CN111521280A - Temperature measuring instrument processing system and method and temperature measuring instrument - Google Patents

Temperature measuring instrument processing system and method and temperature measuring instrument Download PDF

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Publication number
CN111521280A
CN111521280A CN202010560550.4A CN202010560550A CN111521280A CN 111521280 A CN111521280 A CN 111521280A CN 202010560550 A CN202010560550 A CN 202010560550A CN 111521280 A CN111521280 A CN 111521280A
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CN
China
Prior art keywords
module
information
body temperature
early warning
thermometer
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CN202010560550.4A
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Chinese (zh)
Inventor
柳班
罗琴芳
王旭东
万志超
张桂霞
黄贤钹
鲁力
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Guangzhou Zhikangyun Technology Co ltd
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Guangzhou Zhikangyun Technology Co ltd
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Priority to CN202010560550.4A priority Critical patent/CN111521280A/en
Publication of CN111521280A publication Critical patent/CN111521280A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/0022Radiation pyrometry, e.g. infrared or optical thermometry for sensing the radiation of moving bodies
    • G01J5/0025Living bodies
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/02Means for indicating or recording specially adapted for thermometers
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K13/00Thermometers specially adapted for specific purposes
    • G01K13/20Clinical contact thermometers for use with humans or animals
    • G01K13/223Infrared clinical thermometers, e.g. tympanic
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • G06K7/10009Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation sensing by radiation using wavelengths larger than 0.1 mm, e.g. radio-waves or microwaves
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/08Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using communication transmission lines
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/029Location-based management or tracking services

Abstract

The embodiment of the invention provides a temperature measuring instrument processing system, a temperature measuring instrument processing method and a temperature measuring instrument, and relates to the technical field of temperature measuring equipment, wherein the system comprises the following components: the system comprises a temperature sensing module, a processor module, a positioning module, a network communication module, an identity recognition module and an alarm module; the temperature sensing module is used for collecting body temperature data and transmitting the body temperature data to the processor module; the identity recognition module is used for recognizing the identity information of the detection object and transmitting the identity information to the processor module; the positioning module is used for acquiring the place information and transmitting the place information to the processor module; the processor module carries out correlation processing according to the body temperature data, the identity information and the location information to obtain correlation information, uploads the correlation information to the data center through the network communication module, and triggers the alarm module to output according to the received early warning prompt information. The embodiment of the invention realizes the early warning function of the thermodetector, can meet various temperature measurement requirements of users, and expands the application range of the thermodetector.

Description

Temperature measuring instrument processing system and method and temperature measuring instrument
Technical Field
The invention relates to the technical field of temperature measurement equipment, in particular to a temperature measuring instrument processing system and method and a temperature measuring instrument.
Background
Along with the rapid development of science and technology, the thermodetector is popularized more and more quickly, and the thermodetector is simple to operate, and is convenient for people to measure temperature.
Specifically, the temperature measuring instrument is one of thermometers, mainly uses the principle of infrared transmission digital volume to sense the surface temperature of an object, and is convenient to operate. For example, when a thermometer is used to measure the body temperature of a person, the thermometer can be aligned with a body temperature mark part of the person, such as the back of a hand, the neck, etc., to collect temperature data of the person, thereby realizing rapid body temperature measurement. However, the existing thermometers can only realize rapid temperature measurement, cannot correlate the measured body temperature data with other data, and cannot meet the measurement requirements of users. For example. The existing temperature measuring instrument can not correlate the measured temperature data with personal identity information, the measured temperature data needs to be manually registered as the body temperature data of which person, and the workload of temperature measuring personnel is increased. When the thermodetector is applied to epidemic situation monitoring, the temperature data of which person is measured by the thermodetector needs to be manually registered, namely, the corresponding relation between the measured temperature data and the personal identity information is completely registered by the manual registration, so that the difficulty is caused for monitoring epidemic situation contact work, and the problems that epidemic situation infectors or epidemic situation contacters cannot be tracked and positioned easily are caused.
Disclosure of Invention
The invention provides a thermometer processing system, a thermometer processing method and a thermometer, which are used for correlating body temperature data measured by the thermometer with identity information and location information of a detected object, realizing the tracing function of the thermometer and meeting the measurement requirements of a user.
