WO2020051787A1 - 一种马桶及检测系统 - Google Patents

一种马桶及检测系统 Download PDF

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Publication number
WO2020051787A1
WO2020051787A1 PCT/CN2018/105164 CN2018105164W WO2020051787A1 WO 2020051787 A1 WO2020051787 A1 WO 2020051787A1 CN 2018105164 W CN2018105164 W CN 2018105164W WO 2020051787 A1 WO2020051787 A1 WO 2020051787A1
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WIPO (PCT)
Prior art keywords
user
toilet
terminal
module
cloud server
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PCT/CN2018/105164
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English (en)
French (fr)
Inventor
谢伟藩
黄建芳
高志材
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深圳市博电电子技术有限公司
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Priority to PCT/CN2018/105164 priority Critical patent/WO2020051787A1/zh
Publication of WO2020051787A1 publication Critical patent/WO2020051787A1/zh

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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D9/00Sanitary or other accessories for lavatories ; Devices for cleaning or disinfecting the toilet room or the toilet bowl; Devices for eliminating smells

Definitions

  • TECHNICAL FIELD This application relates to the field of intelligent detection, and in particular, to a toilet and a detection system.
  • the toilet With the improvement of living standards and people's attention to health, a large number of human health detection devices supporting the use of smart home systems have been developed, and the toilet is also used by people every day and has a certain amount of contact with the user's body skin , So the toilet with health detection function came into being. It can detect vital sign parameters such as heart rate and blood pressure when people go to the toilet. The data can be extracted through the server and stored and analyzed, which can provide early warning to the user's health and help to find diseases and seek in time. treatment.
  • the current toilet for health detection often only detects human parameters, such as weight and temperature, and transmits them to the target by wireless communication methods such as Wi-Fi, ZigBee, etc., which can meet short-distance transmission.
  • Wi-Fi Wireless Fidelity
  • ZigBee ZigBee
  • a toilet includes a physical sign detection module including a metal electrode, and the physical sign detection module injects a current into a human body through the metal electrode and receives a feedback signal corresponding to the current to detect a user's physical sign information; processing A module configured to obtain detected user physical information, determine a user physical parameter based on the user physical information, and send the user physical parameter to a low-power BLE Bluetooth module; the BLE Bluetooth module is configured to The user physical parameters sent by the processing module are sent to the target terminal in real time.
  • the toilet passes the user physical sign information detected by the physical sign detecting module to the processing module, and then uses the BLE Bluetooth module to send the user physical sign parameters transmitted by the processing module to the target terminal in real time.
  • the problem that the toilet in the prior art solution cannot transmit the detection result to the target end in real time under the condition of low power consumption is solved. Realize the toilet's low power consumption, real-time and efficient transmission of user physical signs detection results to the target.
  • the toilet detection system includes a terminal, a cloud server, and any one of the foregoing toilets.
  • the terminal is configured to receive user physical parameters sent by the toilet, and analyze the user physical parameters to obtain A preliminary inspection report, and uploading the preliminary inspection report to the cloud server;
  • the cloud server is configured to receive and analyze the preliminary inspection report uploaded by the terminal, and obtain a user's vital signs dynamic monitoring analysis report and health guidance And sending the physical sign dynamic monitoring analysis report and the health guidance to the terminal for the user to consult.
  • the toilet detection system transmits the user physical sign information detected by the physical sign detection module to the processing module, and then uses the BLE Bluetooth module to send the user physical sign parameters transmitted by the processing module to the terminal in real time. Then, the user's physical sign dynamic monitoring analysis report and health guidance are obtained through the cloud server's comprehensive analysis of the user's physical sign parameters for reference by the user.
  • the problem that the toilet in the prior art solution cannot transmit the detection result to the terminal in real time under the condition of low power consumption is solved. Realize the toilet's low power consumption, real-time and efficient transmission of user physical sign detection results to the terminal.
  • FIG. 1 is a schematic structural diagram of interaction between a toilet 100a and a terminal 200 according to an embodiment of the present application;
  • FIG. 2 is a schematic structural diagram of interaction between a toilet 100b with an identification function and a terminal 200 according to an embodiment of the present application;
  • FIG. 3 is a schematic structural diagram of a toilet 100c with a disinfection function according to an embodiment of the present application
  • FIG. 4 is a schematic structural diagram of a toilet 100d with a urine test and charging function according to an embodiment of the present application
  • FIG. 5 is a schematic structural diagram of a toilet detection system 10 according to an embodiment of the present application.
  • the toilet 100a may include a physical sign detection module 110, a processing module 120, and a Bluetooth Low Energy (BLE) 130 module.
  • the physical sign detection module 110 may include a metal electrode 111 (not shown in the figure).
  • the metal electrode 111 may be one or more.
  • the metal electrode 111 may be provided on a toilet seat.
  • the metal electrode 111 and The user's body is in direct contact, and the sign detection module 110 injects a weak constant AC current into the human body through the metal electrode 111, and receives a feedback signal corresponding to the current to measure the human body's total moisture, extracellular fluid, inner fluid, inorganic salts, proteins, Fat content, muscle mass, body fat percentage, bone mass, weight and other user's physical sign information, the processing module 120 is used to obtain the user's physical sign information detected by the physical sign detection module 110, and determine the user's physical sign parameters based on the user's physical sign information, and The user physical parameter is sent to the low-power BLE Bluetooth module 130; the BLE Bluetooth module 130 is configured to send the user physical parameter sent by the processing module 120 to the target terminal 200 in real time.
  • BLE Bluetooth technology is a short-range, low-cost, interoperable wireless technology.
  • the working mode of BLE technology is very suitable for transmitting data from other peripheral devices such as micro wireless sensors or remote controllers using full asynchronous communication.
  • BLE Bluetooth supports extremely small data packets (8 octets to 27 octets) transmitted at 1Mbps.
  • BLE Bluetooth connections use advanced low-power monitoring modes to achieve ultra-low duty cycles and minimize power consumption.
  • BLE Bluetooth uses the adaptive frequency hopping technology common to Bluetooth technology to minimize interference with other technologies in the 2.4 GHz Industrial Scientific and Medical (ISM) band. The advantages of efficient multipath increase link budget and effective operating range, while also optimizing power consumption.
