WO2020133776A1 - 一种基于电视机的健康状况检测方法、系统及电视机 - Google Patents

一种基于电视机的健康状况检测方法、系统及电视机 Download PDF

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WO2020133776A1
WO2020133776A1 PCT/CN2019/080741 CN2019080741W WO2020133776A1 WO 2020133776 A1 WO2020133776 A1 WO 2020133776A1 CN 2019080741 W CN2019080741 W CN 2019080741W WO 2020133776 A1 WO2020133776 A1 WO 2020133776A1
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Prior art keywords
health
data
television
user
index
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French (fr)
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彭文斌
王鲜
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Shenzhen Skyworth RGB Electronics Co Ltd
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Shenzhen Skyworth RGB Electronics Co Ltd
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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H15/00ICT specially adapted for medical reports, e.g. generation or transmission thereof
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H50/00ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
    • G16H50/30ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for calculating health indices; for individual health risk assessment
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H80/00ICT specially adapted for facilitating communication between medical practitioners or patients, e.g. for collaborative diagnosis, therapy or health monitoring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/442Monitoring of processes or resources, e.g. detecting the failure of a recording device, monitoring the downstream bandwidth, the number of times a movie has been viewed, the storage space available from the internal hard disk

Definitions

  • the present disclosure relates to the technical field of TV application, for example, relates to a TV-based health detection method, system and TV.
  • the technical problem to be solved by the present disclosure is to provide a TV-based health condition detection method, system, and TV in view of the above-mentioned defects of the prior art, and aims to detect user's body data through the TV and the intelligent weight meter , And display the user's health status and health recommendations on the TV according to the body data, so that the user can intuitively understand his own physical condition.
  • the present disclosure provides a TV-based health condition detection method, wherein the TV has a built-in three-dimensional scanning module and the TV is connected to an intelligent weight measuring instrument.
  • the TV-based health condition detection method includes the following steps:
  • the television receives the weight data, and controls the three-dimensional scanning module to scan the body of the current user, and combines the weight data to obtain the body data of the current user;
  • the television saves the health index to a local health database or uploads it to a cloud server, and obtains the health status and corresponding health suggestions through data analysis.
  • the method before measuring the weight data of the user through the intelligent weight measuring instrument, and before sending the weight data to the TV, the method further includes:
  • the local health database includes at least health data, health data thresholds, health indexes, and corresponding health recommendations.
  • the method further includes:
  • the television receives the weight data, and controls the three-dimensional scanning module to scan the body of the current user, and combines the weight data to obtain the current user's body data specifically including:
  • the television receives the weight data and controls to turn on the three-dimensional scanning module
  • the three-dimensional scanning module scans the body of the current user, and uploads the scanned three-dimensional point cloud data of the human body to the health monitoring software;
  • the health monitoring software obtains the three-dimensional point cloud data of the human body and combines the weight data to obtain the current user's body data.
  • the health monitoring software obtains the three-dimensional point cloud data of the human body and combines the weight data to obtain the current user's body data, further including:
  • the identity information includes a user name, gender, and work time.
  • the three-dimensional point cloud data of the human body includes body shape data and height data.
  • the conversion of the body data into a health index through the health monitoring software in the television specifically includes:
  • the health data threshold in the local health database is compared according to the data difference, and the health index is obtained through calculation.
  • the TV set saves the health index to a local health database or uploads it to a cloud server, and the health status and corresponding health suggestions obtained through data analysis specifically include:
  • the television saves the health index to a local health database or uploads it to a cloud server;
  • the cloud server or TV set analyzes and judges whether the health index fluctuates abnormally
  • the health status and corresponding health advice are obtained through data analysis.
  • the method further includes:
  • the cloud server updates the health data of the current user.
  • the intelligent weight measuring instrument is connected to the television through a wired or wireless connection.
  • the wireless connection method includes WIFI, Bluetooth and infrared connection.
  • the present disclosure also provides a TV-based health detection system, which includes a TV, an intelligent weight meter, and a cloud server;
  • the television is connected to the cloud server through a network
  • the intelligent weight measuring instrument is connected to the television through a wired or wireless connection;
  • the cloud server is used to receive the health index sent by the TV set, analyze and determine whether the health index fluctuates abnormally, and when the health index fluctuates abnormally, obtain health status and corresponding health suggestions through data analysis, And send the health status and corresponding health suggestions to the TV for display;
  • the television and the intelligent weight measuring instrument are used to implement the television-based health detection method.
  • the television has a built-in three-dimensional scanning module.
  • the present disclosure also provides a television set, wherein a three-dimensional scanning module is provided in the television set, and an intelligent weight measuring instrument is connected outside the television set, and the television and the intelligent weight measuring instrument are used to implement TV-based health detection method.
