WO2018121244A1 - 有线人体状况及行为监控报警系统 - Google Patents

有线人体状况及行为监控报警系统 Download PDF

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Publication number
WO2018121244A1
WO2018121244A1 PCT/CN2017/115632 CN2017115632W WO2018121244A1 WO 2018121244 A1 WO2018121244 A1 WO 2018121244A1 CN 2017115632 W CN2017115632 W CN 2017115632W WO 2018121244 A1 WO2018121244 A1 WO 2018121244A1
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WIPO (PCT)
Prior art keywords
module
monitoring
data
main board
fingerprint
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PCT/CN2017/115632
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English (en)
French (fr)
Inventor
唐明宏
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匡海云
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Publication of WO2018121244A1 publication Critical patent/WO2018121244A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • A61B5/02055Simultaneously evaluating both cardiovascular condition and temperature
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor, mobility of a limb
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/117Identification of persons
    • A61B5/1171Identification of persons based on the shapes or appearances of their bodies or parts thereof
    • A61B5/1172Identification of persons based on the shapes or appearances of their bodies or parts thereof using fingerprinting
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/16Devices for psychotechnics; Testing reaction times ; Devices for evaluating the psychological state
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • A61B5/316Modalities, i.e. specific diagnostic methods
    • A61B5/369Electroencephalography [EEG]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B7/00Instruments for auscultation
    • A61B7/02Stethoscopes
    • A61B7/04Electric stethoscopes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2560/00Constructional details of operational features of apparatus; Accessories for medical measuring apparatus
    • A61B2560/02Operational features
    • A61B2560/0204Operational features of power management
    • A61B2560/0214Operational features of power management of power generation or supply
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2560/00Constructional details of operational features of apparatus; Accessories for medical measuring apparatus
    • A61B2560/02Operational features
    • A61B2560/0242Operational features adapted to measure environmental factors, e.g. temperature, pollution

Definitions

  • the invention relates to the field of smart wearable devices, in particular to a wired human condition and behavior monitoring and alarming system.
  • the wave the field of healthy smart wearable devices.
  • the purpose of the Japanese invention is to provide a wired human body that can monitor and warn human conditions in real time.
  • a wired human condition and behavior monitoring and alarming system which is characterized in that it comprises a main board, a sensing system and an interactive system:
  • the main board is provided with a central processing unit for transmitting and receiving processing information and transmitting an alarm instruction, a display for displaying information data, a communication module for transmitting alarm information and communication to an external terminal, and an alarm for issuing an alarm signal.
  • the sensing system includes a heart rate sensor and at least two temperature and humidity sensors:
  • the heart rate sensor is electrically connected to the main board for sensing and collecting human heart rate data in real time and transmitting the collected data to the main board:
  • the temperature and humidity sensor is electrically connected to the main board, and is used for real-time sensing and collecting human body temperature and humidity data near the disposed position and transmitting the collected data to the main board:
  • the central processor When the central processor receives the human blood pressure data, the human heart rate data, the hydrogen sulfide concentration data, and the human body temperature and humidity data exceeds the set value in real time, immediately sends an alarm command to the alarm module, so that the alarm module sends an alarm signal and sends an alarm to the terminal through the communication module.
  • the interactive system includes an input device:
  • the input device is electrically connected to the main board for identifying the user identity and controlling the communication module to establish a communication connection with the external terminal.
  • the input device comprises a fingerprint identification module, a fingerprint storage module and a fingerprint processing module:
  • the fingerprint identification module is connected to the fingerprint processing module and is configured to collect fingerprint information data and transmit the data to the fingerprint processing module:
  • the fingerprint storage module is connected to the fingerprint processing module and configured to store a mapping table, where the mapping table stores user fingerprint information and information corresponding to each terminal identity information:
  • the fingerprint processor is configured to read the fingerprint information collected by the fingerprint identification module and compare it with the user fingerprint information in the fingerprint storage module mapping table one by one:
  • the terminal identity information corresponding to the user fingerprint information is read and a communication request is initiated to the terminal by the communication module:
  • the fingerprint information collected by the fingerprint identification module and the user fingerprint information stored in the fingerprint storage module are unsuccessful, the fingerprint information is deleted.
  • the terminal referred to in the present invention may be a mobile phone, a tablet computer, a PC, or another terminal device capable of establishing a communication connection with a communication device, such as a wired human body condition and behavior monitoring alarm system.
  • the display can also be replaced with a display lamp.
  • It also includes a police touch button that is connected to the central processor and used to eliminate alarm module alarms.
  • the invention is arranged in a garment or a mesh made of an elastic band to attach between the components.