  • ISM Industrial Scientific and Medical
  • BLE Bluetooth has a very intelligent control function, which enables the host to stay in sleep mode for a long time, and will only be woken up by the BLE Bluetooth controller when the host needs to execute. Because the power consumption of the host processor is generally higher than that of the BLE Bluetooth controller, the maximum energy saving is achieved.
  • the toilet 100 b may further include an identity recognition module 140.
  • the identity recognition module 140 includes a radio frequency identification RFID unit 141 (not shown in the figure), and the RFID unit 141 reads the information including the identity of the user.
  • the tag information is used to detect user identity information; the identity recognition module 140 obtains the user identity information and transmits the user identity information to the processing module 120; the processing module 120 receives the user identity information transmitted by the identity identification module 140, and the processing module 120 combines the user identity information with the
  • the user's physical sign information obtained from the physical sign detection module 110 is matched so that the processing module 120 sends the user's physical sign parameters that match the user's identity information to the BLE Bluetooth module 130, so the BLE Bluetooth module 130 sends the user's physical sign parameters that match the user's identity information Go to the target terminal 200.
  • the toilet 100c may further include a disinfection and cleaning module 150.
  • the disinfection and cleaning module 150 is configured to automatically disinfect and clean the urinal when the toilet is finished.
  • the disinfection and cleaning module 150 may include: a temperature detection unit 151, a flushing pipe 152, and a disinfection unit 153.
  • the temperature detection unit 151 detects the temperature of the current contact object in real time with a preset frequency; the preset frequency may be 1s / times-1min / times, Among them, it can be 3s / times, 5s / times, 10s / times, 15s / times, 20s / times, 30s / times, 40s / times, or 50s / times, that is, the temperature detection unit 151 performs temperature on the contacted object at a preset frequency. Test and record the test results.
  • the flushing pipe 152 is triggered to start flushing to clean the toilet bowl of the toilet 100a; the disinfection unit 153 may perform the flushing when the flushing pipe 152 starts flushing.
  • the urinal is disinfected.
  • the toilet 100c may further include a disinfection and cleaning module 150.
  • the disinfection and cleaning module 150 is configured to automatically disinfect and clean the toilet when the toilet is finished.
  • the temperature result detected by the temperature detection unit 151 is outside the preset temperature range, that is, when the temperature result detected by the temperature detection unit 151 is any temperature in the range of 34-40 degrees Celsius, it indicates that the user is using the toilet 100c, and the flushing pipe 152 has no action; when the temperature detected by the temperature detection unit 151 is any temperature outside the range of 34-40 degrees Celsius, it indicates that the state is that the user has finished using and left the toilet 100c.
  • the flushing pipe 152 is triggered to start flushing to the toilet. clean.
  • the toilet 100c may further include a disinfection and cleaning module 150.
  • the disinfection and cleaning module 150 is configured to automatically disinfect and clean the toilet when the toilet is finished.
  • the water pipe 152 has no action; when the temperature difference detected by the temperature detection unit 151 multiple times is any temperature other than 0-5 degrees Celsius, it indicates that the user is finished and left the toilet 100c.
  • the flushing pipe 152 is triggered to start flushing.
  • the pool is cleaned.
  • the flushing pipe 152 is used to trigger the flushing pipe 152 to start flushing to clean the toilet when the temperature difference detected by the temperature detecting unit 151 for multiple times is outside the preset temperature difference range.
  • the disinfection unit 153 is a disinfection solution disinfection unit 153, and the disinfection unit 153 may be provided as a disinfection solution box 154 (not shown in the figure) and a pressing assembly 155 (not shown in the figure), in which the disinfection is performed.
  • the liquid cartridge body 154 is provided with a liquid inlet 156 (not shown in the figure) and a liquid outlet 157 (not shown in the figure). The user can inject the disinfectant solution into the disinfectant solution box body 154 through the liquid inlet 156.
  • the disinfectant solution box body 154 can be used to contain a certain amount of disinfectant solution, and the contained capacity is smaller than the volume of the disinfectant solution box body 154.
  • the squeezing assembly 155 is connected to the flushing pipe 152. If the disinfecting solution box 154 is squeezed by the squeezing assembly 155, the disinfecting solution will flow out from the liquid outlet 157 and be injected into the flushing pipe 152. For example, if the flushing pipe 152 starts flushing, since the squeezing assembly 155 of the disinfection solution box 154 is connected to the flushing pipe 152, the squeezing assembly 155 of the disinfecting unit 153 is triggered to squeeze the disinfecting solution box 154. Then, the disinfection solution in the disinfection solution box 154 flows out from the liquid outlet 157, and the disinfection solution is injected into the flushing pipe 152 to disinfect and clean the urinal.
  • the disinfection unit 153 is an ultraviolet disinfection unit, and the disinfection unit 153 is an ultraviolet radiation provided on a toilet lid or a toilet body, and can irradiate ultraviolet rays to disinfect the toilet.
  • the ultraviolet disinfection unit 153 and the flushing pipe 152 are connected through a linkage. If the flushing pipe 152 starts flushing, the disinfecting unit 153 is triggered to perform ultraviolet scanning and irradiation on the toilet to disinfect the toilet.
  • the toilet 100d further includes a urine test module 160.
  • the urine test module 160 includes a urine collection container 161 and a urine tester 162.
  • the urine collection container 161 is used to collect a user's urine sample and inject the user's urine sample into the urine tester 162.
  • the processing module 120 receives the urine test result transmitted by the urine test module 160
  • the processing module 120 send the urine test result to the BLE Bluetooth module 130 to the target terminal 200.
  • the target terminal 200 obtains the physical health condition of the user, feeds back the user's health condition to the user, and provides health care and treatment suggestions in real time to remind the user to care about his health.
  • the toilet 100d includes a charging module 170, which is used to convert household AC power to DC power and provide power to the target terminal 200.
  • the charging module 170 includes a charging interface 171, a power supply unit 172 connected to the charging interface 171, and a power storage unit 173.
  • the power storage unit 173 connected to the power supply unit 172, and the power supply unit 172 is connected to a household power source.
  • the power supply unit 172 converts household electricity into DC power and provides it to the charging interface 171 and the power storage unit 173.
  • the charging interface 171 can supply power to the terminal 200, and the power storage unit 173 stores power.