  • the present disclosure is based on a television system, through 3D scanning technology and weight measurement technology, to form an entire body measurement system, using optical three-dimensional scanning to quickly scan body data, while using health monitoring software to compare and analyze the user's body data, to obtain the The user's health index, at the same time, according to the health index to get the corresponding health status and corresponding health recommendations, so that users can monitor their own health status in real time while watching TV, and can be based on the health recommendations displayed on the TV Carrying out health care and exercise by oneself greatly facilitates the user's use.
  • FIG. 1 is a flowchart of a TV-based health detection method in a preferred embodiment of the present disclosure.
  • FIG. 2 is a functional block diagram of a TV-based health detection system in a preferred embodiment of the present disclosure.
  • FIG. 1 is a flowchart of a method for detecting a health condition based on a television in a preferred embodiment of the present disclosure.
  • this embodiment provides a TV-based health detection method.
  • the method includes the following steps:
  • step S100 the weight data of the user is measured by an intelligent weight measuring instrument, and the weight data is sent to the television.
  • a three-dimensional scanning module is provided in the television, and the television is connected with an intelligent weight measuring instrument, and the intelligent weight measuring instrument is connected to the wireless or wireless (WIFI, Bluetooth, infrared) in a wired or wireless manner.
  • the television is connected, and the television is connected to the cloud server through the network.
  • the three-dimensional scanning module has a 3D scanning function, and can use white light to scan the whole body of the human body in multiple angles and multiple directions within 3-5 seconds to complete a quick scan, and when scanning, the white light used is not Harmful, can be widely used in televisions.
  • the TV set can obtain three-dimensional point cloud data of the human body through the three-dimensional scanning module.
  • the three-dimensional point cloud data of the human body includes complete three-dimensional information in various parts of the human body, such as body shape data and height data.
  • the three-dimensional point cloud data of the human body scanned by the three-dimensional scanning module, combined with the weight data measured by the intelligent weight measuring instrument, can obtain a complete body data; then, the health index can be analyzed to obtain the health index, and then the The health index is displayed on the TV, allowing users to know their own health status at any time.
  • the health monitoring software can perform calculation and analysis based on the 3D point cloud data of the human body scanned by the 3D scanning module to obtain the user's Health index, and further analysis based on the health index to obtain the user's health status and corresponding health recommendations; while installing the health monitoring software, you also need to set up a local health database, the local health database can be
  • the health monitoring software provides comparative analysis data, and can also be used to store data in the health monitoring software; therefore, the local health database includes at least health data, health data thresholds, health indexes, and corresponding health recommendations.
  • the user can input identity information through the health monitoring software, the identity information includes at least the user name, gender, rest time, etc.; after setting the identity information, the identity information can be stored in a local health database , So that when the user subsequently monitors the health data, the monitored body data is stored in association with the identity information.
  • the user's body data When the user's body data needs to be collected, it can be collected by the intelligent weight measuring instrument and the three-dimensional scanning module at the same time, or the user's weight data can be collected by the intelligent weight measuring instrument first, and then the data is collected by the three-dimensional scanning module; the intelligent weight measuring instrument The measurement can be performed separately, that is, when the TV is not turned on, the user's weight data is measured, and then stored in the intelligent weight measuring instrument; when it is detected that the TV is turned on, the stored weight data can be sent to the TV.
  • step S100 the following steps are included:
  • Step S001 Install health monitoring software in the TV in advance and set up a local health database
  • Step S002 Input the identity information of the current user through the health monitoring software, and save the identity information to the local health database.
  • the real-time monitoring data and user identity information can be bound and stored in the subsequent daily monitoring, and the monitoring data within a certain period can be compared through the health monitoring software.
  • a health trend chart is formed, so that the user can intuitively get his own health trend, and thus can make adjustments according to the health trend chart.
  • Step S200 the television receives the weight data, and controls the three-dimensional scanning module to scan the body of the current user, and combines the weight data to obtain the body data of the current user.
  • the television after detecting that the television is turned on, the television receives the weight data sent by the intelligent weight measuring instrument, and simultaneously turns on the three-dimensional scanning module to scan the user in 360 degrees to generate three-dimensional point cloud data of the human body.
  • the human body 3D point cloud data includes body shape data (chest circumference, waist circumference, hip circumference, etc.), height data, etc.; when generating human body 3D point cloud data, upload the scanned human body 3D point cloud data to the health monitoring software as a follow-up The basis for calculating and analyzing the health index.
  • the health monitoring software receives the three-dimensional point cloud data of the human body sent by the three-dimensional scanning module, it combines the weight data sent by the intelligent weight meter to obtain a complete body data.
  • the health monitoring software models the current user's body shape according to the body data to obtain a 3D human body simulation image, and the current user's body shape state can be visually displayed through the 3D human body simulation image.
