book and viewing a picture;
  • the adjustment bracket provided by the application further includes a mode selection module, and the mode selection module is configured to determine a current working mode of the terminal according to an external command, so that The adjustment module adjusts the adjustment bracket according to a corresponding reference distance and a reference angle of the current working module of the terminal.
  • the adjustment bracket provided by the present application further includes an external adjustment module, and the external adjustment module is configured to adjust a distance and an angle between the user's eyes and the terminal according to the received external command, and confirm that the user's eyes and the terminal are to be adjusted when the adjustment is completed.
  • the distance and angle between the reference distance and the reference angle is configured to adjust a distance and an angle between the user's eyes and the terminal according to the received external command, and confirm that the user's eyes and the terminal are to be adjusted when the adjustment is completed. The distance and angle between the reference distance and the reference angle.
  • the external command is a control command generated based on the sound signal.
  • the identification of the sound signal belongs to a conventional technique of those skilled in the art, for example, a sound signal such as “upward”, “downward”, “leftward”, “rightward”, etc. issued by the user may be related to the related art.
  • the instructions are recognized and converted to control the support terminal to adjust upward, downward, left, and right, and the distance and angle of the user's eyes to the terminal are adjusted by executing the converted command.
  • the adjustment bracket provided by the present application may also be disposed on the rotor device.
  • the adjustment bracket is disposed on the rotor device, and the terminal can be used in the moving range of the rotor device, and the distance from the user's eyes to the terminal can be adjusted through the rotor bracket; if the performance of the rotor device meets the requirements, the rotor bracket can also be adjusted. The angle from the user's eyes to the terminal.
  • the adjustment bracket of the fixed terminal is adjusted, so that the real-time distance and the real-time angle of the user's eyes and the terminal are respectively equal to the pre-stored reference distance and reference angle, and the user's eyes are automatically adjusted.
  • the distance and angle between the terminal and the terminal improve the user experience.
  • the embodiment of the present invention exemplifies a bracket adjustment system, where the bracket adjustment system includes a detection device and an adjustment bracket; wherein the adjustment bracket includes a calculation module, an adjustment module, a mode selection module, and an external adjustment module;
  • the detecting device comprises three or more distance sensors, according to the distribution of faces
  • the distance sensor is disposed in the eyelid area of the user or other area where the position of the user's eyes can be determined, and the distance information is transmitted to the adjustment bracket according to a preset period.
  • the distance information is transmitted to the adjustment bracket according to a preset period of 10 seconds.
  • the distribution position information including the distance between the respective distance sensors is transmitted to the adjustment bracket.
  • the detecting device is placed on the frame of the glasses.
  • the user wears the glasses provided by the embodiment and connects the detecting device to the adjustment bracket such that the detecting device transmits the distance information to the adjustment bracket.
  • the adjustment bracket includes a calculation module and an adjustment module;
  • the calculating module is configured to calculate a real-time distance and a real-time angle between the user's eyes and the terminal according to the distance information of the received distance sensor and according to the distributed position information of the distance sensor;
  • the real-time distance and the real-time angle between the user's eyes and the terminal are calculated as a conventional method for geometric calculation, which is not described in this embodiment.
  • the adjustment module is configured to adjust the real-time distance and the real-time angle of the user's eyes to the terminal to the reference distance by comparing the calculated real-time distance and the real-time angle between the user's eyes and the terminal with the pre-stored reference distance and the reference angle respectively. And reference angle. For example, in a preset period, the user adjusts the leaning posture.
  • the bracket adjusting system provided in this embodiment determines the real-time distance and the real-time angle by using the distance information sent by the distance sensor corresponding to the user's eyes, and compares the pre-stored reference distance and Refer to the angle to adjust the adjustment bracket.
  • the adjustment bracket provided in this embodiment refers to a hinge bracket that adjusts the fixed terminal by the power device, and the driving power device adjusts the hinge bracket by comparing the real-time distance and the reference distance and comparing the real-time angle and the reference angle.
  • corresponding reference distances and reference angles are set for different kinds of working modes, for example, for using a camera, watching a video, setting a far reference distance and a relatively comfortable reference angle; Read e-books, set closer reference distances and reference angles for clear viewing of information.
  • the specific settings can be obtained by counting and analyzing the terminal usage habits of different groups of people.
  • the adjustment bracket further includes an external adjustment module, and the user's eyes and the terminal are adjusted according to the control command by converting the received and recognized sound signal into a control command. The distance and angle between the two are confirmed. When the adjustment is completed, the distance and angle between the user's eyes and the terminal when the adjustment is completed are stored as the reference distance and the reference angle.