  • the power supply unit 172 cannot supply power, such as a power outage in daily life
  • power can be supplied to the charging interface 171 and then to the terminal 200.
  • the toilet passes the user physical sign information detected by the physical sign detecting module to the processing module, and then uses the BLE Bluetooth module to send the user physical sign parameters transmitted by the processing module to the target terminal in real time.
  • the problem that the toilet in the prior art solution cannot transmit the detection result to the target end in real time under the condition of low power consumption is solved. Realize the toilet's low power consumption, real-time and efficient transmission of user physical signs detection results to the target.
  • An embodiment of the present application further provides a toilet detection system 10.
  • the toilet detection system 10 includes a terminal 200, a cloud server 300, and any one of the toilets 100 described above.
  • the toilet 100 may include a physical sign detection module 110 and a processing unit.
  • the terminal 200 may be a mobile communication device, such as a mobile phone, a tablet, and the like.
  • the terminal 200 receives the user physical sign parameters sent by the toilet 100, analyzes the user physical sign parameters to obtain a preliminary inspection report, and uploads the preliminary inspection report to the cloud server 300; the cloud server 300 is used to receive and analyze the preliminary inspection uploaded by the terminal 200 terminal Report, and send the user's vital signs dynamic monitoring analysis report and health guidance to the terminal 200 for user's reference.
  • the above toilet 100 may include: a physical sign detection module 110, a processing module 120, and a Bluetooth Low Energy (BLE) Bluetooth module 130.
  • the physical sign detection module 110 may include a metal electrode 111, and the metal electrode 111 may be one or more.
  • the metal electrode 111 may be disposed on the toilet 100 seat. When the user uses the toilet, the metal electrode 111 is in direct contact with the user ’s body.
  • the detection module 110 injects a weak constant AC current into the human body through the metal electrode 111, and receives a feedback signal corresponding to the current to measure the total moisture, extracellular fluid, internal fluid, inorganic salt, protein, fat content, muscle mass, Body fat rate, bone mass, weight and other user's physical sign information, the processing module 120 is used to obtain the user's physical sign information detected by the physical sign detection module 110, determine the user's physical sign parameters based on the user's physical sign information, and send the user's physical sign parameters to low
  • the BLE Bluetooth module 130 consumes power; the BLE Bluetooth module 130 is configured to send the user physical parameters sent by the processing module 120 to the target terminal 200 in real time.
  • BLE Bluetooth technology is a short-range, low-cost, interoperable wireless technology.
  • the working mode of BLE technology is very suitable for transmitting data from other peripheral devices such as micro wireless sensors or remote controllers using full asynchronous communication.
  • BLE Bluetooth supports extremely small data packets (8 octets to 27 octets) transmitted at 1Mbps.
  • BLE Bluetooth connections use advanced low-power monitoring modes to achieve ultra-low duty cycles and minimize power consumption.
  • BLE Bluetooth uses the adaptive frequency hopping technology common to Bluetooth technology to minimize interference with other technologies in the 2.4 GHz Industrial Scientific and Medical (ISM) band. The advantages of efficient multipath increase link budget and effective operating range, while also optimizing power consumption.
  • ISM Industrial Scientific and Medical
  • BLE Bluetooth has a very intelligent control function, which enables the host to stay in sleep mode for a long time, and will only be woken up by the BLE Bluetooth controller when the host needs to execute. Because the power consumption of the host processor is generally higher than that of the BLE Bluetooth controller, the maximum energy saving is achieved.
  • the toilet 100 may further include an identity recognition module 140.
  • the identity recognition module 140 includes a radio frequency identification RFID unit 141 (not shown in the figure).
  • the RFID unit 141 reads tag information including the identity of the user to detect the user. Identity information; the identity identification module 140 obtains the user identity information and transmits the user identity information to the processing module 120; the processing module 120 receives the user identity information transmitted by the identity identification module 140, and the processing module 120 combines the user identity information with the secondary sign detection module 110
  • the acquired user physical information is matched so that the processing module 120 sends the user physical parameter that matches the user identity information to the BLE Bluetooth module 130, so the BLE Bluetooth module 130 sends the user physical parameter that matches the user identity information to the target terminal 200.
  • the toilet 100 may further include a disinfection and cleaning module 150.
  • the disinfection and cleaning module 150 is configured to automatically disinfect and clean the toilet when the toilet is finished.
  • the disinfection and cleaning module 150 may include: a temperature detection unit 151, a flushing pipe 152, and a disinfection unit 153.
  • the temperature detection unit 151 detects the temperature of the current contact object in real time with a preset frequency; the preset frequency may be 1s / times-1min / times, Among them, it can be 3s / times, 5s / times, 10s / times, 15s / times, 20s / times, 30s / times, 40s / times, or 50s / times, that is, the temperature detection unit 151 performs temperature on the contacted object at a preset frequency. Test and record the test results.
  • the flushing pipe 152 is triggered to start flushing to clean the toilet bowl of the toilet 100; the disinfection unit 153 may perform the flushing when the flushing pipe 152 starts flushing The urinal is disinfected.
  • the toilet 100 may further include a disinfection and cleaning module 150.
  • the disinfection and cleaning module 150 is configured to automatically disinfect and clean the toilet when the toilet is finished.
  • the temperature result detected by the temperature detection unit 151 is outside the preset temperature range, that is, when the temperature result detected by the temperature detection unit 151 is any temperature within the range of 34-40 degrees Celsius, it indicates that the user is using the toilet 100, and the flushing pipe 152 No action; when the temperature detected by the temperature detection unit 151 is any temperature outside the range of 34-40 degrees Celsius, it means that the state is that the user is finished and left the toilet 100.
  • the flushing pipe 152 is triggered to start flushing to the toilet clean.
  • the toilet 100 may further include a disinfection and cleaning module 150.
  • the disinfection and cleaning module 150 is configured to automatically disinfect and clean the toilet when the toilet is finished.
  • the temperature difference detected by the temperature detection unit 151 multiple times is outside the preset temperature difference range, that is, the temperature difference detected by the temperature detection unit 151 multiple times is an arbitrary temperature within 0-5 degrees Celsius, it indicates that the user is using the toilet 100, flushing
  • the water pipe 152 has no action; when the temperature difference detected by the temperature detection unit 151 multiple times is any temperature other than 0-5 degrees Celsius, it indicates that the user is finished and left the toilet 100.