In order to solve the above problems, an embodiment of the present invention discloses a temperature measuring instrument processing system, including: the system comprises a temperature sensing module, a processor module, a positioning module, a network communication module, an identity recognition module and an alarm module;
the temperature sensing module is connected with the processor module and used for collecting body temperature data of a detected object and transmitting the body temperature data to the processor module;
the identity recognition module is connected with the processor module and used for recognizing the identity information of the detection object and transmitting the recognized identity information to the processor module;
the positioning module is connected with the processor module and used for acquiring the location information of the detection object and transmitting the location information to the processor module;
the processor module is connected with the network communication module and the alarm module and used for performing association processing according to the body temperature data, the identity information and the location information to obtain association information corresponding to the detection object, uploading the association information to a data center through the network communication module, and triggering the alarm module to output according to received early warning prompt information, wherein the early warning prompt information is obtained by performing data processing according to the association information by the data center.
Optionally, the temperature sensing module includes a temperature sensor;
the temperature sensor is specifically used for measuring the infrared spectrum of the detection object and generating corresponding body temperature data according to the measured infrared spectrum;
the data center is specifically configured to determine a geographic position according to location information in the associated information after receiving the associated information, analyze the body temperature data in combination with detection data corresponding to the geographic position to obtain an analysis result, and determine early warning prompt information corresponding to the body temperature data based on the analysis result.
Optionally, the thermometer processing system further comprises a storage module;
the storage module is connected with the processor module and is used for storing preset temperature interval thresholds, and the temperature interval thresholds comprise an upper temperature threshold and a lower temperature threshold;
the processor module is further used for outputting corresponding alarm information to the alarm module when the body temperature data exceeds the temperature range corresponding to the temperature zone threshold value, so as to trigger the alarm module to output according to the alarm information.
Optionally, the thermometer processing system further comprises a display screen;
the processor module is further used for determining early warning reason information according to the early warning prompt information and transmitting the early warning reason information to the display screen so as to trigger the display screen to display according to the early warning reason information;
the display screen is also used for displaying the body temperature data acquired by the temperature sensing module.
Optionally, the alarm module includes a diode submodule, and the diode submodule is connected with the processor module;
the processor module triggers the alarm module to output according to the received early warning prompt information, and the method comprises the following steps: and the processor module outputs a diode control signal to the diode submodule according to the early warning prompt information so as to control the working state of the diodes in the diode submodule.
Optionally, the alarm module comprises a buzzer submodule, and the buzzer submodule is connected with the processor module;
the processor module triggers the alarm module to output according to the received early warning prompt information, and the method comprises the following steps: the processor module outputs a buzzer control signal to the buzzer submodule according to the early warning prompt information so as to trigger the buzzer submodule to output according to the buzzer control signal.
Optionally, the identity recognition module includes a camera and/or a near field communication NFC sub-module;
the identity recognition module recognizes the identity information of the detection object and transmits the recognized identity information to the processor module, and the method comprises the following steps: shooting through the camera, and transmitting image information obtained by shooting to the processor module as the identity information; or, reading information through the NFC submodule, and transmitting the read information serving as the identity information to the processor module.
Optionally, the network communication module includes at least one of: the mobile communication device comprises a Bluetooth module, a mobile communication module and a wireless internet module;
the processor module performs correlation processing according to the body temperature data, the identity information and the location information, and comprises the following steps: when the temperature sensing module collects the body temperature data, time information corresponding to the body temperature data is determined based on system time, and the body temperature data, the identity information and the place information are subjected to correlation processing by combining the time information.
The embodiment of the invention also discloses a thermometer processing method, which is applied to a thermometer, wherein the thermometer is provided with an identity identification module, a positioning module and a network communication module, and the method comprises the following steps:
collecting body temperature data of a detected object;
performing association processing according to the body temperature data, the identity information identified by the identity identification module and the location information acquired by the positioning module to obtain association information corresponding to the detection object;
sending the associated information to a data center through the network communication module;
and after early warning prompt information sent by a data center is received, outputting according to the early warning prompt information, wherein the early warning prompt information is obtained by the data center through data processing according to the associated information.
The embodiment of the invention also discloses a temperature measuring instrument which is provided with a temperature measuring instrument processing system.
The body temperature data that this embodiment was gathered through sensing the module with the temperature, the location information transmission that identity information and orientation module gathered that identity identification module discerned gives the processor module, with the body temperature data that will gather links up with the identity information and the location information of detection object through the processor module, thereby avoid the trouble of artifical registration measured body temperature data, reduce staff's work load, and accessible network communication module uploads the associated information to data center and carries out data processing, obtain early warning prompt information, trigger alarm module according to this early warning prompt information afterwards and export, the early warning function of thermoscope has been realized, can satisfy the various temperature measurement demands of user, the range of application of thermoscope has been enlarged.