  • the adjustment bracket is disposed on the rotor device.
  • the real-time distance and the real-time angle of the user glasses and the terminal are respectively adjusted to be equal to the pre-stored reference distance and reference angle by the up and down movement of the rotor device.
  • Embodiments of the present invention further provide a computer readable storage medium storing computer executable instructions that are implemented when the computer executable instructions are executed.
  • each module/unit in the above embodiment may be implemented in the form of hardware, for example, by implementing an integrated circuit to implement its corresponding function, or may be implemented in the form of a software function module, for example, executing a program stored in the memory by a processor. / instruction to achieve its corresponding function.
  • Embodiments of the invention are not limited to any specific form of combination of hardware and software.
  • the adjustment bracket of the fixed terminal is adjusted, so that the real-time distance and the real-time angle of the user's eyes and the terminal are respectively equal to the pre-stored reference distance and reference angle, and the user's eyes are automatically adjusted.
  • the distance and angle between the terminal and the terminal improve the user experience.

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  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • User Interface Of Digital Computer (AREA)
  • Length Measuring Devices By Optical Means (AREA)

Abstract

提供了一种支架调整系统、调整支架及检测装置,其中,支架调整系统包括:检测装置,设置成按照预设周期检测并将从距离传感器到终端的距离信息发送到调整支架;调整支架,设置成根据接收的从距离传感器到终端的距离信息和距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。通过上述方案,根据计算获得的用户眼睛与终端的实时距离和实时角度,调整固定终端的调整支架,自动调整用户眼睛与终端之间的距离和角度,提高了用户的使用体验。

Description

一种支架调整系统、调整支架及检测装置 技术领域
本申请涉及但不限于终端应用领域,特别是一种支架调整系统、调整支架及检测装置。
背景技术
随着智能终端的普及,越来越多的人通过智能手机或平板等终端办公或者娱乐。例如:使用智能手机阅读电子书;通过平板电脑观看视频、浏览网页、编辑文档和进行视频会议等,在使用终端进行上述事项时,长时间地握持终端容易造成用户手臂酸痛。
为了改善长时间握持终端给用户带来的不良体验,市场上出现了一种支架,将终端固定在支架上后,通过调整支架获得用户在使用终端时习惯的角度和高度,用户无需再握持终端,手臂酸痛问题随之得到解决。
上述支架的出现解决了手臂酸痛的问题,但如果用户调整了姿势(例如,因视觉疲劳而调整姿势),则用户需要手动重新调整支架以便方便使用终端。而且,随着使用终端的时间的增长,调整支架的频率将越来越大,终端使用中需要不断手动调整支架的高度和角度,影响了用户的使用体验。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
为了解决上述技术问题,本申请提供一种支架调整系统、调整支架及检测装置,能够自动的调整终端使用时的高度和角度,提高用户体验。