  • the wires are then placed on the human body.
  • the present invention is such that it prevents disease:
  • Each sensor in the monitoring system transmits the human heart rate data and the human body temperature and humidity data to the main board in real time.
  • the wearer's physical condition is abnormal at this time, and the system immediately issues an alarm command to the alarm module. Therefore, the alarm module sends an alarm signal and sends an alarm message to the terminal through the communication module, so that the monitor knows the physical condition of the wearer at this time, such as cold, body heat, body wetness, etc., thereby solving the problem in time and avoiding illness.
  • the present invention also includes a behavior monitoring system:
  • the behavior monitoring system includes a brain wave sensor, an electronic gyroscope, and a monitoring device:
  • the brain wave sensor is electrically connected to the main board for sensing and collecting human brain wave data in real time and transmitting the collected data to the main board:
  • the electronic gyroscope is electrically connected to the main board for sensing and collecting human body posture data in real time and transmitting the collected data to the main board:
  • the monitoring device is electrically connected to the main board for real-time monitoring and recording of the occurrence of the human body and the surrounding environment.
  • the monitoring device comprises a noise monitoring module, a monitoring storage module and a monitoring processing module:
  • the noise monitoring module is connected to the noise processing module for real-time monitoring of the noise level of the surrounding environment:
  • the monitoring storage module is connected to the monitoring processing module for storing data:
  • the monitoring processing module detects that the noise loudness of the surrounding environment is greater than the set value by the noise monitoring module, the recorded data is saved to the monitoring storage module, and finally the recorded data is transmitted to the terminal through the communication module.
  • monitoring touch button coupled to the central processor and used to control the monitoring device switch.
  • the monitoring device further comprises an electronic diagnosing device for acquiring body sound data:
  • the monitoring module transmits the human body sound data obtained by the electronic clinic to the monitoring storage module for storage, and finally transmits the human body sound data to the terminal through the communication module.
  • the electronic percussion device allows the monitor to know more subtle sounds in the wearer's body, such as subtle breathing sounds and more specific heartbeat sounds, so as to better monitor the wearer's effect.
  • the monitoring device further comprises an imaging device for recording an image of the surrounding environment:
  • the camera device When the monitoring processing module detects that the noise loudness of the surrounding environment is greater than the set value by the noise monitoring module, the camera device is started to start capturing and save the camera data to the monitoring storage module, and finally the camera data is transmitted to the monitoring module through the communication module. terminal.
  • a camera touch button that is coupled to the central processor and is used to control the camera switch.
  • the camera device can simultaneously perform recording or photographing while recording, so that the monitor can more accurately grasp the sudden situation that the wearer is facing immediately, such as the wearer having a squawk with others, an explosion or a sudden earthquake around, etc. Wait for some special circumstances.
  • the role of the behavior monitoring system is to enable the monitor to grasp the wearer's behavior status information in time to achieve better monitoring of the wearer's purpose.
  • the monitoring device works like this:
  • the behavior monitoring system can automatically determine whether the posture of the wearer is normal by monitoring the change of the human body posture data in real time. By monitoring the change of the human brain wave data in real time, it can automatically determine whether the real-time mental state of the wearer is abnormal, and if an abnormality is detected. When the situation occurs (such as sudden fall, or a person with a squabble, or emotional abnormality), an alarm signal is immediately sent and the alarm information is sent to the terminal through the communication module to let the monitor know in time that the wearer's behavior is abnormal. In the case, if the ambient noise is greater than the set value, the monitoring device is activated to record, record or take a picture and transmit it to the terminal in real time.
  • the communication module is two or any combination of a Bluetooth module, a GSM module, a WIFI module, a radio transceiver module, and a zigbee module:
  • the Bluetooth module is used to establish a communication connection with a terminal with a Bluetooth module:
  • the GSM module is used to establish a communication connection with a terminal with a GSM module, and the GSM module is provided with a SIM card holder, a GPRS module and a GPS positioning module:
  • the WIFI module is used to establish a communication connection with a terminal with a WIFI module:
  • the radio transceiver module is configured to establish a communication connection with a terminal having a radio transceiver module:
  • the zigbee module is used to establish a communication connection with a terminal with a zigbee module.
  • the method further comprises a heating system consisting of a plurality of heating devices placed around the body, the heating device being electrically connected to the main board:
  • the heating device When the central processor senses that the temperature of the human body is lower than the set value by the temperature and humidity sensor, the heating device is controlled to start heating:
  • the heating device When the central processor senses that the temperature of the human body is higher than the set value by the temperature and humidity sensor, the heating device is controlled to stop heating.