  • the health monitoring software associates the body data, 3D human body simulation images, and user identity information, and stores them in a local health database in the form of a table or document for easy viewing by the user at any time.
  • step S200 includes the following steps:
  • Step S201 the television receives the weight data, and controls to turn on the three-dimensional scanning module
  • Step S202 the 3D scanning module scans the body of the current user, and uploads the scanned 3D point cloud data of the human body to the health monitoring software;
  • Step S203 The health monitoring software obtains the three-dimensional point cloud data of the human body and combines the weight data to obtain the current user's body data;
  • Step S204 Model the body shape of the current user according to the body data to obtain a 3D human body simulation image
  • Step S205 Associate and store the 3D human body simulation image, body data, and identity information of the current user.
  • the human body's three-dimensional point cloud data is obtained, and then combined with the weight data measured by the intelligent weight measuring instrument to obtain a complete body data; at the same time, using the health monitoring software to draw a 3D human body simulation image, and then the body data , 3D human body simulation images, and user identity information are associated and stored in the local health database, so that in the subsequent monitoring of the health status, it is convenient to check the health status at any time, and it is also convenient for comparative analysis to obtain the user's health status the trend of.
  • Step S300 Convert the body data into a health index through the health monitoring software in the television.
  • the real-time body data is compared with the health data in the local health database (such as the height, weight, and measurements of normal people), and a data is obtained through subtraction. Difference; then compare the data difference with the health data threshold in the local health database, and then obtain the corresponding health index through division operation, so that the diversified body data can be converted into a single health index , So that users can see the data at a glance, so that they know they are in a healthy or sub-health state.
  • the health data in the local health database such as the height, weight, and measurements of normal people
  • step S300 includes the following steps:
  • Step S301 Compare the health data in the local health database according to the body data, and obtain the data difference through calculation
  • Step S302 Compare the health data threshold in the local health database according to the data difference, and obtain a health index through calculation.
  • the diversified body data can be converted into a single health index, so that the user can see it clearly; at the same time, because the user’s body data has been stored locally when scanning the user’s body In the health database, the user can switch back and forth between the health index and the body data when viewing the data later, which greatly facilitates the user to view.
  • Step S400 the TV set saves the health index to a local health database or uploads it to a cloud server, and obtains the health status and corresponding health suggestions through data analysis.
  • the television after obtaining the health index, the television saves the health index to a local health database or uploads it to a cloud server, and analyzes whether the health index has abnormal fluctuations through the local health database or cloud server.
  • the cloud server is used to analyze whether the user's health index has abnormal fluctuations.
  • the cloud server obtains the health status and corresponding health from the cloud database through data analysis It is recommended to combine the user's identity information to update the user's cloud health data.
  • the cloud server sends the health status and corresponding health recommendations to the TV, and after receiving the health status and corresponding health recommendations, the TV displays on the display screen to remind the user to pay attention to health .
  • the TV when the TV cannot connect to the cloud server, the TV is used to analyze whether the user's health index has abnormal fluctuations; when the health index is detected to have abnormal fluctuations, the TV analyzes and obtains from the local health database Health status and corresponding health recommendations (the health status and health recommendations in the local health database need to be downloaded and updated from the cloud server), and the health status and corresponding health recommendations are directly displayed on the display screen.
  • Health status and corresponding health recommendations the health status and health recommendations in the local health database need to be downloaded and updated from the cloud server
  • a small window can be set on the display screen of the TV, so that it can not only prompt the user but also not affect the user watching TV or other operations.
  • the user's health data in the cloud server can be synchronized to the user's mobile terminal, and the user can log in to the cloud server through an account to view his health data on the mobile terminal in real time.
  • step S400 includes the following steps:
  • Step S401 the television saves the health index to a local health database or uploads it to a cloud server;
  • Step S402 the cloud server or TV set analyzes and judges whether the health index fluctuates abnormally
  • Step S403 when the health index fluctuates abnormally, the health status and corresponding health advice are obtained through data analysis;
  • Step S404 displaying the health status and the corresponding health advice on the display screen of the television;
  • Step S405 the cloud server updates the current user's health data.
  • FIG. 2 is a functional block diagram of a TV-based health detection system in a preferred embodiment of the present disclosure.
  • this embodiment provides a TV-based health detection system, including a TV 100, a smart weight meter 200, and a cloud server 300;
  • the television 100 is connected to the cloud server 300 through a network;
  • the intelligent weight measuring instrument 200 is connected to the television 100 by a wired or wireless connection;
  • the cloud server 300 is used to receive the health index sent by the television 100, analyze and determine whether the health index has abnormal fluctuations, and when the health index has abnormal fluctuations, obtain health status and corresponding health through data analysis Suggestions, and send the health status and corresponding health suggestions to the television 100 for display;
  • the television 100 and the intelligent weight measuring instrument 200 are used to implement the above-mentioned television-based health detection method; specifically as described above.