为了达到本申请目的,本申请提供了一种支架调整系统,包括:调整支架和与调整支架配对的检测装置;其中,
所述检测装置,包括距离传感器,所述检测装置设置成按照预设周期检测距离传感器到终端的距离信息,并将其发送到调整支架;
所述调整支架包括计算模块和调整模块;其中,
所述计算模块,设置成根据接收的从距离传感器到终端的距离信息何距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;
所述调整模块,设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。
另一方面,本申请提供一种检测装置,包括3个或3个以上距离传感器,所述检测装置还包括分布设置模块和发送模块;其中,
所述分布设置模块,设置成按照人脸的分布将所述距离传感器设置在用户的眼眶区域或其他可判断用户眼睛位置的区域;
所述发送模块,设置成按照预设周期检测从所述距离传感器到所述终端的距离信息,并将所述从距离传感器到所述终端的距离信息发送到调整支架。
可选地,分布设置模块是设置成按照人脸的分布,通过眼镜镜架,将所述距离传感器分布设置在用户的眼眶区域或其他可判断用户眼睛的位置的区域。
再一方面,本申请还提供一种调整支架,包括计算模块和调整模块;其中,
所述计算模块设置成根据接收的从所述距离传感器到所述终端的距离信息和所述距离传感器的分布位置信息,计算用户眼睛与所述终端之间的实时距离和实时角度;
所述调整模块设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。
可选地,预先存储的参考距离和参考角度包括使用摄像头、观看视频、观看网页、阅读电子书和观看图片之一的工作模式相应的参考距离和参考角度;该调整支架还包括模式选择模块,所述模式选择模块设置成根据外部指令确定终端当前的工作模式,以使调整模块根据终端当前的工作模块相应的参考距离和参考角度来调整所述调整支架。
可选地,所述调整支架还包括外部调整模块,所述外部调整模块设置成根据接收的外部指令,调整用户眼睛与所述终端之间的距离和角度,确认完成调整时,将完成调整时用户眼睛与所述终端之间的距离和角度作为参考距离和参考角度。
可选地,外部指令为根据声音信号生成的控制指令。
可选地,所述调整支架设置在旋翼装置上。
本申请另外提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被执行时实现上述方法。
与相关技术相比,本申请技术方案包括:调整支架和与调整支架配对的检测装置;其中,检测装置,包括距离传感器,所述检测装置设置成按照预设周期检测从距离传感器到终端的距离信息,并将其发送到调整支架;调整支架包括计算模块和调整模块;其中,计算模块,设置成根据接收的从距离传感器到终端的距离信息和距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;调整模块,设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。通过上述方案,根据计算获得的用户眼睛与终端的实时距离和实时角度,调整固定终端的调整支架,使用户眼睛与终端的实时距离和实时角度分别等于预先存储的参考距离和参考角度,自动调整用户眼睛与终端之间的距离和角度,提高了用户的使用体验。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为本申请提供的支架调整系统的结构示意图;
图2为本申请提供的检测装置的结构示意图;
图3为本申请提供的调整支架的结构示意图。
本发明的较佳实施方式
下文中将结合附图对本发明的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
图1为本申请提供的支架调整系统的结构示意图,如图1所示,包括:调整支架和与调整支架配对的检测装置;其中,
检测装置,包括距离传感器,所述检测装置设置成按照预设周期检测从距离传感器到终端的距离信息,并将其发送到调整支架;
需要说明的是,预设周期根据对用户的使用习惯的统计和分析而确定,主要根据用户姿势调整幅度及频率而设定,一般地可以设置为10秒到1分钟左右,具体时间可以调整。
调整支架包括计算模块和调整模块;其中,
计算模块,设置成根据接收的从距离传感器到终端的距离信息和距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;
需要说明的是,距离传感器的分布位置信息是指设置距离传感器时距离传感器的分布位置的坐标信息;或者,距离传感器之间的距离、构成的角度等信息,一般在设置距离传感器后,通过人工测量获得。
调整模块,设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。
图2为本申请提供的检测装置的结构示意图,如图2所示,检测装置包括3个或3个以上距离传感器,所述检测装置还包括分布设置模块和发送模块;其中,
分布设置模块,设置成按照人脸的分布将所述距离传感器设置在用户的眼眶区域或其他可判断用户眼睛位置的区域;
