WO2018210006A1 - 一种监测运动呼吸率的智能服装及运动指导系统 - Google Patents

一种监测运动呼吸率的智能服装及运动指导系统 Download PDF

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Publication number
WO2018210006A1
WO2018210006A1 PCT/CN2018/074889 CN2018074889W WO2018210006A1 WO 2018210006 A1 WO2018210006 A1 WO 2018210006A1 CN 2018074889 W CN2018074889 W CN 2018074889W WO 2018210006 A1 WO2018210006 A1 WO 2018210006A1
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data
smart
exercise
module
motion guiding
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PCT/CN2018/074889
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English (en)
French (fr)
Inventor
薛磊
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广东乐源数字技术有限公司
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Publication of WO2018210006A1 publication Critical patent/WO2018210006A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D1/00Garments
    • A41D1/04Vests, jerseys, sweaters or the like
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2600/00Uses of garments specially adapted for specific purposes
    • A41D2600/10Uses of garments specially adapted for specific purposes for sport activities
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2225/00Miscellaneous features of sport apparatus, devices or equipment
    • A63B2225/20Miscellaneous features of sport apparatus, devices or equipment with means for remote communication, e.g. internet or the like
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2225/00Miscellaneous features of sport apparatus, devices or equipment
    • A63B2225/50Wireless data transmission, e.g. by radio transmitters or telemetry
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2230/00Measuring physiological parameters of the user
    • A63B2230/04Measuring physiological parameters of the user heartbeat characteristics, e.g. ECG, blood pressure modulations
    • A63B2230/06Measuring physiological parameters of the user heartbeat characteristics, e.g. ECG, blood pressure modulations heartbeat rate only
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B2230/00Measuring physiological parameters of the user
    • A63B2230/75Measuring physiological parameters of the user calorie expenditure