  • this embodiment provides a television set.
  • the television set 100 is provided with a three-dimensional scanning module 110.
  • the television set 100 is externally connected with an intelligent weight measuring instrument 200.
  • the television set 100 and all The intelligent weight measuring instrument 200 is used to implement the above-mentioned TV-based health condition detection method; specifically as described above.
  • the present disclosure is based on a television system, and uses 3D scanning technology and weight measurement technology to form an entire body measurement system. It uses optical three-dimensional scanning to quickly scan human body data, while using health monitoring software to compare and analyze the user's human body. Data to get the user’s health index, and at the same time, according to the health index to get the corresponding health status and corresponding health recommendations, so that users can monitor their health status in real time while watching TV, and can be displayed on the TV Of health advice to keep yourself healthy and exercise, which greatly facilitates the user's use.
  • the present disclosure is based on a television system, through 3D scanning technology and weight measurement technology, to form an entire body measurement system, using optical three-dimensional scanning to quickly scan body data, while using health monitoring software to compare and analyze the user's body data, to obtain the The user's health index, at the same time, according to the health index to get the corresponding health status and corresponding health recommendations, so that users can monitor their own health status in real time while watching TV, and can be based on the health recommendations displayed on the TV Carrying out health care and exercise by oneself greatly facilitates the user's use.

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Abstract

本公开涉及一种基于电视机的健康状况检测方法、系统及电视机,所述方法包括:通过智能体重测量仪测量用户的体重数据,并将所述体重数据发送给电视机;所述电视机接收所述体重数据,并控制三维扫描模块扫描当前用户的身体,结合所述体重数据,得到当前用户的身体数据;通过所述电视机内的健康监测软件将所述身体数据转化为健康指数;所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器,通过数据分析得到健康状况和对应的健康建议。本公开通过电视机以及智能体重测量仪来检测用户的身体数据,并根据该身体数据在电视机上显示用户的健康状况以及健康建议,从而使用户可以直观地了解自己的身体。

Description

一种基于电视机的健康状况检测方法、系统及电视机 技术领域
本公开涉及电视机应用技术领域,例如涉及的是一种基于电视机的健康状况检测方法、系统及电视机。
背景技术