  • the flushing pipe 152 is triggered to start flushing.
  • the pool is cleaned.
  • the flushing pipe 152 is used to trigger the flushing pipe 152 to start flushing to clean the toilet when the temperature difference detected by the temperature detecting unit 151 for multiple times is outside the preset temperature difference range.
  • the disinfection unit 153 is a disinfection solution disinfection unit 153, and the disinfection unit 153 may be provided as a disinfection solution box 154 (not shown in the figure) and a pressing assembly 155 (not shown in the figure), in which the disinfection is performed.
  • the liquid cartridge body 154 is provided with a liquid inlet 156 (not shown in the figure) and a liquid outlet 157 (not shown in the figure). The user can inject the disinfectant solution into the disinfectant solution box body 154 through the liquid inlet 156.
  • the disinfectant solution box body 154 can be used to contain a certain amount of disinfectant solution, and the contained capacity is smaller than the volume of the disinfectant solution box body 154.
  • the squeezing assembly 155 is connected to the flushing pipe 152. If the disinfecting solution box 154 is squeezed by the squeezing assembly 155, the disinfecting solution will flow out from the liquid outlet 157 and be injected into the flushing pipe 152. For example, if the flushing pipe 152 starts flushing, since the squeezing assembly 155 of the disinfection solution box 154 is connected to the flushing pipe 152, the squeezing assembly 155 of the disinfecting unit 153 is triggered to squeeze the disinfecting solution box 154. Then, the disinfection solution in the disinfection solution box 154 flows out from the liquid outlet 157, and the disinfection solution is injected into the flushing pipe 152 to disinfect and clean the urinal.
  • the disinfection unit 153 is an ultraviolet disinfection unit, and the disinfection unit 153 is an ultraviolet irradiation provided on the lid of the toilet 100 or the toilet body of the toilet 100, and can irradiate ultraviolet rays to disinfect the toilet 100.
  • the ultraviolet disinfection unit 153 and the flushing pipe 152 are connected through a linkage. If the flushing pipe 152 starts flushing, the disinfecting unit 153 is triggered to perform ultraviolet scanning and irradiation on the toilet to disinfect the toilet.
  • the toilet 100 further includes a urine test module 160.
  • the urine test module 160 includes a urine collection container 161 and a urine tester 162.
  • the urine collection container 161 is used to collect a user's urine sample and inject the user's urine sample into the urine tester 162.
  • the processing module 120 receives the urine test result transmitted by the urine test module 160
  • the processing module 120 send the urine test result to the BLE Bluetooth module 130 to the target terminal 200.
  • the target terminal 200 obtains the physical health condition of the user, feeds back the user's health condition to the user, and provides health care and treatment suggestions in real time to remind the user to care about his health.
  • the toilet 100 includes a charging module 170 for converting household AC power to DC power and supplying power to the target terminal 200.
  • the charging module 170 includes a charging interface 171, a power supply unit 172 connected to the charging interface 171, and a power storage unit 173.