Drawings
FIG. 1 is a block diagram of a thermometer processing system according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of the construction of a thermometer processing system in an alternative embodiment of the invention;
FIG. 3 is a schematic structural diagram of a temperature measuring instrument in an embodiment of the present invention;
FIG. 4 is a flow chart of the steps of a thermometer processing method in the practice of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples. It is to be understood that the specific embodiments described herein are merely illustrative of the invention and are not limiting of the invention. It should be further noted that, for the convenience of description, only some of the structures related to the present invention are shown in the drawings, not all of the structures.
One of the core ideas of the embodiment of the invention is to provide a thermometer processing system and a thermometer processing method, which are applied to a thermometer, so that the thermometer can associate acquired body temperature data with identity information and location information of a detected object, the trouble of manual registration is avoided, the tracing function of the thermometer is realized, and the measurement requirements of a user are met.
Referring to fig. 1, a block diagram of a thermometer processing system according to an embodiment of the present invention is shown. The thermometer processing system may specifically include: temperature sensing module 110, processor module 120, location module 130, network communication module 140, identification module 150, alarm module 160.
The temperature sensing module 110 is connected to the processor module 120, and is configured to collect body temperature data of a subject, and transmit the body temperature data to the processor module 120. The identity recognition module 150 is connected to the processor module 120, and is configured to recognize identity information of a detected object, and transmit the recognized identity information to the processor module 120, so that the processor module 120 may receive the identity information, and further associate the identity information with measured body temperature data, thereby implementing an identity recognition function of the thermometer. The positioning module 130 is connected to the processor module 120, and is configured to collect location information of a detected object, and transmit the location information to the processor module 120, so that the processor module 120 can receive the location information, and further associate the location information with measured body temperature data, thereby implementing a body temperature checkpoint tracking function of the thermometer. The processor module 120 is connected to the network communication module 140 and the alarm module 160, and configured to perform association processing according to the body temperature data, the identity information, and the location information to obtain association information corresponding to the detected object, upload the association information to a data center through the network communication module 140, and trigger the alarm module 160 to output according to received early warning prompt information, where the early warning prompt information is obtained by the data center performing data processing according to the association information.
In summary, in the embodiment, the body temperature data collected by the temperature sensing module 110, the identity information identified by the identity identification module 150, and the location information collected by the positioning module 130 are transmitted to the processor module 120, so that the collected body temperature data is associated with the identity information and the location information of the detection object through the processor module 120, thereby avoiding the trouble of manually registering the measured body temperature data, reducing the workload of the worker, uploading the associated information to the data center through the network communication module 140 for data processing, obtaining the warning prompt information, and then triggering the alarm module 160 to output according to the warning prompt information, thereby implementing the warning function of the thermometer.
Furthermore, the associated information in this embodiment may include the identity information, the location information, and the body temperature data of the detection object, so that the data center may perform big data analysis on the body temperature data by combining the identity information and the location information, and tracking of the body temperature check point is realized, so that tracking and positioning of epidemic infected persons and/or epidemic contacts can be realized by combining the identity information and the location information when the thermometer is applied to epidemic situation monitoring work, for example, accurate tracking can be performed on epidemic situation contacts, high risk groups, and asymptomatic patients, that is, the problem that the existing thermometer cannot accurately position and identify the epidemic situation contacts is overcome, and the purpose of convenient management and epidemic situation prevention and control is achieved.
In a specific implementation, the temperature sensing module 110 may be provided with one or more temperature sensors to measure the body temperature data of the subject through the temperature sensors. The detected object may be an object detected by a temperature detector, such as a person detected by the temperature detector; the body temperature data may also be referred to as body temperature information, and may particularly be used to represent the body temperature of the subject. For example, the temperature sensor may be disposed at the front end of the thermometer body, and if an infrared sensor is used, the temperature sensor is aligned with the human body temperature mark during temperature measurement, so as to collect the temperature of the human body, that is, collect the body temperature data of the detected object.