随着社会的发展,生活节奏越来越快,现在大部分上班族的身体都处于亚健康状态;越来越多的人被高血压、高血糖、肥胖等病症所困恼,有的甚至是更加严重的疾病;每一个人都希望自己和家人有一个健康身体。
在现在的社会,追求健康,关注身体已经是社会的一种共同呼声,而在当前的智能电视中,没有一款可以检测用户健康的产品;如果有一款电视,只要用户每天在电视机前站一下,然后电视机就能显示用户目前的身体健康数据与指标,以及近期身体健康数据的趋势,这样就可随时监控自己和家人的身体健康。
因此,现有技术还有待于改进和发展。
发明内容
本公开要解决的技术问题在于,针对现有技术的上述缺陷,提供一种基于电视机的健康状况检测方法、系统及电视机,旨在通过电视机以及智能体重测量仪来检测用户的身体数据,并根据该身体数据在电视机上显示用户的健康状况以及健康建议,从而使用户可以直观地了解自己的身体情况。
本公开解决技术问题所采用的技术方案如下:
本公开提供一种基于电视机的健康状况检测方法,其中,所述电视机内置三维扫描模块且所述电视机与智能体重测量仪连接,所述基于电视机的健康状况检测方法包括以下步骤:
通过智能体重测量仪测量用户的体重数据,并将所述体重数据发送给电视机;
所述电视机接收所述体重数据,并控制三维扫描模块扫描当前用户的身体,结合所述体重数据,得到当前用户的身体数据;
通过所述电视机内的健康监测软件将所述身体数据转化为健康指数;
所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器,通过数据分析得到健康状况和对应的健康建议。
可选的,所述通过智能体重测量仪测量用户的体重数据,并将所述体重数据发送给电视机之前还包括:
预先在电视机中安装健康监测软件以及设置本地健康数据库;所述本地健康数据库至少包括健康数据、健康数据阈值、健康指数、以及对应的健康建议。
可选的,所述预先在电视机中安装健康监测软件以及设置本地健康数据库之后还包括:
通过所述健康监测软件输入当前用户的身份信息,并将所述身份信息保存到所述本地健康数据库中。
可选的,所述电视机接收所述体重数据,并控制三维扫描模块扫描当前用户的身体,结合所述体重数据,得到当前用户的身体数据具体包括:
所述电视机接收所述体重数据,并控制开启三维扫描模块;
所述三维扫描模块扫描当前用户的身体,并将扫描到的人体三维点云数据上传到健康监测软件;
所述健康监测软件获取所述人体三维点云数据,并结合所述体重数据,得到当前用户的身体数据。
可选的,所述健康监测软件获取所述人体三维点云数据,并结合所述体重数据,得到当前用户的身体数据之后还包括:
根据所述身体数据对当前用户的体型进行建模,得到3D人体模拟图像;
将所述3D人体模拟图像、身体数据以及当前用户的身份信息进行关联存储。
可选的,所述身份信息包括用户名称、性别以及作息时间。
可选的,所述人体三维点云数据包括体型数据以及身高数据。
可选的,所述通过所述电视机内的健康监测软件将所述身体数据转化为健康指数具体包括:
根据所述身体数据对比本地健康数据库中的健康数据,经运算得到数据差值;
根据所述数据差值对比本地健康数据库中的健康数据阈值,经运算得到健康 指数。
可选的,所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器,通过数据分析得到健康状况和对应的健康建议具体包括:
所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器;
所述云服务器或电视机分析并判断所述健康指数是否有异常波动;
当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议。
可选的,所述当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议之后还包括:
将所述健康状况和对应的健康建议显示在电视机的显示屏上;
所述云服务器更新当前用户的健康数据。
可选的,所述智能体重测量仪以有线或者无线连接的方式与所述电视机进行连接。
可选的,所述无线连接的方式包括WIFI、蓝牙以及红外连接。
本公开还提供一种基于电视机的健康状况检测系统,其中,包括电视机、智能体重测量仪、以及云服务器;
所述电视机通过网络与所述云服务器连接;
所述智能体重测量仪以有线或无线的连接方式与所述电视机连接;
所述云服务器用于接收所述电视机发送的健康指数,分析并判断所述健康指数是否有异常波动,当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议,并将所述健康状况和对应的健康建议发送给电视机进行显示;
所述电视机和所述智能体重测量仪用于实现所述基于电视机的健康状况检测方法。
可选的,所述电视机内置三维扫描模块。
本公开还提供一种电视机,其中,所述电视机内设置有三维扫描模块,所述电视机外部连接有智能体重测量仪,所述电视机和所述智能体重测量仪用于实现所述基于电视机的健康状况检测方法。
本公开所采用的技术方案具有以下有益效果:
本公开基于电视机系统,通过3D扫描技术与体重测量技术,组成整个的人体测量系统,利用光学三维扫描的方式快速扫描人体数据,同时利用健康监测软件来对比分析用户的人体数据,得出该用户的健康指数,同时,根据该健康指数来得出对应的健康状况以及相应的健康建议,使用户在观看电视的同时还能实时监测自己的健康状况,并可根据电视机上显示的健康建议来对自己进行养生、锻炼,极大地方便了用户的使用。
附图说明
图1是本公开较佳实施例中一种基于电视机的健康状况检测方法的流程图。