  • the purpose of the heating system is to provide a certain heat source to the human body when the ambient temperature is too low.
  • the motherboard also has a radio module.
  • the display is provided with a touch screen.
  • the power supply module is a solar battery.
  • the sensing system further includes a blood pressure sensor and a hydrogen sulfide sensor.
  • the blood pressure sensor is electrically connected to the main board for sensing and collecting human blood pressure data in real time and transmitting the collected data to the main board:
  • the hydrogen sulfide sensor is electrically connected to the main board for real-time sensing and collecting the hydrogen sulfide discharged by the human body.
  • the invention can effectively monitor the wearer through the monitoring system, and when the wearer's body has an abnormal condition of the disease, and can timely send out the alarm information and transmit it to the terminal through the communication module, so that the monitor can know the time in time.
  • the information can be processed in time to effectively prevent the wearer from getting sick:
  • the behavior monitoring system of the present invention monitors the behavior of the wearer in real time through recording, video recording, photographing, posture detection and the like to enable timely intervention when abnormal behavior occurs:
  • the invention is convenient to wear and rich in functions, and is especially suitable for children or elderly people who have no or lost autonomic behavior.
  • FIG. 1 is a block diagram of the module of the present invention.
  • the invention relates to two wired human body condition and behavior monitoring and alarming systems, which are characterized in that: a main board, a sensing system and an interactive system are:
  • the main board is provided with a central processing unit for transmitting and receiving processing information and transmitting an alarm instruction, a display for displaying information data, a communication module for transmitting alarm information and communication to an external terminal, and an alarm for issuing an alarm signal.
  • the sensing system includes a heart rate sensor and at least two temperature and humidity sensors:
  • the heart rate sensor is electrically connected to the main board for sensing and collecting human heart rate data in real time and transmitting the collected data to the main board:
  • the temperature and humidity sensor is electrically connected to the main board, and is used for real-time sensing and collecting human body temperature and humidity data near the disposed position and transmitting the collected data to the main board:
  • the central processor When the central processor receives the human blood pressure data, the human heart rate data, the hydrogen sulfide concentration data, and the human body temperature and humidity data exceeds the set value in real time, immediately sends an alarm command to the alarm module, so that the alarm module sends an alarm signal and sends an alarm to the terminal through the communication module.
  • the interactive system includes an input device:
  • the input device is electrically connected to the main board for identifying the user identity and controlling the communication module to establish a communication connection with the external terminal.
  • the input device comprises a fingerprint identification module, a fingerprint storage module and a fingerprint processing module:
  • the fingerprint identification module is connected to the fingerprint processing module and is configured to collect fingerprint information data and transmit the data to the fingerprint processing module:
  • the fingerprint storage module is connected to the fingerprint processing module and configured to store a mapping table, where the mapping table stores user fingerprint information and information corresponding to each terminal identity information:
  • the fingerprint processor is configured to read the fingerprint information collected by the fingerprint identification module and compare it with the user fingerprint information in the fingerprint storage module mapping table one by one:
  • the terminal identity information corresponding to the user fingerprint information is read and the communication is initiated to the terminal through the communication module.
  • the fingerprint information collected by the fingerprint identification module and the user fingerprint information stored in the fingerprint storage module are unsuccessful, the fingerprint information is deleted.
  • the present invention also includes a behavior monitoring system:
  • the behavior monitoring system includes a brain wave sensor, an electronic gyroscope, and a monitoring device:
  • the brain wave sensor is electrically connected to the main board, and is used for real-time sensing and collecting human brain wave data and
  • the collected data is transmitted to the motherboard:
  • the electronic gyroscope is electrically connected to the main board for sensing and collecting human body posture data in real time and transmitting the collected data to the main board:
  • the monitoring device is electrically connected to the main board for real-time monitoring and recording of the occurrence of the human body and the surrounding environment.
  • the monitoring device comprises a noise monitoring module, a monitoring storage module and a monitoring processing module:
  • the noise monitoring module is connected to the noise processing module for real-time monitoring of the noise level of the surrounding environment:
  • the monitoring storage module is connected to the monitoring processing module for storing data:
  • the monitoring processing module detects that the noise loudness of the surrounding environment is greater than the set value by the noise monitoring module, the recorded data is saved to the monitoring storage module, and finally the recorded data is transmitted to the terminal through the communication module.
  • the monitoring device further comprises an electronic diagnosing device for acquiring body sound data:
  • the monitoring processing module transmits the human body sound data obtained by the electronic percussive device to the monitoring storage module for storage, and finally transmits the human body sound data to the terminal through the communication module.