Optionally, the temperature sensing module 110 in this embodiment includes a temperature sensor; the temperature sensor is specifically used for measuring the infrared spectrum of the detection object and generating corresponding body temperature data according to the measured infrared spectrum. The data center is specifically configured to determine a geographic position according to location information in the associated information after receiving the associated information, analyze the body temperature data in combination with detection data corresponding to the geographic position to obtain an analysis result, and determine early warning prompt information corresponding to the body temperature data based on the analysis result. It should be noted that the data center may refer to a center for data processing, such as a cloud center, an epidemic situation control center, and the like, which is not limited in this embodiment.
As an example of the present invention, the temperature sensor may be an infrared temperature sensor, and is configured to measure an infrared spectrum emitted by a human body, generate corresponding body temperature data, and then transmit the body temperature data to the processor module 120, so that the processor module 120 may associate the body temperature data with identity information recognized by the identity recognition module 150 and location information acquired by the positioning module 130, and then upload the associated information to the cloud center through the network communication module 140 for data processing, that is, upload the associated body temperature data, identity information, and location information to the cloud center, so that the cloud center may perform data analysis by combining the body temperature data, identity information, and location information in the associated information, and further may track a body temperature detection point of the thermometer, thereby implementing a tracing function of the thermometer.
In a specific implementation, the identity recognition module 150 may recognize and extract the identity information of the detected object through Near Field Communication (NFC), for example, the identity card information of the detected object is read in an NFC manner, that is, the identity information of the detected object is recognized, and then the identity information may be sent to the processor module 120, so that the processor module 120 associates the identity information with the acquired body temperature data to implement the identity recognition function of the thermometer. Of course, the identification module 150 may also implement identification by using a camera, for example, an identification card of the detection object may be photographed by using the camera, and then the identification information of the detection object may be recognized from the photographed image information.
Optionally, the identity module 150 in this embodiment includes a camera and/or a near field communication NFC sub-module; the identity recognition module 150 recognizes the identity information of the detected object and transmits the recognized identity information to the processor module 120, including: shooting through the camera, and transmitting image information obtained by shooting as the identity information to the processor module 120; or, the NFC sub-module reads information and transmits the read information as the identity information to the processor module 120.
For example, the identity recognition module 150 may capture an identity card of a detection object through a camera, and transmit captured image information of the identity card as identity information to the processor module 120, so that the processor may obtain the identity information of the detection object from the image information of the identity card, and further associate the identity information with body temperature data acquired by the temperature sensing module 110, thereby implementing an identity recognition function of the thermometer. Of course, the identification module 150 may also read information of the identification card of the detection object through the NFC sub-module, so that the read information of the identification card may be transmitted to the processor module 120 as the identification information of the detection object, which is not limited in this example.
Specifically, after receiving the identity information, the processor module 120 may associate the identity information with the body temperature data acquired by the temperature sensing module 110 and the location information acquired by the positioning module 130, and then may upload the association information to the data center through the network communication module 140, so that the data center may perform big data analysis according to the identity information, the location information, and the body temperature data in the association information, thereby determining an early warning prompt information corresponding to the body temperature data based on an analysis result, and allowing the alarm module 160 to output the early warning prompt information according to the early warning prompt information, thereby implementing an early warning function, so that the thermometer may serve as an important front-end integrated device for epidemic situation joint control, and expanding an application range of the thermometer.
The network communication module 140 may be a WIreless-Fidelity (WI-Fi) module, a mobile communication module, or the like, which is not limited in this embodiment. The WI-Fi module may be used for wireless data networking; the mobile communication Module may be a Subscriber Identity Module (SIM) or an ESIM mobile communication Module, which may be used for data networking.
Optionally, the network communication module 140 in this embodiment may include at least one of the following: the mobile communication device comprises a Bluetooth module, a mobile communication module and a wireless internet module. The processor module 120 performs association processing according to the body temperature data, the identity information and the location information, and may include: when the temperature sensing module 110 collects the body temperature data, time information corresponding to the body temperature data is determined based on system time, and the body temperature data, the identity information and the location information are subjected to correlation processing by combining the time information. The time information corresponding to the body temperature data can represent the acquisition time of the body temperature data.
For example, as shown in fig. 2, when receiving body temperature data collected by the infrared temperature sensor 111, the processor 121 in the processor module 120 may obtain local system time, and may associate the system time with the body temperature data, the identity information recognized by the identity recognition module 150, and the location information collected by the positioning module 130 as time information corresponding to the collected body temperature data to obtain associated information, and then may send the associated information to the mobile terminal through the mobile communication module 141, so as to upload the associated information to the data center through the mobile terminal, so that the data center may perform big data processing on the body temperature data, the time information, the identity information, and the location information contained in the associated information, such as big data analysis of the data center, recording and feeding back epidemic high risk groups, and quickly implement epidemic situation prevention and control in-field deployment, reduce epidemic situation prevention and control management cost, alleviate staff's work load.