图2是本公开较佳实施例中一种基于电视机的健康状况检测系统的功能原理框图。
图中:100、电视机;200、智能体重测量仪;300、云服务器;110、三维扫描模块。
具体实施方式
为使本公开的目的、技术方案及优点更加清楚、明确,以下参照附图并举实施例对本公开进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本公开,并不用于限定本公开。
实施例1
请参见图1,图1是本公开较佳实施例中一种基于电视机的健康状况检测方法的流程图。
如图1所示,本实施例提供了一种基于电视机的健康状况检测方法,所述方法包括以下步骤:
步骤S100,通过智能体重测量仪测量用户的体重数据,并将所述体重数据发送给电视机。
本实施例中,所述电视机内设置有三维扫描模块,并且,所述电视机外接智能体重测量仪,所述智能体重测量仪以有线或者无线(WIFI、蓝牙、红外)连接的方式与所述电视机进行连接,所述电视机则通过网络与云服务器进行连接。
所述三维扫描模块具有3D扫描功能,可利用白光在3-5秒内对人体全身做 多角度、多方位的扫描,完成快速扫描,并且,在进行扫描时,所采用的白光对人体是无害的,可广泛应用在电视机上。
本实施例中,所述电视机通过所述三维扫描模块可获取人体三维点云数据,所述人体三维点云数据包含了人体各个部位中完整的三维信息,比如体型数据、身高数据等;通过该三维扫描模块扫描到的人体三维点云数据,再结合所述智能体重测量仪测量的体重数据,可得到一个完整的身体数据;然后,再利用健康监测软件可分析得出健康指数,进而将健康指数显示在电视机上,可使用户随时了解自身的健康状况。
本实施例中,在获取用户的身体数据之前,还需要在电视机中安装健康监测软件,所述健康监测软件可根据所述三维扫描模块扫描的人体三维点云数据进行计算分析,得到用户的健康指数,并根据所述健康指数进一步的分析,从而得到该用户的健康状况以及对应的健康建议;在安装所述健康监测软件的同时,还需要设置本地健康数据库,所述本地健康数据库可为所述健康监测软件提供对比分析的数据,同时也可用于所述健康监测软件存储数据资料;因此,所述本地健康数据库至少包括健康数据、健康数据阈值、健康指数、以及对应的健康建议。
进一步地,用户可通过所述健康监测软件输入身份信息,所述身份信息至少包括用户名称、性别、作息时间等;在设置完所述身份信息之后,可将所述身份信息存储在本地健康数据库中,以便用户在后续监测健康数据时,将监测到的身体数据与所述身份信息进行关联存储。
当需要采集用户身体数据时,可通过智能体重测量仪与三维扫描模块同时采集,也可先通过智能体重测量仪采集用户的体重数据,然后再由三维扫描模块采集数据;所述智能体重测量仪可单独进行测量,即在电视机未开机的状态下,测量用户的体重数据,然后保存在智能体重测量仪中;当检测到电视机完成开机时,可将存储的体重数据发送给电视机。
即具体地,所述步骤S100之前包括以下步骤:
步骤S001,预先在电视机中安装健康监测软件以及设置本地健康数据库;
步骤S002,通过所述健康监测软件输入当前用户的身份信息,并将所述身份信息保存到所述本地健康数据库中。
通过预先设置健康监测软件以及本地健康数据库,可在后续的日常监测中, 将实时监测的数据与用户身份信息进行绑定存储,并可通过健康监测软件对一定周期内的监测数据进行比对,从而形成健康趋势图,使用户可以直观地得到自身健康趋势,从而可以根据该健康趋势图进行调整。
步骤S200,所述电视机接收所述体重数据,并控制三维扫描模块扫描当前用户的身体,结合所述体重数据,得到当前用户的身体数据。
本实施例中,在检测到电视机开机之后,所述电视机接收智能体重测量仪发送的体重数据,同时开启三维扫描模块对用户进行360度全方位的扫描,生成人体三维点云数据,所述人体三维点云数据包括体型数据(胸围、腰围、臀围等)、身高数据等;在生成人体三维点云数据时,将扫描到的人体三维点云数据上传到健康监测软件,以作为后续计算分析健康指数的依据。
进一步地,所述健康监测软件在接收到所述三维扫描模块发送的人体三维点云数据时,结合所述智能体重测量仪发送的体重数据,得到一个完整的身体数据。
所述健康监测软件根据所述身体数据对当前用户的体型进行建模,得到3D人体模拟图像,通过所述3D人体模拟图像可形象地展现出当前用户的体型状态。
另外,在后续使用时,经过一段时间的使用期,会得到多张3D人体模拟图像,通过这些3D人体模拟图像可展现出用户一定时间内体型的变化趋势。
进一步地,所述健康监测软件将所述身体数据、3D人体模拟图像、以及用户身份信息进行关联,并以表格或文档的形式存储到本地健康数据库中,以便于用户随时查看。
即具体地,所述步骤S200包括以下步骤:
步骤S201,所述电视机接收所述体重数据,并控制开启三维扫描模块;
步骤S202,所述三维扫描模块扫描当前用户的身体,并将扫描到的人体三维点云数据上传到健康监测软件;
步骤S203,所述健康监测软件获取所述人体三维点云数据,并结合所述体重数据,得到当前用户的身体数据;
步骤S204,根据所述身体数据对当前用户的体型进行建模,得到3D人体模拟图像;
步骤S205,将所述3D人体模拟图像、身体数据以及当前用户的身份信息进行关联存储。
通过设置三维扫描模块扫描用户身体,得到人体三维点云数据,再结合智能体重测量仪测量的体重数据,得到一个完整的身体数据;同时,利用健康监测软件绘制3D人体模拟图像,再将身体数据、3D人体模拟图像、以及用户身份信息进行关联,存储到本地健康数据库中,这样一来,在后续监控健康状况时,可方便随时查看健康状况,同时也可方便对比分析,从而得到用户健康状况的趋势。