Definitions

  • the present application relates to the field of smart wear, and in particular to a smart clothing and exercise guidance system for monitoring exercise respiratory rate.
  • the monitoring of the state of the heart during exercise is becoming more and more important, and the traditional ECG instrument can not be used during exercise, and the emerging smart watch can not easily test the ECG.
  • the development of sports monitoring smart clothing provides real-time and convenient ECG monitoring for sports enthusiasts, and also provides a factual basis for the calculation of exercise breathing rate.
  • the present invention provides a smart garment for monitoring exercise respiratory rate, comprising a garment worn close to the body, and at least one electrode and an electrocardiographic collection processing circuit disposed on the garment, the electrode for conducting the human body a bioelectrical signal on the surface of the skin, the ECG acquisition processing circuit comprising a signal amplification filter circuit, a microprocessor and a wireless transceiver, the signal amplification filter circuit receiving the electrocardiographic signal of the electrode and feeding it to the microprocessor The microprocessor processes the respiratory rate data according to the ECG signal and sends it through the wireless transceiver.
  • the electrodes are three, and the signal amplification filter circuit comprises a high resistance low noise amplification circuit and a multi-stage filter.
  • the obtaining the respiratory rate data comprises the steps of: firstly calculating 60 sets of PP/RR intervals according to the signals obtained by the electrodes, performing spectral transformation on the 60 sets of intervals, and obtaining frequencies of 0.2-0.4 Hz.
  • the present invention also provides a motion guidance system, the system comprising a cloud storage unit, and the smart clothing, the intelligent terminal and the motion guiding unit installed in the smart terminal, as described above,
  • the cloud storage unit is configured to store historical data provided by the smart clothing
  • the smart terminal is configured to monitor a sports respiratory rate obtained by monitoring the smart clothing, and obtain temperature and humidity data and air pressure data through a temperature and humidity detecting module and an atmospheric pressure detecting module; and synthesize the above sports breathing rate and temperature and humidity data and air pressure data, Calculating the calorie burning value by the exercise time is forwarded by the wireless transmission module to the motion guiding unit;
  • the motion guiding unit includes a data storage module, a data receiving module, and a motion guiding application module, wherein: the data receiving module is configured to receive real-time data output by the intelligent monitoring unit; and the data storage module is configured to store The real-time data is forwarded by the data receiving module; the motion guiding application module is configured to provide a motion guiding solution for the user in real time by analyzing the historical data queried from the cloud storage unit and referring to the received real-time data.
  • the smart terminal includes at least one of a smart TV, a smart tablet, and a smart phone.
  • the user can know his own physical state by wearing only smart clothes.
  • FIG. 1 is a schematic view of a smart garment of the present invention.
  • FIG. 2 is a flow chart of obtaining respiratory rate data according to the present invention.
  • the present invention provides a smart clothing for motion monitoring, which comprises a garment worn close to the body, and three electrodes and an electrocardiographic collection processing circuit disposed on the garment, the electrodes being used for conducting the human body.
  • a bioelectrical signal on the surface of the skin wherein 1, 2 are test electrodes, 3 is a reference electrode, and the electrode has a diameter of 1 cm
  • the electrocardiographic acquisition processing circuit includes a signal amplification filter circuit, a microprocessor, and a wireless transceiver, the signal The amplification filter circuit receives the electrocardiographic signal of the electrode and sends it to the microprocessor, and the microprocessor sends the processed respiratory rate data through the wireless transceiver.
  • the acquisition process of the ECG data is shown in Figure 2.
  • the skin bioelectrical signal is obtained through the electrode, and then the electrocardiogram signal is obtained by the amplification circuit and the filter circuit, and then the PP/RR period is calculated by the microprocessor.
  • Calculate 60 sets of PP/RR intervals, perform spectrum transformation on the 60 sets of intervals, obtain the frequency f with the frequency between 0.2-0.4 Hz and the maximum amplitude, and calculate the exercise respiration rate 60*f.
  • the present invention also provides a motion guidance system, the system comprising a cloud storage unit, and the smart clothing, the intelligent terminal and the motion guiding unit installed in the smart terminal, as described above,
  • the cloud storage unit is configured to store historical data provided by the smart clothing
  • the smart terminal is configured to monitor a sports respiratory rate obtained by monitoring the smart clothing, and obtain temperature and humidity data and air pressure data through a temperature and humidity detecting module and an atmospheric pressure detecting module; and synthesize the above sports breathing rate and temperature and humidity data and air pressure data, Calculating the calorie burning value by the exercise time is forwarded by the wireless transmission module to the motion guiding unit;
  • the motion guiding unit includes a data storage module, a data receiving module, and a motion guiding application module, wherein: the data receiving module is configured to receive real-time data output by the intelligent monitoring unit; and the data storage module is configured to store The real-time data is forwarded by the data receiving module; the motion guiding application module is configured to provide a motion guiding solution for the user in real time by analyzing the historical data queried from the cloud storage unit and referring to the received real-time data.
  • the smart terminal includes at least one of a smart TV, a smart tablet, and a smart phone.
  • the present invention provides a smart garment for monitoring exercise respiratory rate, comprising a garment worn close to the body, and at least one electrode and an electrocardiographic collection processing circuit disposed on the garment, the electrode for conducting the human body a bioelectrical signal on the surface of the skin, the ECG acquisition processing circuit comprising a signal amplification filter circuit, a microprocessor and a wireless transceiver, the signal amplification filter circuit receiving the electrocardiographic signal of the electrode and feeding it to the microprocessor The microprocessor processes the respiratory rate data according to the ECG signal and sends it through the wireless transceiver.
  • the electrodes are three, and the signal amplification filter circuit comprises a high resistance low noise amplification circuit and a multi-stage filter.
  • the obtaining the respiratory rate data comprises the steps of: firstly calculating 60 sets of PP/RR intervals according to the signals obtained by the electrodes, performing spectral transformation on the 60 sets of intervals, and obtaining frequencies of 0.2-0.4 Hz.
  • the present invention also provides a motion guidance system, the system comprising a cloud storage unit, and the smart clothing, the intelligent terminal and the motion guiding unit installed in the smart terminal, as described above,
  • the cloud storage unit is configured to store historical data provided by the smart clothing
  • the smart terminal is configured to monitor a sports respiratory rate obtained by monitoring the smart clothing, and obtain temperature and humidity data and air pressure data through a temperature and humidity detecting module and an atmospheric pressure detecting module; and synthesize the above sports breathing rate and temperature and humidity data and air pressure data, Calculating the calorie burning value by the exercise time is forwarded by the wireless transmission module to the motion guiding unit;
  • the motion guiding unit includes a data storage module, a data receiving module, and a motion guiding application module, wherein: the data receiving module is configured to receive real-time data output by the intelligent monitoring unit; and the data storage module is configured to store The real-time data is forwarded by the data receiving module; the motion guiding application module is configured to provide a motion guiding solution for the user in real time by analyzing the historical data queried from the cloud storage unit and referring to the received real-time data.
  • the smart terminal includes at least one of a smart TV, a smart tablet, and a smart phone.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)

Abstract

一种监测运动呼吸率的智能服装及运动指导系统,智能服装包括贴身穿着的服装,在服装上设置至少一个电极(1、2、3)和心电采集处理电路以获得用户的呼吸率数据,然后将该数据传送至运动指导系统,由运动指导系统根据呼吸率数据、温湿度、气压数据等进行科学的运动指导。