  • the power storage unit 173 connected to the power supply unit 172, and the power supply unit 172 is connected to a household power source.
  • the power supply unit 172 converts household electricity into DC power and supplies it to the charging interface 171 and the power storage unit 173.
  • the charging interface 171 can supply power to the terminal 200, and the power storage unit 173 stores power.
  • the power supply unit 172 cannot supply power, such as power outages in daily life
  • power can be supplied to the charging interface 171 and then to the terminal 200.
  • the toilet detection system transmits the user physical sign information detected by the physical sign detection module to the processing module, and then uses the BLE Bluetooth module to send the user physical sign parameters transmitted by the processing module to the terminal in real time. Then, the user's vital signs dynamic monitoring analysis report and health guidance opinions are obtained through cloud server analysis.
  • the problem that the toilet in the prior art solution cannot transmit the detection result to the terminal in real time under the condition of low power consumption is solved. Realize the toilet's low power consumption, real-time and efficient transmission of user physical sign detection results to the terminal.

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  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Epidemiology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Hydrology & Water Resources (AREA)
  • Water Supply & Treatment (AREA)
  • Bidet-Like Cleaning Device And Other Flush Toilet Accessories (AREA)

Abstract

一种马桶(100)及检测系统(10),马桶(100)包括:体征检测模块(110)、处理模块(120)和低功耗BLE蓝牙模块(130),体征检测模块(110)通过金属电极(111)向人体注入电流并接收与电流对应的反馈信号,以检测用户的体征信息;处理模块(120)获取检测到的用户体征信息,并根据用户体征信息确定出用户体征参数,且将用户体征参数发送至BLE蓝牙模块(130);BLE蓝牙模块(130)将处理模块(110)发送的用户体征参数实时发送至目标终端。马桶检测系统(10)包括终端(200)、云服务器(300)和上述马桶(100),终端200接收用户体征参数,分析得出初步检查报告,并上传初步检查报告至云服务器(300);云服务器(300)接收及分析初步检查报告,并向终端(200)下发检查结果,以供用户查阅。

Description

一种马桶及检测系统
技术领域:本申请涉及智能检测领域,尤其是涉及一种马桶及检测系统。
背景技术
随着生活水平的提高,人们对健康的关注,开发出了大量与智能家居系统配套使用的人体健康检测设备,而马桶也是人们每天都使用到的,并且与使用者的身体皮肤有一定时间接触,因而具备健康检测功能的马桶便应运而生。可以在人们如厕的时候对生命体征参数进行检测,如:心律、血压等,通过服务器提取这些数据并进行存储和分析,能对使用者健康状况进行预警,有助于及时发现疾病和及时寻求治疗。
在使用中发现,当前的用于健康检测的马桶往往仅将人体参数检测,比如体重、体温等参数检测,以无线通讯方式如Wi-Fi、ZigBee等方式传输至目标端,能够满足近距离传输通信,但此类通信方式功耗较高,存在网络延时,用户体验性不好。
申请内容
基于此,有必要提供一种能够在低功耗的情况下将检测结果实时地传输至目标端的马桶及检测系统。
一种马桶,所述马桶包括:体征检测模块,包括金属电极,所述体征检测模块通过所述金属电极向人体注入电流并接收与所述电流对应的反馈信号,以检测用户的体征信息;处理模块,用于获取检测到的用户体征信息,并根据所述用户体征信息确定出用户体征参数,且将所述用户体征参数发送至低功耗BLE蓝牙模块;所述BLE蓝牙模块,用于将处理模块发送的所述用户体征参数实时发送至目标终端。
上述马桶通过将所述体征检测模块检测的所述用户体征信息传送至所述处理模块,再利用所述BLE蓝牙模块将所述处理模块传送的所述用户体征参数实时发送至目标终端。解决了现有技术方案中马桶不能在低功耗的情况下将检测结果实时地传输至目标端问题。实现马桶低功耗、实时且高效的将用户体征检测结果传输至目标端。
一种马桶检测系统,所述马桶检测系统包括终端、云服务器和上述的任意一种马桶,所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
上述马桶检测系统通过将所述体征检测模块检测的所述用户体征信息传送至所述处理模块,再利用所述BLE蓝牙模块将所述处理模块传送的所述用户体征参数实时发送至所述终端,再经由云服务器对所述用户体征参数综合分析得到用户的体征动态监测分析报告和健康指导意见,以供所述用户查阅。解决了现有技术方案中马桶不能在低功耗的情况下将检测结果实时地传输至终端问题。实现马桶低功耗、实时且高效的将用户体征检测结果传输至终端。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他实施例的附图。
图1为本申请一实施例的马桶100a与终端200交互的结构示意图;
图2为本申请一实施例的具备身份识别功能的马桶100b与终端200交互的结构示意图;
图3为本申请一实施例的具备消毒功能的马桶100c的结构示意图;
图4为本申请一实施例的具备尿检、充电功能的马桶100d的结构示意图;
图5为本申请一实施例的马桶检测系统10的结构示意图。
具体实施方式