步骤S300,通过所述电视机内的健康监测软件将所述身体数据转化为健康指数。
本实施例中,在得到完整的身体数据时,将实时的身体数据与本地健康数据库中的健康数据(比如:正常人的身高、体重、三围数据等)进行对比,经过减法运算,得到一个数据差值;然后将所述数据差值与本地健康数据库中的健康数据阈值进行对比,经过除法运算,得到对应的健康指数,这样一来,即可将多元化的身体数据转换为单一的健康指数,从而使用户查看数据时一目了然,从而得知自己处于健康状况或亚健康状况。
当然,也可以在本地健康数据库中的健康数据上取人均数值作为参考依据,对比该人均数值,得到用户的健康指数,这样可减少一些复杂的运算。
即具体地,所述步骤S300包括以下步骤:
步骤S301,根据所述身体数据对比本地健康数据库中的健康数据,经运算得到数据差值;
步骤S302,根据所述数据差值对比本地健康数据库中的健康数据阈值,经运算得到健康指数。
通过将用户身体数据转化为健康指数,可使多元化的身体数据转换为单一的健康指数,从而使用户查看时非常明了;同时,由于在扫描用户身体时,已将用户的身体数据存储在本地健康数据库中,因此,用户在后续查看数据时,可在所述健康指数与所述身体数据之间进行来回切换,极大地方便用户查看。
步骤S400,所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器,通过数据分析得到健康状况和对应的健康建议。
本实施例中,在得到健康指数之后,电视机将该健康指数保存到本地健康数据库或上传到云服务器,通过所述本地健康数据库或云服务器来分析该健康指数是否有异常波动。
优选地,本实施例中,以云服务器来分析用户的健康指数是否有异常波动,当检测到该健康指数有异常波动时,云服务器通过数据分析,从云数据库中得到健康状况和对应的健康建议,再结合用户的身份信息,将用户的云端健康数据进行更新。
同时,所述云服务器将该健康状况和对应的健康建议发送给电视机,所述电视机在接收到所述健康状况和对应的健康建议之后,在显示屏上进行显示,以提醒用户关注健康。
次选地,当电视机无法连接到云服务器时,以电视机来分析用户的健康指数是否有异常波动;当检测到该健康指数有异常波动时,电视机通过分析,从本地健康数据库中得到健康状况和对应的健康建议(所述本地健康数据库中健康状况、健康建议需从云服务器下载、更新),并将所述健康状况和对应的健康建议直接显示在显示屏上。
另外,在显示健康状况和对应的健康建议时,可在电视机的显示屏上设置小窗口,这样既能对用户进行提示又不影响用户观看电视或其他的操作。
本实施例中,所述云服务器中用户的健康数据可同步到用户的移动终端当中,用户可通过账户登入云服务器,在移动终端上实时地查看自己的健康数据。
即具体地,所述步骤S400包括以下步骤:
步骤S401,所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器;
步骤S402,所述云服务器或电视机分析并判断所述健康指数是否有异常波动;
步骤S403,当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议;
步骤S404,将所述健康状况和对应的健康建议显示在电视机的显示屏上;
步骤S405,所述云服务器更新当前用户的健康数据。
当然,本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过基于电视机的健康状况检测方法来指令相关硬件(如处理器,控制器等)来完成。
实施例2
请参见图2,图2是本公开较佳实施例中一种基于电视机的健康状况检测系统的功能原理框图。
如图2所示,本实施例提供了一种基于电视机的健康状况检测系统,包括电视机100、智能体重测量仪200、以及云服务器300;
所述电视机100通过网络与所述云服务器300进行连接;
所述智能体重测量仪200以有线或无线的连接方式与所述电视机100连接;
所述云服务器300用于接收所述电视机100发送的健康指数,分析并判断所述健康指数是否有异常波动,当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议,并将所述健康状况和对应的健康建议发送给电视机100进行显示;
所述电视机100和所述智能体重测量仪200用于实现上述基于电视机的健康状况检测方法;具体如上所述。
实施例3
如图2所示,本实施例提供了一种电视机,所述电视机100内设置有三维扫描模块110,所述电视机100外部连接有智能体重测量仪200,所述电视机100和所述智能体重测量仪200用于实现上述基于电视机的健康状况检测方法;具体如上所述。
综上所述,本公开基于电视机系统,通过3D扫描技术与体重测量技术,组成整个的人体测量系统,利用光学三维扫描的方式快速扫描人体数据,同时利用健康监测软件来对比分析用户的人体数据,得出该用户的健康指数,同时,根据该健康指数来得出对应的健康状况以及相应的健康建议,使用户在观看电视的同时还能实时监测自己的健康状况,并可根据电视机上显示的健康建议来对自己进行养生、锻炼,极大地方便了用户的使用。
应当理解的是,本公开的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,所有这些改进和变换都应属于本公开所附权利要求的保护范围。
工业实用性