  • the monitoring device further comprises an imaging device for recording an image of the surrounding environment:
  • the camera device When the monitoring processing module detects that the noise loudness of the surrounding environment is greater than the set value by the noise monitoring module, the camera device is started to start capturing and save the camera data to the monitoring storage module, and finally the camera data is transmitted to the monitoring module through the communication module. terminal.
  • the communication module is two or any combination of a Bluetooth module, a GSM module, a WIFI module, a radio transceiver module, and a zigbee module:
  • the Bluetooth module is used to establish a communication connection with a terminal with a Bluetooth module:
  • the GSM module is used to establish a communication connection with a terminal with a GSM module, and the GSM module is provided with a SIM card holder, a GPRS module and a GPS positioning module:
  • the WIFI module is used to establish a communication connection with a terminal with a WIFI module:
  • the radio transceiver module is configured to establish a communication connection with a terminal having a radio transceiver module:
  • the zigbee module is used to establish a communication connection with a terminal with a zigbee module.
  • the method further comprises a heating system consisting of a plurality of heating devices placed around the body, the heating device being electrically connected to the main board:
  • the heating device When the central processor senses that the temperature of the human body is lower than the set value by the temperature and humidity sensor, the heating device is controlled to start heating:
  • the heating device When the central processor senses that the temperature of the human body is higher than the set value by the temperature and humidity sensor, the heating device is controlled to stop heating.
  • the motherboard also has a radio module.
  • the display is provided with a touch screen.
  • the display is an OLED display.
  • the power supply module is a solar battery.