需要说明的是,距离传感器的分布主要按照人脸的分布而设置,为了获得眼部分布位置信息,距离传感器一般设置在眼眶区域,例如、在左右眼的眼眶下方分别设置一个距离传感器,在鼻托位置设置一个距离传感器,通过以上三个距离传感器计算用户眼睛与终端的距离和角度。在设置四个传感器时,可以采用左眼上眼眶区域和下眼眶区域分别设置一个距离传感器,对应于右眼的两个距离传感器位置一般与对应于左眼的两个距离传感器对称。距离传感器主要为了获得用于计算的角度和距离,对于本领域技术人员而言,按照常规技术设置三个以上可以获得角度和距离的距离传感器,可以获得较为准确的位置和角度信息。
发送模块,设置成按照预设周期检测从距离传感器到终端的距离信息,并将所述从距离传感器到终端的距离信息发送到调整支架。
分布设置模块,设置成按照人脸的分布,通过眼镜镜架,将所述距离传感器分布设置在用户的眼眶区域或其他可判断用户眼睛的位置的区域。
需要说明的是,眼镜的镜架只是设置距离传感器的一个可选实施例,在实际应用中,可以将距离传感器直接根据人脸的分布进行附着,或将可以固定距离传感器的支架固定在用户的脸部位置,具体设计可以多种多样,并不限定于眼镜的结构。
图3为本申请提供的调整支架的结构示意图,如图3所示,所述调整支架包括计算模块和调整模块;其中,
计算模块设置成根据接收的从距离传感器到终端的距离信息和距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;
调整模块设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。
需要说明的是,用户眼睛与终端之间的距离和角度可以通过在所述调整支架上设置的调整角度和伸缩功能的机械结构及控制机械结构的动力装置来调整。
预先存储的参考距离和参考角度包括使用摄像头、观看视频、观看网页、 阅读电子书和观看图片等各种工作模式相应的参考距离和参考角度;本申请提供的调整支架还包括模式选择模块,所述模式选择模块设置成根据外部指令确定终端当前的工作模式,以使调整模块根据终端当前的工作模块相应的参考距离和参考角度来调整所述调整支架。
本申请提供的调整支架还包括外部调整模块,所述外部调整模块设置成根据接收的外部指令,调整用户眼睛与终端之间的距离和角度,确认完成调整时,将完成调整时用户眼睛与终端之间的距离和角度作为参考距离和参考角度。
可选地,外部指令为根据声音信号生成的控制指令。
需要说明的是,对于声音信号的识别属于本领域技术人员的常规技术,例如、用户发出的诸如“向上”、“向下”、“向左”、“向右”等声音信号通过相关技术可以识别并转换为控制支撑终端向上调整、向下调整、向左调整、向右调整等的指令,通过执行所转换的指令,调整用户眼睛到终端的距离和角度。
可选地,本申请提供的调整支架还可以设置在旋翼装置上。
需要说明的是,将调整支架设置在旋翼装置上,可以在旋翼装置的移动范围内使用终端,可以通过旋翼支架调整用户眼睛到终端的距离;如果旋翼装置性能达到要求,还可以通过旋翼支架调整用户眼睛到终端的角度。
本申请根据计算获得的用户眼睛与终端的实时距离和实时角度,调整固定终端的调整支架,使用户眼睛与终端的实时距离和实时角度分别等于预先存储的参考距离和参考角度,自动调整用户眼睛与终端之间的距离和角度,提高了用户的使用体验。
以下通过具体实施例对本申请方法进行清楚详细的说明,实施例仅用于陈述本申请,并不用于限制本申请方法的保护范围。
本发明实施例对支架调整系统进行示例说明,所述支架调整系统包括检测装置和调整支架;其中,调整支架包括计算模块、调整模块、模式选择模块和外部调整模块;
其中,检测装置,包含有3个或3个以上距离传感器,按照人脸的分布 将距离传感器设置在用户的眼眶区域或其他可判断用户眼睛位置的区域,按照预设周期将距离信息发送到调整支架。本实施例按照10秒的预设周期将距离信息发送到调整支架。另外,在设置距离传感器后,将包含各个距离传感器之间的间距的分布位置信息发送到调整支架。
在本实施例中,将检测装置设置眼镜的镜架上。用户通过佩戴本实施例提供的眼镜,并使所述检测装置与调整支架连接,以使得所述检测装置将距离信息发送到调整支架。
调整支架包括计算模块和调整模块;其中,
计算模块,设置成根据接收的距离传感器的距离信息,并根据距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;
根据距离信息和距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度为几何计算的常规方法,在本实施例中不做赘述。
调整模块,设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,将用户眼睛到终端的实时距离和实时角度分别调整至参考距离和参考角度。例如,在预设周期内,用户调整了倚靠的姿势,本实施例提供的支架调整系统通过对应于用户眼睛的距离传感器发送的距离信息,确定实时距离和实时角度,对比预先存储的参考距离和参考角度,以调整所述调整支架。
需要说明的是,本实施例提供的调整支架是指通过动力装置调整所固定的终端的铰链支架,驱动动力装置通过对比实时距离和参考距离以及对比实时角度和参考角度,调整铰链支架。
可选地,在本实施例中,对不同种类的工作模式设置了相应的参考距离和参考角度,例如对于使用摄像头、观看视频,设置较远的参考距离和较为舒适的参考角度;对于观看网页、阅读电子书,设置较近的参考距离和可以清晰查看信息的参考角度。具体的设置可以通过统计和分析不同人群的终端使用习惯而获得。