Of course, the processor module 120 may also store the correlation information obtained after the correlation processing in the local thermometer, for example, the correlated identity information, body temperature data, and location information may be stored in the memory of the thermometer, so as to facilitate the subsequent viewing of the measured information in the thermometer.
Optionally, the thermometer processing system in this embodiment may further include a storage module 210. The storage module 210 is connected to the processor module 120, and configured to store a preset temperature interval threshold, where the temperature interval threshold includes an upper temperature threshold and a lower temperature threshold; the processor module 120 is further configured to output corresponding alarm information to the alarm module 160 when the body temperature data exceeds the temperature range corresponding to the temperature zone threshold, so as to trigger the alarm module 160 to output according to the alarm information.
In a specific implementation, the storage module 210 may be used as a data storage module in the thermometer, and may specifically include a memory and a flash memory, and may be used to store the measurement data, for example, may be used to store data preset in a firmware of the thermometer and acquired identity information, body temperature data, detection time, location information, and the like of the detected object, which is not limited in this embodiment. The preset data in the thermometer firmware may be a preset temperature interval threshold, such as 35-37 deg.C, wherein 35 deg.C may be used as the lower threshold of the temperature area, and 37 deg.C may be used as the upper threshold of the temperature area. The collected body temperature data exceeds the upper threshold value of the temperature area or is lower than the lower threshold value of the temperature area, and the processor can give an alarm through the alarm module 160 to prompt that the phenomenon that the temperature is too low or too high belongs to abnormal phenomena.
Specifically, the processor module 120 may include a processor 121, which may compare the body temperature data with the temperature interval threshold stored in the storage module 210 after receiving the body temperature data collected by the infrared temperature sensor 111 in the temperature sensing module 110; if the body temperature data is higher than the upper temperature limit threshold, corresponding alarm information can be generated and transmitted to the alarm module 160, so that the alarm module 160 can output according to the alarm information to realize abnormal body temperature alarm; if the body temperature data is lower than the lower temperature threshold, corresponding alarm information can be generated and transmitted to the alarm module 160, so that the alarm module 160 can output the alarm information to realize abnormal body temperature alarm.
Optionally, the thermometer processing system in this embodiment may further include a display screen 220. The display screen 220 is coupled to the processor module 120 and can be displayed according to information received by the processor module 120. Specifically, the processor module 120 is further configured to determine early warning reason information according to the early warning prompt information, and transmit the early warning reason information to the display screen 220, so as to trigger the display screen 220 to display according to the early warning reason information. Therefore, the display screen 220 can be used for displaying the early warning reason information so as to realize the early warning function of the temperature measuring instrument. The early warning reason information can indicate the early warning reason so as to prompt a user of the reason for early warning by the temperature measuring instrument.
Of course, the display screen 220 may also be used to display other information, for example, the display screen 220 is also used to display the body temperature data collected by the temperature sensing module 110. For example, the display screen 220 may be a Light Emitting Diode (LED) display screen 220, and may be disposed at the rear end of the thermometer body for displaying information, such as temperature data, personal identity information, identity matching information, warning reason information, key indication information, error reporting information, and the like, which is not limited in this embodiment.
In an alternative embodiment, the alarm module 160 in the thermometer processing system includes a diode sub-module that is coupled to the processor module 120. The processor module triggers the alarm module 160 to output according to the received early warning prompt information, which may specifically include: the processor module 120 outputs a diode control signal to the diode submodule according to the early warning prompt information so as to control the working state of the diodes in the diode submodule. The diode sub-module may include one or more light emitting diodes, such as one or more tri-color diodes, which is not limited in this embodiment.
Specifically, after receiving the early warning prompt information, the processor module can generate a diode control signal according to the early warning prompt information, and can send the generated diode control signal to the diode submodule so as to trigger the diode submodule to control the working state of the diode according to the diode control signal, for example, the diode control signal controls the flashing frequency of the diode, so that the user is prompted by the flashing of the diode, and the purpose of early warning prompt is achieved; for another example, the light emitting colors of the diodes in the diode sub-module may be controlled according to the diode control signal, so as to perform the warning prompt by the light emitting colors of the diodes, and if the diodes in the diode sub-module are three-color diodes, as shown in fig. 2, the processor 121 may control the three-color diodes 162 to alternately display red, green and yellow by the diode control signal, so as to achieve the purpose of the warning prompt. Wherein, the tricolor diode 162 displays red, green and yellow alternately to represent alarm for early warning prompt; the tri-color 162 diode displays green, which may indicate normal, and the tri-color 162 diode displays red, which may indicate abnormal.