为了便于理解本申请,下面将参照相关附图对本申请进行更全面的描述。附图中给出了本申请的较佳实施例。但是,本申请可以以许多不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本申请的公开内容的理解更加透彻全面。
本申请实施例提供一种马桶100,如图1所示,马桶100a可以包括:体征检测模块110、处理模块120和低功耗(Bluetooth Low Energy,BLE)蓝牙模块130。其中,体征检测模块110可以包括金属电极111(图中未示出),金属电极111可以是一个或者多个,金属电极111可以设置在马桶座圈上,当用户如厕时,金属电极111与用户身体直接接触,体征检测模块110通过金属电极111向人体注入微弱的恒定交流电流,并接收与电流对应的反馈信号,以测量人体的总水分、细胞外液、内液、无机盐、蛋白质、脂肪含量、肌肉量、体脂率、骨量、体重等用户的体征信息,处理模块120用于获取体征检测模块110检测到的用户体征信息,并根据用户体征信息确定出用户体征参数,且将用户体征参数发送至低功耗BLE蓝牙模块130;BLE蓝牙模块130,用于将处理模块120发送的用户体征参数实时发送至目标终端200。BLE蓝牙技术是短距离、低成本、可互操作性的无线技术。BLE技术的工作模式非常适合用于从微型无线传感器或使用完全异步通信的遥控器等其它外设传送数据。BLE蓝牙支持以1Mbps速度传输的极小数据包(8个八位字节到27个八位字节)。BLE蓝牙的连接均使用高级低耗电监听模式,从而实现超低工作周期,将功耗降至最低。BLE蓝牙使用蓝牙技术通用的自适应跳频 技术将2.4千兆赫工业科学及医疗(Industrial Scientific Medical,ISM)频带内的其他技术干扰减至最小。高效的多路径优势增加了链路预算和有效的运行范围,同时也优化了功耗。BLE蓝牙具有极具智能化的控制功能,能够使主机长时间处于睡眠模式,并且只在主机需要执行时才会被BLE蓝牙控制器唤醒。由于主机处理器的功耗一般高于BLE蓝牙控制器,因而实现了最大程度的节能。
在其中一个实施例中,如图2所示,马桶100b还可以包括身份识别模块140,身份识别模块140包括射频识别RFID单元141(图中未示出),RFID单元141读取包含用户身份的标签信息以检测用户身份信息;身份识别模块140获取用户身份信息,并将用户身份信息传送至处理模块120;处理模块120接收身份识别模块140传送的用户身份信息,处理模块120将用户身份信息与从体征检测模块110获取的用户体征信息进行匹配,以使处理模块120向BLE蓝牙模块130发送与用户身份信息匹配的用户体征参数,因而BLE蓝牙模块130将与用户身份信息匹配的用户体征参数发送至目标终端200。在其中一个实施例中,如图3所示,马桶100c还可以包括消毒清洁模块150,消毒清洁模块150用于当如厕完毕,马桶100c自动对便池进行消毒清洁。消毒清洁模块150可以包括:温度检测单元151、冲水管道152和消毒单元153,温度检测单元151以预设频率实时检测当前接触物体的温度;预设频率可以是1s/次-1min/次,其中可以为3s/次、5s/次、10s/次、15s/次、20s/次、30s/次、40s/次或者50s/次,即温度检测单元151以预设频率对接触的物体进行温度检测,并记录检测的结果。若温度检测单元151检测的结果与预期检测结果不符,则触发冲水管道152启动冲水,以对马桶100a的便池进行清洁;消毒单元153可以在冲水管道152启动冲水的情况下对便池进行消毒。
在其中一个实施例中,马桶100c还可以包括消毒清洁模块150,消毒清洁模块150用于当如厕完毕,马桶100c自动对便池进行消毒清洁。当温度检测单元151检测的温度结果在预设温度范围外,即当温度检测单元151检测的温度结果为34-40摄氏度范围内的任意温度,则表示状态为用户正在使用马桶100c,冲水管道152无动作;当温度检测单元151检测的温度结果为34-40摄氏度范围外的任意温度,则表示状态为用户使用完毕并离开马桶100c,此时触发冲水管道152启动冲水对便池进行清洁。
在其中一个实施例中,马桶100c还可以包括消毒清洁模块150,消毒清洁模块150用于当如厕完毕,马桶100c自动对便池进行消毒清洁。当温度检测单元151多次检测的温度差在预设温度差范围外,即温度检测单元151多次检测的温度差为0-5摄氏度内任意温度,则表示状态为用户正在使用马桶100c,冲水管道152无动作;当温度检测单元151多次检测的温度差为0-5摄氏度外任意温度,则表示状态为用户使用完毕并离开马桶100c,此时触发冲水管道152启动冲水对便池进行清洁。冲水管道152用于当温度检测单元151多次检测的温度差在预设温度差范围外,则触发冲水管道152启动冲水对便池进行清洁。
在其中一个实施例中,消毒单元153为消毒液消毒单元153,消毒单元153可以设置为消毒液盒体154(图中未示出)和挤压组件155(图中未示出),其中消毒液盒体154设置有液体入口156(图中未示出)和液体出口157(图中未示出)。用户可以将消毒液通过液体入口156注入的消毒液盒体154内部,消毒液盒体154可用来盛装与一定容量的消毒液,且盛装的容量小于消毒液盒体154的体积。挤压组件155与冲水管道152连动连接,若消毒液盒体154受到挤压组件155的挤压,则会使得消毒液从液体出口157流出且注入冲水 管道152。举例来说,若冲水管道152启动冲水,由于消毒液盒体154的挤压组件155与冲水管道152连动连接,则触发消毒单元153的挤压组件155挤压消毒液盒体154,则消毒液盒体154内的消毒液从液体出口157流出,向冲水管道152注入消毒液,以使便池消毒清洁。
在其中一个实施例中,消毒单元153为紫外线消毒单元,消毒单元153为设置在马桶盖或者马桶桶体上的紫外线照射等,可以辐射紫外线对马桶进行消毒。其中,紫外线消毒单元153与冲水管道152通过连动连接,若冲水管道152启动冲水结束,则触发消毒单元153对便池进行紫外线扫描照射,以对便池进行消毒。
在其中一个实施例中,马桶100d还包括尿检模块160,尿检模块160包括采尿容器161和尿检器162,采尿容器161用于采集用户尿液样本并将用户尿液样本注入尿检器162,以使尿检器162对用户的尿常规、尿液中有形成分、蛋白成分定量和尿酶进行检测,并将尿检检测结果传送至处理模块120;处理模块120接收尿检模块160传送的尿检检测结果,以使处理模块120向BLE蓝牙模块130发送尿检检测结果至目标终端200。目标终端200获取出用户的身体健康情况,将用户健康情况反馈给用户,并实时提供健康护理和治疗建议,提醒用户关心自己的健康。
在其中一个实施例中,马桶100d包括充电模块170,充电模块170用于将家用交流电转为直流电并为目标终端200供电。充电模170块包括有充电接口171,与充电接口171连接的供电单元172和储电单元173,其中与供电单元172连接的储电单元173,供电单元172连接家用电源。供电单元172将家用电转化成直流电提供给充电接口171和储电单元173,充电接口171可以终端200供电,储电单元173存电能,在供电单元172无法供电的情况, 如生活用电停电情况下,可以为充电接口171供电,进而为终端200供电。上述马桶通过将所述体征检测模块检测的所述用户体征信息传送至所述处理模块,再利用所述BLE蓝牙模块将所述处理模块传送的所述用户体征参数实时发送至目标终端。解决了现有技术方案中马桶不能在低功耗的情况下将检测结果实时地传输至目标端问题。实现马桶低功耗、实时且高效的将用户体征检测结果传输至目标端。