可选地,在本实施例中,所述调整支架还包括外部调整模块,通过将接收并识别的声音信号转换为控制指令,根据控制指令调整用户眼睛与终端之 间的距离和角度,确认完成调整时,将完成调整时用户眼睛与终端之间的距离和角度存储为参考距离和参考角度。
可选地,在本实施例中,将该调整支架设置在旋翼装置上。通过旋翼装置的上下前后移动,将用户眼镜与终端的实时距离和实时角度分别调整至等于预先存储的参考距离和参考角度。
本发明实施例另外提供一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被执行时实现上述方法。
虽然本申请所揭露的实施方式如上,但所述的内容仅为便于理解本申请而采用的实施方式,并非用以限定本申请。任何本申请所属领域内的技术人员,在不脱离本申请所揭露的精神和范围的前提下,可以在实施的形式及细节上进行任何的修改与变化,但本申请的专利保护范围,仍须以所附的权利要求书所界定的范围为准。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序来指令相关硬件(例如处理器)完成,所述程序可以存储于计算机可读存储介质中,如只读存储器、磁盘或光盘等。可选地,上述实施例的全部或部分步骤也可以使用一个或多个集成电路来实现。相应地,上述实施例中的各模块/单元可以采用硬件的形式实现,例如通过集成电路来实现其相应功能,也可以采用软件功能模块的形式实现,例如通过处理器执行存储于存储器中的程序/指令来实现其相应功能。本发明实施例不限制于任何特定形式的硬件和软件的结合。
工业实用性
本申请根据计算获得的用户眼睛与终端的实时距离和实时角度,调整固定终端的调整支架,使用户眼睛与终端的实时距离和实时角度分别等于预先存储的参考距离和参考角度,自动调整用户眼睛与终端之间的距离和角度,提高了用户的使用体验。

Claims (8)

  1. 一种支架调整系统,包括:调整支架和与所述调整支架配对的检测装置;其中,
    所述检测装置,包括距离传感器,所述检测装置设置成按照预设周期检测并将从所述距离传感器到终端的距离信息发送到调整支架;
    所述调整支架包括计算模块和调整模块;其中,
    所述计算模块设置成根据接收的从距离传感器到终端的距离信息和距离传感器的分布位置信息,计算用户眼睛与终端之间的实时距离和实时角度;
    所述调整模块设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使实时距离等于参考距离,并且实时角度等于参考角度。
  2. 一种检测装置,包括3个或3个以上距离传感器,所述检测装置还包括分布设置模块和发送模块;其中,
    所述分布设置模块设置成按照人脸的分布将所述距离传感器设置在用户的眼眶区域或其他可判断用户眼睛位置的区域;
    所述发送模块设置成按照预设周期检测从所述距离传感器到所述终端的距离信息,并将所述从距离传感器到所述终端的距离信息发送到所述调整支架。
  3. 根据权利要求2所述的检测装置,其中,所述分布设置模块是设置成按照人脸的分布,通过眼镜镜架,将所述距离传感器分布设置在用户的眼眶区域或其他可判断用户眼睛的位置的区域。
  4. 一种调整支架,包括计算模块和调整模块;其中,
    所述计算模块设置成根据接收的从所述距离传感器到所述终端的距离信息和所述距离传感器的分布位置信息,计算用户眼睛与所述终端之间的实时距离和实时角度;
    所述调整模块设置成通过将计算出的用户眼睛与终端之间的实时距离和实时角度与预先存储的参考距离和参考角度进行对比,把调整支架调整成使 实时距离等于参考距离,并且实时角度等于参考角度。
  5. 根据权利要求4所述的调整支架,其中,所述预先存储的参考距离和参考角度包括使用摄像头、观看视频、观看网页、阅读电子书和观看图片之一的工作模式相应的参考距离和参考角度;该调整支架还包括模式选择模块,所述模式选择模块设置成根据外部指令确定终端当前的工作模式,以使调整模块根据终端当前的工作模块相应的参考距离和参考角度来调整所述调整支架。
  6. 根据权利要求4或5所述的调整支架,所述调整支架还包括外部调整模块,所述外部调整模块设置成根据接收的外部指令,调整用户眼睛与所述终端之间的距离和角度,确认完成调整时,将完成调整时用户眼睛与所述终端之间的距离和角度作为参考距离和参考角度。
  7. 根据权利要求6所述的调整支架,其中,所述外部指令为根据声音信号生成的控制指令。
  8. 根据权利要求4或5所述的调整支架,其中,所述调整支架设置在旋翼装置上。
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CN108200369A (zh) * 2017-11-30 2018-06-22 苏州腾茂电子科技有限公司 一种具有自我调节亮度功能的电视机及其工作方法
CN108847198A (zh) * 2018-06-22 2018-11-20 珠海格力电器股份有限公司 一种终端显示界面可视角度的控制方法、系统及线控器
CN113055528A (zh) * 2021-03-11 2021-06-29 深圳市九码云科技有限公司 一种自动接听电话的智能终端
CN113040514A (zh) * 2021-03-12 2021-06-29 湖州师范学院 一种声乐教学用可遥控升降的乐谱架

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