  • the sensing system further includes a blood pressure sensor and a hydrogen sulfide sensor.
  • the blood pressure sensor is electrically connected to the main board for sensing and collecting human blood pressure data in real time and transmitting the collected data to the main board:
  • the hydrogen sulfide sensor is electrically connected to the main board for sensing and collecting the hydrogen sulfide concentration data discharged by the human body in real time and transmitting the collected data to the main board.

Abstract

一种有线人体状况及行为监控报警系统,涉及智能穿戴设备领域,其包括主板、感应系统以及交互系统;主板上设有用于收发处理信息和发送报警指令的中央处理器、用于显示信息数据的显示器、用于向外界的终端发送报警信息及进行通讯的通讯模块、用于发出报警信号的报警模块以及用于为主板提供电源的供电模块;当中央处理器实时接收的人体血压数据、人体心率数据、硫化氢浓度数据、人体温湿度数据超出设定值时立刻向报警模块发出报警指令从而使报警模块发出报警信号并通过通讯模块向终端发送报警信息;交互系统包括输入装置。该系统能够实时对人体状况进行监测和预警。

Description

有线人体状况及行为监控报警系统 技术领域
本发明涉及智能穿戴设备领域,特别为一种有线人体状况及行为监控报警系统。
背景技术
社会科技的进步导致了产业的革命,现代人类已经不满足于原有的穿戴物仅提供
保暖或装饰等单二的功能,现代人更加关注身体的健康状况,因而结合目前智能穿戴的研
发浪潮,健康智能穿戴设备这一领域。
众所周知,人们出现一些病症除一部分是由于被附近病人传染以外还有很大的原因是由于对自身身体状况以及外界环境变化没有及时获知并采取相应的措施丽导致,例如天气过热或运动后导致的大量出汗、外界环境突然降温导致身体受凉,特别是对尚未成年的婴幼儿其自我保护意识较低,还会出现大小便失禁残留在衣裤上丽导致受凉的状况发生,要想预防由于类似原因而产生的问题就必须提前对人体上所产生的这些状况进行有效的监控。
然而,目前在智能穿戴领域尚未存在这种专门针对这种病症诱因相关的人体状况进行监控报警的穿戴设备。
技术问题
日本发明的目的在于:提供一种能够实时对人体状况进行监测和预警的有线人体状
况及行为监控报警系统。
技术解决方案
本发明通过如下技术方案实现:一种有线人体状况及行为监控报警系统,其特征在于:包括主板、感应系统以及交互系统:
所述主板上设有用于收发处理信息和发送报警指令的中央处理器、用于显示信息数据的显示器、用于向外界的终端发送报警信息及进行通讯的通讯模块、用于发出报警信号的报警模块以及用于为主板提供电源的供电模块:
所述感应系统包括心率传感器以及至少两个温湿度传感器:
所述心率传感器,与主板电连接,用于实时感应并收集人体心率数据并将所收集到的数据传送给主板:
所述温湿度传感器,与主板电连接,用于实时感应并收集所布设位置附近的人体温湿度数据并将所收集到的数据传送给主板:
当中央处理器实时接收人体血压数据、人体心率数据、硫化氢浓度数据、人体温湿度数据超出设定值时立刻向报警模块发出报警指令从而使报警模块发出报警信号并通过通讯模块向终端发送报警信息:
所述交互系统包括输入装置:
所述输入装置,与主板电连接,用于识别用户身份以及控制通讯模块与外界的终端建立通讯连接,输入装置包括指纹识别模块、指纹存储模块以及指纹处理模块:
所述指纹识别模块,与指纹处理模块连接,用于采集指纹信息数据并将数据传递给指纹处理模块:
所述指纹存储模块,与指纹处理模块连接,用于存储映射表,所述映射表存储有用户指纹信息及其与各终端身份信息一二对应关系信息:
所述指纹处理器,用于读取指纹识别模块所采集的指纹信息并将其与指纹存储模块映射表内的用户指纹信息逐个进行比对:
若指纹识别模块所采集的指纹信息与指纹存储模块中存储的用户指纹信息匹配成功,则读取与该用户指纹信息对应的终端身份信息并通过通讯模块向该终端发起通讯请求:
若指纹识别模块所采集的指纹信息与指纹存储模块中存储的用户指纹信息匹配不成功,则删除该指纹信息。
此处,本发明所指的终端可以是手机、平板电脑、PC机或者是另二个有线人体状况及行为监控报警系统等等可以与通讯装置建立通讯连接的终端设备。
这里,从生产成本的角度考虑,显示器也可以采用显示灯进行替代。
还包括与中央处理器连接并用于消除警报模块警报的消警触摸按钮。
其工作原理和过程如下:
通常本发明是设置在衣服内,或者利用弹性带编制成的网来附着各元器件之间的