Description

一种监测运动呼吸率的智能服装及运动指导系统 技术领域
本申请涉及智能穿戴领域,具体涉及一种监测运动呼吸率的智能服装及运动指导系统。
背景技术
日常运动在人们的生活中越来越重要,如何正确进行有氧运动消耗脂肪含量保持身形,或避免运动过度猝死等,正确的运动方式越来越重要。
技术问题
对于用户来说,对运动中心脏的状态监控也越来越重要,而传统的心电图仪器无法在运动时使用,新兴的智能手表也无法便捷测试心电图。运动监测智能服装的开发为运动爱好者提供了实时便捷的心电图监测,也为运动呼吸率计算提供了事实依据。
技术解决方案
基于以上情形,本发明给出了一种监测运动呼吸率的智能服装,其包括贴身穿着的服装,以及所述服装上设置的至少一个电极和心电采集处理电路,所述电极用于传导人体皮肤表面的生物电信号,所述心电采集处理电路包括信号放大滤波电路、微处理器和无线收发器,所述信号放大滤波电路接收所述电极的心电信号,并将其送入微处理器,微处理器根据所述心电信号处理得到呼吸率数据并通过无线收发器发出。
优选的,所述电极为三根,所述信号放大滤波电路包括高阻低噪放大电路和多级滤波器。
优选的,所述得到呼吸率数据包括以下步骤:首先根据所述电极获得的信号连续计算60组PP/RR间期,对所述60组间期进行频谱变换,获取频率在0.2-0.4Hz之间且幅值最大点的频率f,计算运动呼吸率=60*f。
本发明还给出了一种运动指导系统,该系统包括云端存储单元、以及如前所述的智能服装、智能终端和安装在所述智能终端中的运动指导单元,
其中,
所述云端存储单元用于存储所述智能服装提供的历史数据;
所述智能终端用于监控所述智能服装监测得到的运动呼吸率,以及通过温湿度检测模块、大气压检测模块获取温湿度数据和气压数据;并且综合以上运动呼吸率和温湿度数据和气压数据,通过运动时间计算卡路里燃烧值由无线传输模块转发至所述运动指导单元中;
所述运动指导单元包括数据存储模块、数据接收模块和运动指导应用模块,其中:所述数据接收模块,用于接收所述智能监控单元输出的实时数据;所述数据存储模块,用于存储所述数据接收模块转发的实时数据;所述运动指导应用模块,用于通过从云端存储单元查询的历史数据进行分析并参考接收到的实时数据,实时的为用户提供运动指导方案。
   其中,所述智能终端包括智能电视、智能平板和智能手机至少之一。
有益效果
通过上述的技术方案,用户可以仅仅穿戴智能服饰即可知晓自身的身体状态。
附图说明
图1为本发明的智能服装示意图。
图2为本发明的呼吸率数据获取流程图。
本发明的实施方式
实施例一。
如图1所示,本发明给出了一种运动监测的智能服装,其包括贴身穿着的服装,以及所述服装上设置的三个电极和心电采集处理电路,所述电极用于传导人体皮肤表面的生物电信号,其中1,2为测试电极,3为参考电极,电极尺寸直径为1cm,所述心电采集处理电路包括信号放大滤波电路、微处理器和无线收发器,所述信号放大滤波电路接收所述电极的心电信号,并将其送入微处理器,微处理器将处理后的呼吸率数据通过无线收发器发出。
心电数据的获取流程如图2所示,其通过电极获取皮肤生物电信号,然后经过放大电路和滤波电路后早处理获取心电图信号,然后通过微处理器来计算其PP/RR的周期,连续计算60组PP/RR间期,对所述60组间期进行频谱变换,获取频率在0.2-0.4Hz之间且幅值最大点的频率f,计算运动呼吸率=60*f。
本发明还给出了一种运动指导系统,该系统包括云端存储单元、以及如前所述的智能服装、智能终端和安装在所述智能终端中的运动指导单元,
其中,
所述云端存储单元用于存储所述智能服装提供的历史数据;
所述智能终端用于监控所述智能服装监测得到的运动呼吸率,以及通过温湿度检测模块、大气压检测模块获取温湿度数据和气压数据;并且综合以上运动呼吸率和温湿度数据和气压数据,通过运动时间计算卡路里燃烧值由无线传输模块转发至所述运动指导单元中;
所述运动指导单元包括数据存储模块、数据接收模块和运动指导应用模块,其中:所述数据接收模块,用于接收所述智能监控单元输出的实时数据;所述数据存储模块,用于存储所述数据接收模块转发的实时数据;所述运动指导应用模块,用于通过从云端存储单元查询的历史数据进行分析并参考接收到的实时数据,实时的为用户提供运动指导方案。
   其中,所述智能终端包括智能电视、智能平板和智能手机至少之一。
此外,本发明还可以通过电极来计算运动心率来衡量是否有氧运动。若心率测试值在50%~75%最大心率之间,即为有氧运动,人体最大心率=220-年龄。 例如:20岁的小伙子跑步时心率跳动为150每分钟,那么他的最大心率为220-20=200,150/200=75%最大心率,所以他的跑步为有氧运动。此时可以通过智能终端对其进行有氧运动结合其呼吸频率表进行指导或者提醒,以上的指导和提醒可以来自系统的数据库预存的科学运动的有效指导信息。
实施例二。
基于以上情形,本发明给出了一种监测运动呼吸率的智能服装,其包括贴身穿着的服装,以及所述服装上设置的至少一个电极和心电采集处理电路,所述电极用于传导人体皮肤表面的生物电信号,所述心电采集处理电路包括信号放大滤波电路、微处理器和无线收发器,所述信号放大滤波电路接收所述电极的心电信号,并将其送入微处理器,微处理器根据所述心电信号处理得到呼吸率数据并通过无线收发器发出。
优选的,所述电极为三根,所述信号放大滤波电路包括高阻低噪放大电路和多级滤波器。
优选的,所述得到呼吸率数据包括以下步骤:首先根据所述电极获得的信号连续计算60组PP/RR间期,对所述60组间期进行频谱变换,获取频率在0.2-0.4Hz之间且幅值最大点的频率f,计算运动呼吸率=60*f。
本发明还给出了一种运动指导系统,该系统包括云端存储单元、以及如前所述的智能服装、智能终端和安装在所述智能终端中的运动指导单元,
其中,
所述云端存储单元用于存储所述智能服装提供的历史数据;
所述智能终端用于监控所述智能服装监测得到的运动呼吸率,以及通过温湿度检测模块、大气压检测模块获取温湿度数据和气压数据;并且综合以上运动呼吸率和温湿度数据和气压数据,通过运动时间计算卡路里燃烧值由无线传输模块转发至所述运动指导单元中;
所述运动指导单元包括数据存储模块、数据接收模块和运动指导应用模块,其中:所述数据接收模块,用于接收所述智能监控单元输出的实时数据;所述数据存储模块,用于存储所述数据接收模块转发的实时数据;所述运动指导应用模块,用于通过从云端存储单元查询的历史数据进行分析并参考接收到的实时数据,实时的为用户提供运动指导方案。
   其中,所述智能终端包括智能电视、智能平板和智能手机至少之一。
以上实施例仅用以说明本发明的技术方案而非限定,仅仅参照较佳实施 例对本发明进行了详细说明。本领域的普通技术人员应当理解,可以对本发 明的技术方案进行修改或等同替换,而不脱离本发明技术方案的精神和范围, 均应涵盖在本发明的权利要求范围当中。
 