本申请实施例还提供一种马桶检测系统10,如图5所示,马桶检测系统10包括终端200、云服务器300和上述述任意一种马桶100,马桶100可以包括:体征检测模块110、处理模块120和BLE蓝牙模块130,体征检测模块110通过金属电极111向人体注入电流并接收与电流对应的反馈信号,以检测用户的体征信息;处理模块120获取检测到的用户体征信息,并根据用户体征信息确定出用户体征参数,且将用户体征参数发送至低功耗BLE蓝牙模块130;BLE蓝牙模块130将处理模块120发送的用户体征参数实时发送至目标终端200。终端200可以是移动通信设备,如手机、平板等。终端200接收马桶100发送来的用户体征参数,并对用户体征参数进行分析得到初步检查报告,且将初步检查报告上传至云服务器300;云服务器300用于接收及分析终端200终端上传的初步检查报告,并向终端200下发用户的体征动态监测分析报告和健康指导意见,以供用户查阅。
上述马桶100可以包括:体征检测模块110、处理模块120和低功耗(Bluetooth Low Energy,BLE)蓝牙模块130。其中,体征检测模块110可以包括金属电极111,金属电极111可以是一个或者多个,金属电极111可以设置在马桶100座圈上,当用户如厕时,金属电极111与用户身体直接接触, 体征检测模块110通过金属电极111向人体注入微弱的恒定交流电流,并接收与电流对应的反馈信号,以测量人体的总水分、细胞外液、内液、无机盐、蛋白质、脂肪含量、肌肉量、体脂率、骨量、体重等用户的体征信息,处理模块120用于获取体征检测模块110检测到的用户体征信息,并根据用户体征信息确定出用户体征参数,且将用户体征参数发送至低功耗BLE蓝牙模块130;BLE蓝牙模块130,用于将处理模块120发送的用户体征参数实时发送至目标终端200。
BLE蓝牙技术是短距离、低成本、可互操作性的无线技术。BLE技术的工作模式非常适合用于从微型无线传感器或使用完全异步通信的遥控器等其它外设传送数据。BLE蓝牙支持以1Mbps速度传输的极小数据包(8个八位字节到27个八位字节)。BLE蓝牙的连接均使用高级低耗电监听模式,从而实现超低工作周期,将功耗降至最低。BLE蓝牙使用蓝牙技术通用的自适应跳频技术将2.4千兆赫工业科学及医疗(Industrial Scientific Medical,ISM)频带内的其他技术干扰减至最小。高效的多路径优势增加了链路预算和有效的运行范围,同时也优化了功耗。BLE蓝牙具有极具智能化的控制功能,能够使主机长时间处于睡眠模式,并且只在主机需要执行时才会被BLE蓝牙控制器唤醒。由于主机处理器的功耗一般高于BLE蓝牙控制器,因而实现了最大程度的节能。
在其中一个实施例中,上述马桶100还可以包括身份识别模块140,身份识别模块140包括射频识别RFID单元141(图中未示出),RFID单元141读取包含用户身份的标签信息以检测用户身份信息;身份识别模块140获取用户身份信息,并将用户身份信息传送至处理模块120;处理模块120接收身份识别模块140传送的用户身份信息,处理模块120将用户身份信息与从 体征检测模块110获取的用户体征信息进行匹配,以使处理模块120向BLE蓝牙模块130发送与用户身份信息匹配的用户体征参数,因而BLE蓝牙模块130将与用户身份信息匹配的用户体征参数发送至目标终端200。
在其中一个实施例中,马桶100还可以包括消毒清洁模块150,消毒清洁模块150用于当如厕完毕,马桶100自动对便池进行消毒清洁。消毒清洁模块150可以包括:温度检测单元151、冲水管道152和消毒单元153,温度检测单元151以预设频率实时检测当前接触物体的温度;预设频率可以是1s/次-1min/次,其中可以为3s/次、5s/次、10s/次、15s/次、20s/次、30s/次、40s/次或者50s/次,即温度检测单元151以预设频率对接触的物体进行温度检测,并记录检测的结果。若温度检测单元151检测的结果与预期检测结果不符,则触发冲水管道152启动冲水,以对马桶100的便池进行清洁;消毒单元153可以在冲水管道152启动冲水的情况下对便池进行消毒。
在其中一个实施例中,马桶100还可以包括消毒清洁模块150,消毒清洁模块150用于当如厕完毕,马桶100自动对便池进行消毒清洁。当温度检测单元151检测的温度结果在预设温度范围外,即当温度检测单元151检测的温度结果为34-40摄氏度范围内的任意温度,则表示状态为用户正在使用马桶100,冲水管道152无动作;当温度检测单元151检测的温度结果为34-40摄氏度范围外的任意温度,则表示状态为用户使用完毕并离开马桶100,此时触发冲水管道152启动冲水对便池进行清洁。
在其中一个实施例中,马桶100还可以包括消毒清洁模块150,消毒清洁模块150用于当如厕完毕,马桶100自动对便池进行消毒清洁。当温度检测单元151多次检测的温度差在预设温度差范围外,即温度检测单元151多次检测的温度差为0-5摄氏度内任意温度,则表示状态为用户正在使用马桶 100,冲水管道152无动作;当温度检测单元151多次检测的温度差为0-5摄氏度外任意温度,则表示状态为用户使用完毕并离开马桶100,此时触发冲水管道152启动冲水对便池进行清洁。冲水管道152用于当温度检测单元151多次检测的温度差在预设温度差范围外,则触发冲水管道152启动冲水对便池进行清洁。
在其中一个实施例中,消毒单元153为消毒液消毒单元153,消毒单元153可以设置为消毒液盒体154(图中未示出)和挤压组件155(图中未示出),其中消毒液盒体154设置有液体入口156(图中未示出)和液体出口157(图中未示出)。用户可以将消毒液通过液体入口156注入的消毒液盒体154内部,消毒液盒体154可用来盛装与一定容量的消毒液,且盛装的容量小于消毒液盒体154的体积。挤压组件155与冲水管道152连动连接,若消毒液盒体154受到挤压组件155的挤压,则会使得消毒液从液体出口157流出且注入冲水管道152。举例来说,若冲水管道152启动冲水,由于消毒液盒体154的挤压组件155与冲水管道152连动连接,则触发消毒单元153的挤压组件155挤压消毒液盒体154,则消毒液盒体154内的消毒液从液体出口157流出,向冲水管道152注入消毒液,以使便池消毒清洁。
在其中一个实施例中,消毒单元153为紫外线消毒单元,消毒单元153为设置在马桶100盖或者马桶100桶体上的紫外线照射等,可以辐射紫外线对马桶100进行消毒。其中,紫外线消毒单元153与冲水管道152通过连动连接,若冲水管道152启动冲水结束,则触发消毒单元153对便池进行紫外线扫描照射,以对便池进行消毒。
在其中一个实施例中,马桶100还包括尿检模块160,尿检模块160包括采尿容器161和尿检器162,采尿容器161用于采集用户尿液样本并将用 户尿液样本注入尿检器162,以使尿检器162对用户的尿常规、尿液中有形成分、蛋白成分定量和尿酶进行检测,并将尿检检测结果传送至处理模块120;处理模块120接收尿检模块160传送的尿检检测结果,以使处理模块120向BLE蓝牙模块130发送尿检检测结果至目标终端200。目标终端200获取出用户的身体健康情况,将用户健康情况反馈给用户,并实时提供健康护理和治疗建议,提醒用户关心自己的健康。
在其中一个实施例中,马桶100包括充电模块170,充电模块170用于将家用交流电转为直流电并为目标终端200供电。充电模170块包括有充电接口171,与充电接口171连接的供电单元172和储电单元173,其中与供电单元172连接的储电单元173,供电单元172连接家用电源。供电单元172将家用电转化成直流电提供给充电接口171和储电单元173,充电接口171可以终端200供电,储电单元173存电能,在供电单元172无法供电的情况,如生活用电停电情况下,可以为充电接口171供电,进而为终端200供电。上述马桶检测系统通过将所述体征检测模块检测的所述用户体征信息传送至所述处理模块,再利用所述BLE蓝牙模块将所述处理模块传送的所述用户体征参数实时发送至所述终端,再经由云服务器分析得到用户的体征动态监测分析报告和健康指导意见。解决了现有技术方案中马桶不能在低功耗的情况下将检测结果实时地传输至终端问题。实现马桶低功耗、实时且高效的将用户体征检测结果传输至终端。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细, 但并不能因此而理解为对申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (18)