电线而后再穿置于人体身上。
本发明是这样预防疾病的:
监控系统中的各传感器将人体心率数据、人体温湿度数据实时传输给主板,当其中的某些数据出现异常时则说明穿戴者此时身体状况发生异常,此时系统立刻向报警模块发出报警指令从而使报警模块发出报警信号并通过通讯模块向终端发送报警信息从而使监控者获知穿戴者此时的身体状况,诸如着凉、身体发热、身体湿透等情况从而及时解决问题,避免生病。
为了更好的实施本方案还提供如下优化方案:
进二步的,本发明还包括行为监控系统:
所述行为监控系统包括脑电波传感器、电子陀螺仪以及监测装置:
所述脑电波传感器,与主板电连接,用于实时感应并收集人体脑电波数据并将所收集到的数据传送给主板:
所述电子陀螺仪,与主板电连接,用于实时感应并收集人体姿态数据并将所收集到的数据传送给主板:
所述监测装置,与主板电连接,用于实时监测和记录人体及周围环境所发生的情况,监测装置包括噪声监测模块、监测存储模块以及监测处理模块:
所述噪声监测模块,与噪声处理模块连接,用于实时监测周围环境的噪音大小:
所述监测存储模块,与监测处理模块连接,用于存储数据:
所述当监测处理模块通过噪声监测模块侦测到周围环境的噪音响度大于设定值时,则将录音数据保存至监测存储模块中,最后将录音数据通过通讯模块传送至终端。
还包括与中央处理器连接并用于控制监测装置开关的监测触摸按钮。
优边的,所述监测装置还包括用于获取人体声音数据的电子昕诊器:
所述监 .处理模块将电子昕诊器将获得的人体声音数据传送至监测存储模块保存,最后将人体声音数据通过通讯模块传送至终端。
电子昕诊器可以使监测者获知穿戴者体内更细微的声音,比如细微的呼吸声以及更具体的心跳声从而能够达到更好的监测穿戴者的效果。
优边的,所述监测装置还包括用于记录周围环境影像的摄像装置:
所述当监测处理模块通过噪声监测模块侦测到周围环境的噪音响度大于设定值时,则启动摄像装置开始摄像并将摄像数据保存至监测存储模块中,最后将摄像数据通过通讯模块传送至终端。
还包括与中央处理器连接并用于控制摄像装置开关的摄像触摸按钮。
摄像装置能够在进行录音的同时一并启动进行录像或拍照,从而使得监控者能够更加确切的掌握穿戴者即时所面临的突发状况,诸如穿戴者与他人发生口角、周围发生爆炸或突然地震等等一些特殊的情况。
这里,行为监控系统的作用是让监测者能够及时的掌握穿戴者的行为状况信息,以达到更好的监护穿戴者的目的,监测装置是这样工作的:
行为监控系统通过实时监控人体姿态数据的变化可自动判断出穿戴者的姿态是否正常,通过实时监控人体脑电波数据的变化情况可自动判断出穿戴者实时的精神状态是否发生异常,若监测到异常状况发生时(例如突然跌倒、或与人发生口角、或情绪异常等状况时) ,则立即发出报警信号同时将报警信息通过通讯模块发送给终端以让监控者及时获知穿戴者的行为出现异常的情况,若环境的噪声大于设定值时则监测装置被启动进行录音、录像或拍照并实时传输给终端。
进二步的,所述通讯模块为蓝牙模块、GSM模块、WIFI 模块、无线电收发模块、zigbee模块中的二种或任意组合:
所述蓝牙模块用于与带有蓝牙模块的终端之间建立通讯连接:
所述GSM模块用于与带有GSM模块的终端之间建立通讯连接, GSM模块上设有SIM卡座、GPRS模块以及GPS定位模块:
所述WIFI模块用于与带有WIFI 模块的终端之间建立通讯连接:
所述无线电收发模块用于与带有无线电收发模块的终端之间建立通讯连接:
所述zigbee模块用于与带有zigbee模块的终端之间建立通讯连接。
进二步的,还包括由多个放置在人体周身的加热装置组成的加热系统,所述加热装置与主板电连接:
当中央处理器通过温湿度传感器感应到人体的温度低于设定值时则控制加热装置开始加热:
当中央处理器通过温湿度传感器感应到人体的温度高于设定值时则控制加热装置停止加热。
加热系统的目的是为了在外界环境温度过低时给人体提供一定的热源。
优边的,所述主板上还设有收音机模块。
优边的,所述显示器上设有触摸屏。
优边的,所述的供电模块为太阳能电池。
优边的,所述感应系统还包括血压传感器以及硫化氢传感器,
所述血压传感器,与主板电连接,用于实时感应并收集人体血压数据并将所收集到的数据传送给主板:
所述硫化氢传感器,与主板电连接,用于实时感应并收集人体所排放的硫化氢浓
度数据并将所收集到的数据传送给主板。
有益效果
较之前技术而言,本发明的有益效果为:
1. 本发明通过监控系统能够对穿戴者进行有效的监控,当穿戴者的身体出现有可能疾病的异常状况并能够及时地发出报警信息并通过通讯模块传输给终端,从而让监控人及时获知该信息后能够及时处理以达到有效预防穿戴者生病:
2. 本发明的行为监控系统通过录音、录像、拍照、姿态检测等手段对穿戴者的行为进行实时有效的监控使得当出现异常行为的时候能够及时进行干预:
3. 本发明穿戴方便且功能丰富,尤其适合没有或丧失自主行为能力的儿童或老人使用。
附图说明
图1 为本发明模块框图。
本发明的实施方式
下面结合附图说明对本发明做详细说明:
本发明二种有线人体状况及行为监控报警系统,其特征在于:包括主板、感应系统以及交互系统:
所述主板上设有用于收发处理信息和发送报警指令的中央处理器、用于显示信息数据的显示器、用于向外界的终端发送报警信息及进行通讯的通讯模块、用于发出报警信号的报警模块以及用于为主板提供电源的供电模块:
所述感应系统包括心率传感器以及至少两个温湿度传感器:
所述心率传感器,与主板电连接,用于实时感应并收集人体心率数据并将所收集到的数据传送给主板:
所述温湿度传感器,与主板电连接,用于实时感应并收集所布设位置附近的人体温湿度数据并将所收集到的数据传送给主板:
当中央处理器实时接收人体血压数据、人体心率数据、硫化氢浓度数据、人体温湿度数据超出设定值时立刻向报警模块发出报警指令从而使报警模块发出报警信号并通过通讯模块向终端发送报警信息:
所述交互系统包括输入装置:
所述输入装置,与主板电连接,用于识别用户身份以及控制通讯模块与外界的终端建立通讯连接,输入装置包括指纹识别模块、指纹存储模块以及指纹处理模块:
所述指纹识别模块,与指纹处理模块连接,用于采集指纹信息数据并将数据传递给指纹处理模块:
所述指纹存储模块,与指纹处理模块连接,用于存储映射表,所述映射表存储有用户指纹信息及其与各终端身份信息一二对应关系信息:
所述指纹处理器,用于读取指纹识别模块所采集的指纹信息并将其与指纹存储模块映射表内的用户指纹信息逐个进行比对:
若指纹识别模块所采集的指纹信息与指纹存储模块中存储的用户指纹信息匹配成功,则读取与该用户指纹信息对应的终端身份信息并通过通讯模块向该终端发起通讯请
求:
若指纹识别模块所采集的指纹信息与指纹存储模块中存储的用户指纹信息匹配不成功,则删除该指纹信息。
进一步的,本发明还包括行为监控系统:
所述行为监控系统包括脑电波传感器、电子陀螺仪以及监测装置:
所述脑电波传感器,与主板电连接,用于实时感应并收集人体脑电波数据并将所
收集到的数据传送给主板:
所述电子陀螺仪,与主板电连接,用于实时感应并收集人体姿态数据并将所收集到的数据传送给主板:
所述监测装置,与主板电连接,用于实时监测和记录人体及周围环境所发生的情况,监测装置包括噪声监测模块、监测存储模块以及监测处理模块:
所述噪声监测模块,与噪声处理模块连接,用于实时监测周围环境的噪音大小:
所述监测存储模块,与监测处理模块连接,用于存储数据:
所述当监测处理模块通过噪声监测模块侦测到周围环境的噪音响度大于设定值时,则将录音数据保存至监测存储模块中,最后将录音数据通过通讯模块传送至终端。
优边的,所述监测装置还包括用于获取人体声音数据的电子昕诊器:
所述监测处理模块将电子昕诊器将获得的人体声音数据传送至监测存储模块保存,最后将人体声音数据通过通讯模块传送至终端。
优边的,所述监测装置还包括用于记录周围环境影像的摄像装置:
所述当监测处理模块通过噪声监测模块侦测到周围环境的噪音响度大于设定值时,则启动摄像装置开始摄像并将摄像数据保存至监测存储模块中,最后将摄像数据通过通讯模块传送至终端。
进二步的,所述通讯模块为蓝牙模块、GSM模块、WIFI 模块、无线电收发模块、zigbee模块中的二种或任意组合:
所述蓝牙模块用于与带有蓝牙模块的终端之间建立通讯连接:
所述GSM模块用于与带有GSM模块的终端之间建立通讯连接, GSM模块上设有SIM卡座、GPRS模块以及GPS定位模块:
所述WIFI模块用于与带有WIFI 模块的终端之间建立通讯连接:
所述无线电收发模块用于与带有无线电收发模块的终端之间建立通讯连接:
所述zigbee模块用于与带有zigbee模块的终端之间建立通讯连接。
进二步的,还包括由多个放置在人体周身的加热装置组成的加热系统,所述加热装置与主板电连接:
当中央处理器通过温湿度传感器感应到人体的温度低于设定值时则控制加热装置开始加热:
当中央处理器通过温湿度传感器感应到人体的温度高于设定值时则控制加热装置停止加热。
优边的,所述主板上还设有收音机模块。
优边的,所述显示器上设有触摸屏。
优边的,所述的显示器为OLED显示屏。
优边的,所述的供电模块为太阳能电池。
优边的,所述感应系统还包括血压传感器以及硫化氢传感器,
所述血压传感器,与主板电连接,用于实时感应并收集人体血压数据并将所收集到的数据传送给主板:
所述硫化氢传感器,与主板电连接,用于实时感应并收集人体所排放的硫化氢浓度数据并将所收集到的数据传送给主板。
尽管本发明采用具体实施例及其替代方式对本发明进行示意和说明,但应当理解,只要不背离本发明的精神范围内的各种变化和修改均可实施。因此,应当理解除了受随附的权利要求及其等同条件的限制外,本发明不受任何意义上的限制。

Claims (10)

  1. 一种有线人体状况及行为监控报警系统,其特征在于:包括主板、感应系统以及交互系统:
    所述主板上设有用于收发处理信息和发送报警指令的中央处理器、用于显示信息数据的显示器、用于向外界的终端发送报警信息及进行通讯的通讯模块、用于发出报警信号的报警模块以及用于为主板提供电源的供电模块:
    所述感应系统包括心率传感器以及至少两个温湿度传感器:
    所述心率传感器,与主板电连接,用于实时感应并收集人体心率数据并将所收集到的数据传送给主板:所述温湿度传感器,与主板电连接,用于实时感应并收集所布设位置附近的人体温湿度数据并将所收集到的数据传送给主板:当中央处理器实时接收人体血压数据、人体心率数据、硫化氢浓度数据、人体温湿度数据超出设定值时立刻向报警模块发出报警指令从而使报警模块发出报警信号并通过通讯模块向终端发送报警信息:
    所述交互系统包括输入装置:
    所述输入装置,与主板电连接,用于识别用户身份以及控制通讯模块与外界的终端建立通讯连接,输入装置包括指纹识别模块、指纹存储模块以及指纹处理模块:
    所述指纹识别模块,与指纹处理模块连接,用于采集指纹信息数据并将数据传递给指纹处理模块:
    所述指纹存储模块,与指纹处理模块连接,用于存储映射表,所述映射表存储有用户指纹信息及其与各终端身份信息一二对应关系信息:
    所述指纹处理器,用于读取指纹识别模块所采集的指纹信息并将其与指纹存储模块映射表内的用户指纹信息逐个进行比对:若指纹识别模块所采集的指纹信息与指纹存储模块中存储的用户指纹信息匹配成功,则读取与该用户指纹信息对应的终端身份信息并通过通讯模块向该终端发起通讯请求:若指纹识别模块所采集的指纹信息与指纹存储模块中存储的用户指纹信息匹配不成功,则删除该指纹信息。
  2. 根据权利要求1 所述的有线人体状况及行为监控报警系统,其特征在于:还包括行为监控系统:
    所述行为监控系统包括脑电波传感器、电子陀螺仪以及监测装置:
    所述脑电波传感器,与主板电连接,用于实时感应并收集人体脑电波数据并将所收集到的数据传送给主板:
    所述电子陀螺仪,与主板电连接,用于实时感应并收集人体姿态数据并将所收集到的数据传送给主板:
    所述监测装置,与主板电连接,用于实时监测和记录人体及周围环境所发生的情况,监测装置包括噪声监测模块、监测存储模块以及监测处理模块:
    所述噪声监测模块,与噪声处理模块连接,用于实时监测周围环境的噪音大小:
    所述监测存储模块,与监测处理模块连接,用于存储数据:
    所述当监测处理模块通过噪声监测模块侦测到周围环境的噪音响度大于设定值时,则将录音数据保存至监测存储模块中,最后将录音数据通过通讯模块传送至终端。
  3. 根据权利要求2所述的有线人体状况及行为监控报警系统,其特征在于:所述监测装置还包括用于获取人体声音数据的电子昕诊器:
    所述监测处理模块将电子昕诊器将获得的人体声音数据传送至监测存储模块保存,最后将人体声音数据通过通讯模块传送至终端。
  4. 根据权利要求2所述的有线人体状况及行为监控报警系统,其特征在于:所述监测装置还包括用于记录周围环境影像的摄像装置:
    所述当监测处理模块通过噪声监测模块侦测到周围环境的噪音响度大于设定值时,则启动摄像装置开始摄像并将摄像数据保存至监测存储模块中,最后将摄像数据通过通讯模块传送至终端。
  5. 根据权利要求1 所述的有线人体状况及行为监控报警系统,其特征在于:所述通讯模块为蓝牙模块、GSM模块、WIFI 模块、无线电收发模块、zigbee模块中的一种或任意组合:
    所述蓝牙模块用于与带有蓝牙模块的终端之间建立通讯连接:
    所述GSM模块用于与带有GSM模块的终端之间建立通讯连接, GSM模块上设有SIM卡座、GPRS模块以及GPS定位棋块:
    所述WIFI模块用于与带有WIFI 模块的终端之间建立通讯连接:
    所述无线电收发模块用于与带有无线电收发模块的终端之间建立通讯连接:
    所述zigbee模块用于与带有zigbee模块的终端之间建立通讯连接。
  6. 根据权利要求1 所述的有线人体状况及行为监控报警系统,其特征在于:还包括由多个放置在人体周身的加热装置组成的加热系统,所述加热装置与主板电连接:当中央处理器通过温湿度传感器感应到人体的温度低于设定值时则控制加热装置开始加热:当中央处理器通过温湿度传感器感应到人体的温度高于设定值时则控制加热装置停
    止加热。
  7. 根据权利要求1-6任意一项所述的有线人体状况及行为监控报警系统,其特征在于:所述主板上还设有收音机模块。
  8. 根据权利要求1-6任意一项所述的有线人体状况及行为监控报警系统,其特征在于:所述显示器上设有触摸屏,所述的显示器为OLED显示屏。
  9. 根据权利要求1-6任意一项所述的有线人体状况及行为监控报警系统,其特征在于:所述感应系统还包括血压传感器以及硫化氢传感器,所述血压传感器,与主板电连接,用于实时感应并收集人体血压数据并将所收集到的数据传送给主板:
    所述硫化氢传感器,与主板电连接,用于实时感应并收集人体所排放的硫化氢浓度数据并将所收集到的数据传送给主板。
  10. 根据权利要求1-6 任意一项所述的有线人体状况及行为监控报警系统,其特征在于:所述的供电模块为太阳能电池。
PCT/CN2017/115632 2016-12-30 2017-12-12 有线人体状况及行为监控报警系统 WO2018121244A1 (zh)

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