本公开基于电视机系统,通过3D扫描技术与体重测量技术,组成整个的人 体测量系统,利用光学三维扫描的方式快速扫描人体数据,同时利用健康监测软件来对比分析用户的人体数据,得出该用户的健康指数,同时,根据该健康指数来得出对应的健康状况以及相应的健康建议,使用户在观看电视的同时还能实时监测自己的健康状况,并可根据电视机上显示的健康建议来对自己进行养生、锻炼,极大地方便了用户的使用。

Claims (15)

  1. 一种基于电视机的健康状况检测方法,其特征在于,所述电视机内置三维扫描模块且所述电视机与智能体重测量仪连接,所述基于电视机的健康状况检测方法包括以下步骤:
    通过智能体重测量仪测量用户的体重数据,并将所述体重数据发送给电视机;
    所述电视机接收所述体重数据,并控制三维扫描模块扫描当前用户的身体,结合所述体重数据,得到当前用户的身体数据;
    通过所述电视机内的健康监测软件将所述身体数据转化为健康指数;
    所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器,通过数据分析得到健康状况和对应的健康建议。
  2. 根据权利要求1所述的基于电视机的健康状况检测方法,其特征在于,所述通过智能体重测量仪测量用户的体重数据,并将所述体重数据发送给电视机之前还包括:
    预先在电视机中安装健康监测软件以及设置本地健康数据库;所述本地健康数据库至少包括健康数据、健康数据阈值、健康指数、以及对应的健康建议。
  3. 根据权利要求2所述的基于电视机的健康状况检测方法,其特征在于,所述预先在电视机中安装健康监测软件以及设置本地健康数据库之后还包括:
    通过所述健康监测软件输入当前用户的身份信息,并将所述身份信息保存到所述本地健康数据库中。
  4. 根据权利要求1所述的基于电视机的健康状况检测方法,其特征在于,所述电视机接收所述体重数据,并控制三维扫描模块扫描当前用户的身体,结合所述体重数据,得到当前用户的身体数据具体包括:
    所述电视机接收所述体重数据,并控制开启三维扫描模块;
    所述三维扫描模块扫描当前用户的身体,并将扫描到的人体三维点云数据上传到健康监测软件;
    所述健康监测软件获取所述人体三维点云数据,并结合所述体重数据,得到当前用户的身体数据。
  5. 根据权利要求4所述的基于电视机的健康状况检测方法,其特征在于,所述健康监测软件获取所述人体三维点云数据,并结合所述体重数据,得到当前 用户的身体数据之后还包括:
    根据所述身体数据对当前用户的体型进行建模,得到3D人体模拟图像;
    将所述3D人体模拟图像、身体数据以及当前用户的身份信息进行关联存储。
  6. 根据权利要求5所述的基于电视机的健康状况检测方法,其特征在于,所述身份信息包括用户名称、性别以及作息时间。
  7. 根据权利要求4所述的基于电视机的健康状况检测方法,其特征在于,所述人体三维点云数据包括体型数据以及身高数据。
  8. 根据权利要求1所述的基于电视机的健康状况检测方法,其特征在于,所述通过所述电视机内的健康监测软件将所述身体数据转化为健康指数具体包括:
    根据所述身体数据对比本地健康数据库中的健康数据,经运算得到数据差值;
    根据所述数据差值对比本地健康数据库中的健康数据阈值,经运算得到健康指数。
  9. 根据权利要求1所述的基于电视机的健康状况检测方法,其特征在于,所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器,通过数据分析得到健康状况和对应的健康建议具体包括:
    所述电视机将所述健康指数保存到本地健康数据库或上传到云服务器;
    所述云服务器或电视机分析并判断所述健康指数是否有异常波动;
    当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议。
  10. 根据权利要求9所述的基于电视机的健康状况检测方法,其特征在于,所述当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议之后还包括:
    将所述健康状况和对应的健康建议显示在电视机的显示屏上;
    所述云服务器更新当前用户的健康数据。
  11. 根据权利要求1所述的基于电视机的健康状况检测方法,其特征在于,所述智能体重测量仪以有线或者无线连接的方式与所述电视机进行连接。
  12. 根据权利要求11所述的基于电视机的健康状况检测方法,其特征在于, 所述无线连接的方式包括WIFI、蓝牙以及红外连接。
  13. 一种基于电视机的健康状况检测系统,其特征在于,包括电视机、智能体重测量仪、以及云服务器;
    所述电视机通过网络与所述云服务器连接;
    所述智能体重测量仪以有线或无线的连接方式与所述电视机连接;
    所述云服务器用于接收所述电视机发送的健康指数,分析并判断所述健康指数是否有异常波动,当所述健康指数有异常波动时,通过数据分析得到健康状况和对应的健康建议,并将所述健康状况和对应的健康建议发送给电视机进行显示;
    所述电视机和所述智能体重测量仪用于实现如权利要求1-12所述的基于电视机的健康状况检测方法。
  14. 根据权利要求13所述的基于电视机的健康状况检测系统,其特征在于,所述电视机内置三维扫描模块。
  15. 一种电视机,其特征在于,所述电视机内设置有三维扫描模块,所述电视机外部连接有智能体重测量仪,所述电视机和所述智能体重测量仪用于实现如权利要求1-12所述的基于电视机的健康状况检测方法。
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