  1. 一种马桶,包括:
    体征检测模块,包括金属电极,所述体征检测模块通过所述金属电极向人体注入电流并接收与所述电流对应的反馈信号,以检测用户的体征信息;
    处理模块,用于获取检测到的用户体征信息,并根据所述用户体征信息确定出用户体征参数,且将所述用户体征参数发送至低功耗BLE蓝牙模块;
    所述BLE蓝牙模块,用于将处理模块发送的所述用户体征参数实时发送至目标终端。
  2. 根据权利要求1所述的马桶,其特征在于,所述马桶还包括身份识别模块,
    所述身份识别模块包括射频识别RFID单元,所述RFID单元用于检测用户身份信息;所述身份识别模块获取所述用户身份信息,并将所述用户身份信息传送至所述处理模块;
    所述处理模块接收所述身份识别模块传送的所述用户身份信息,并将所述用户身份信息与所述用户体征信息进行匹配,以使所述处理模块向所述BLE蓝牙模块发送与所述用户身份信息匹配的用户体征参数。
  3. 根据权利要求1或2所述的马桶,其特征在于,所述马桶包括还包括消毒清洁模块,所述消毒清洁模块用于当所述马桶使用完毕后对所述马桶进行消毒清洁,所述消毒清洁模块包括:
    温度检测单元,用于以预设频率实时检测当前接触物体的温度;
    冲水管道,用于若温度检测单元检测的结果与预期检测结果不符,则触发所述冲水管道启动冲水,以对所述马桶的便池进行清洁;
    消毒单元,所述消毒单元用于在所述冲水管道启动后对所述便池进行消毒。
  4. 根据权利要求3所述的马桶,其特征在于,所述冲水管道用于当所述温度检测单元检测的温度结果在预设温度范围外,则触发所述冲水管道启动冲水对便池进行清洁。
  5. 根据权利要求3所述的马桶,其特征在于,所述冲水管道用于当所述温度检测单元多次检测的温度差在预设温度差范围外,则触发所述冲水管道启动冲水对便池进行清洁。
  6. 根据权利要求3所述的马桶,其特征在于,所述消毒单元为消毒液消毒单元,所述消毒单元与所述冲水管道连动连接,若所述冲水管道启动冲水,则触发所述消毒单元向所述冲水管道注入消毒液,以使所述便池消毒清洁。
  7. 根据权利要求3所述的马桶,其特征在于,所述消毒单元为紫外线消毒单元,所述消毒单元与所述冲水管道通过连动连接,若所述冲水管道启动冲水结束,则触发所述消毒单元对所述便池进行紫外线扫描照射,以使所述便池消毒。
  8. 根据权利要求1或2所述的马桶,其特征在于,所述马桶还包括尿检模块,所述尿检模块包括采尿容器和尿检器,所述采尿容器用于采集用户尿液样本并将所述用户尿液样本注入所述尿检器,以使所述尿检器对所述用户的尿常规、尿液中有形成分、蛋白成分定量和尿酶进行检测,并将尿检检测结果传送至所述处理模块;
    所述处理模块接收所述尿检模块传送的所述尿检检测结果,以使所述处理模块向所述BLE蓝牙模块发送所述尿检检测结果。
  9. 根据权利要求1或2所述的马桶,其特征在于,所述马桶包括充电模块,所述充电模块用于将家用交流电转为直流电并为所述目标终端供电。
  10. 一种马桶检测系统,包括:终端、云服务器和权利要求1所述的马桶,
    所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  11. 一种马桶检测系统,包括:终端、云服务器和权利要求2所述的马桶,
    所述终端用于接收所述马桶发送来的与所述用户身份信息匹配的用户体征参数,并对所述与所述用户身份信息匹配的用户体征参数进行分析得到匹配用户初步检查报告,且将所述匹配用户初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述匹配用户初步检查报告,得到匹配用户的体征动态监测分析报告和匹配用户的健康指导意见,并将所述匹配用户的体征动态监测分析报告和所述匹配用户的健康指导意见下发至所述终端,以供所述用户查阅。
  12. 一种马桶检测系统,包括:终端、云服务器和权利要求3所述的马桶,
    所述马桶包括还包括消毒清洁模块,所述消毒清洁模块用于当所述马桶使用完毕后对所述马桶进行消毒清洁;
    所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  13. 一种马桶检测系统,包括:终端、云服务器和权利要求4所述的马桶,
    所述马桶包括还包括消毒清洁模块,所述消毒清洁模块的冲水管道用于当所述温度检测单元检测的温度结果在预设温度范围外,则触发所述冲水管道启动冲水对便池进行清洁;
    所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  14. 一种马桶检测系统,包括:终端、云服务器和权利要求5所述的马桶,
    所述马桶包括还包括消毒清洁模块,所述消毒清洁模块的冲水管道用于当所述温度检测单元多次检测的温度差在预设温度差范围外,则触发所述冲水管道启动冲水对便池进行清洁;
    所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  15. 一种马桶检测系统,包括:终端、云服务器和权利要求6所述的马桶,
    所述马桶包括还包括消毒清洁模块,所述消毒清洁模块的消毒单元为消毒液消毒单元,所述消毒单元与所述冲水管道连动连接,若所述冲水管道启动冲水,则触发所述消毒单元向所述冲水管道注入消毒液,以使所述便池消毒清洁;
    所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  16. 一种马桶检测系统,包括:终端、云服务器和权利要求7所述的马桶,
    所述马桶包括还包括消毒清洁模块,所述消毒清洁模块的消毒单元为紫外线消毒单元,所述消毒单元与所述冲水管道通过连动连接,若所述冲水管道启动冲水结束,则触发所述消毒单元对所述便池进行紫外线扫描照射,以使所述便池消毒;
    所述终端用于接收所述马桶发送来的用户体征参数,并对所述用户体征参数进行分析得到初步检查报告,且将所述初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  17. 一种马桶检测系统,包括:终端、云服务器和权利要求8所述的马桶,
    所述马桶还包括尿检模块,用于采集用户尿液样本并对所述用户尿液样对进行检测,并将所述马桶尿检初步结果发送至所述终端;
    所述终端用于接收所述马桶发送来的所述用户体征参数和所述尿检初步结果,并对所述用户体征参数和所述尿检初步结果进行分析得到尿检初步检查报告,且将所述尿检初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述尿检初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
  18. 一种马桶检测系统,包括:终端、云服务器和权利要求9所述的马桶,
    所述马桶包括充电模块,所述充电模块用于将家用交流电转为直流电并为所述目标终端供电;
    所述终端用于接收所述马桶发送来的所述用户体征参数和所述尿检初步结果,并对所述用户体征参数和所述尿检初步结果进行分析得到尿检初步检查报告,且将所述尿检初步检查报告上传至所述云服务器;
    所述云服务器用于接收并分析所述终端上传的所述尿检初步检查报告,得到用户的体征动态监测分析报告和健康指导意见,并将所述体征动态监测分析报告和所述健康指导意见下发至所述终端,以供所述用户查阅。
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