Claims (5)

  1. 一种监测运动呼吸率的智能服装,其包括贴身穿着的服装,以及所述服装上设置的至少一个电极和心电采集处理电路,其特征在于,所述电极用于传导人体皮肤表面的生物电信号,所述心电采集处理电路包括信号放大滤波电路、微处理器和无线收发器,所述信号放大滤波电路接收所述电极的心电信号,并将其送入微处理器,微处理器根据所述心电信号处理得到呼吸率数据并通过无线收发器发出。
  2. 如权利要求1所述的监测运动呼吸率的智能服装,其特征在于,所述电极为三根,所述信号放大滤波电路包括高阻低噪放大电路和多级滤波器。
  3. 如权利要求2所述的监测运动呼吸率的智能服装,其特征在于,所述得到呼吸率数据包括以下步骤:首先根据所述电极获得的信号连续计算60组PP/RR间期,对所述60组间期进行频谱变换,获取频率在0.2-0.4Hz之间且幅值最大点的频率f,计算运动呼吸率=60*f。
  4. 一种运动指导系统,其特征在于, 该系统包括云端存储单元、以及如权利要求3所述的智能服装、智能终端和安装在所述智能终端中的运动指导单元,
    其中,
    所述云端存储单元用于存储所述智能服装提供的历史数据;
    所述智能终端用于监控所述智能服装监测得到的运动呼吸率,以及通过温湿度检测模块、大气压检测模块获取温湿度数据和气压数据;并且综合以上运动呼吸率和温湿度数据和气压数据,通过运动时间计算卡路里燃烧值由无线传输模块转发至所述运动指导单元中;
    所述运动指导单元包括数据存储模块、数据接收模块和运动指导应用模块,其中:所述数据接收模块,用于接收所述智能监控单元输出的实时数据;所述数据存储模块,用于存储所述数据接收模块转发的实时数据;所述运动指导应用模块,用于通过从云端存储单元查询的历史数据进行分析并参考接收到的实时数据,实时的为用户提供运动指导方案。
  5.  如权利要求4所述的运动指导系统,其特征在于,所述智能终端包括智能电视、智能平板和智能手机至少之一。
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