When the heat is generated, the alarm module 160 can not only perform the warning prompt by the light emission of the diode, but also perform the warning prompt in other manners, such as the warning prompt by the buzzer.
Optionally, the alarm module 160 in this embodiment includes a buzzer sub-module, and the buzzer sub-module is connected to the processor module 120. The processor module triggers the alarm module 160 to output according to the received early warning prompt information, including: the processor module 120 outputs a buzzer control signal to the buzzer submodule according to the early warning prompt information so as to trigger the buzzer submodule to output according to the buzzer control signal.
In a specific implementation, the buzzer sub-module may include one or more buzzers 161, so that the processor 121 in the processor module 120 may implement an audible alarm through the buzzers 161, such as a buzzer sounding indicates normal, a buzzer sounding indicates abnormal, and a buzzer sounding intermittently for a long time indicates an alarm.
In addition, the positioning module 130 in this embodiment may be provided with a Global Positioning System (GPS) or a satellite navigation system, so that a user may select any one of them according to needs. The location information acquired by the positioning module 130 can represent the geographical position of the temperature measuring point, so that the positioning function of the temperature measuring instrument is realized. For example, the positioning module 130 can be used for accurately positioning epidemic situation high risk group or contact group of the body temperature monitoring point, thereby realizing accurate tracking of epidemic situation contact personnel, high risk group and asymptomatic patient, and achieving the purpose of convenient management and epidemic situation prevention and control.
It should be noted that the temperature measuring instrument processing system provided by the embodiment of the present invention may be applied to a temperature measuring instrument, and may further include other modules in the temperature measuring instrument, such as a key module and a power module.
The key module can comprise a switch key, a function key, a temperature measurement key and the like. The function keys can comprise a right direction key, a left direction key, a confirmation key and a return key, can be specifically arranged on the edge below the rear end display screen of the thermometer body, are close to the thumb of a user when the user operates, are convenient for the user to operate with one hand, and can be specifically used for mode switching, and if the user can press a screen prompt menu of the display screen and select specific functions by pressing the function keys. The temperature measurement button can be regarded as temperature delay measurement touch switch, specifically can set up in the hand (hold) department of thermoscope body, and convenience of customers one-hand operation, if when the temperature measurement, the user just can trigger the temperature sensing module in the thermoscope and carry out data acquisition through pressing this temperature measurement button to gather body temperature data.
The power supply module can be a main power supply of the whole temperature measuring instrument processing system and can provide electric energy for the work of the temperature measuring instrument. Specifically, the power module may include a battery, a charging and discharging circuit, and a charging interface, and optionally, may further include a battery compartment, so that the battery is placed in the battery compartment to supply power to the temperature measuring instrument, thereby increasing portability of the temperature measuring instrument. It should be noted that, battery power is a preferred option for the thermometer, and the battery may be integrated in the thermometer body or may be detachably installed in a battery compartment of the thermometer body, which is not particularly limited in this embodiment. When the temperature measuring instrument does not work, the temperature measuring instrument can enter a sleep mode so as to achieve lower energy consumption and prolong the service life of the battery.
Referring to fig. 3, a block diagram of a temperature measuring instrument according to an embodiment of the present invention is shown. The thermometer 300 may include: a thermometer processing system 310. The thermometer processing system 310 may be used as a processing system of a thermometer, and may specifically be the thermometer processing system described in any of the above embodiments.
In specific implementation, the temperature measuring instrument can comprise a temperature measuring instrument body, an LED display screen, a switch key, a temperature sensor and a function key. The thermometer comprises a thermometer body, and is characterized in that a positioning module, an NFC module, a communication module, a processor, a storage module, a Wi-Fi module, a power module, a buzzer and the like can be arranged inside the thermometer body. The NFC module may be used as the identity recognition module 150 in the thermometer processing system, and may be used to recognize identity information of a detected object, thereby implementing an identity recognition function of the thermometer.
The communication module can be used as a mobile communication module 141 in the thermometer processing system, so that the thermometer can send the correlated identity information, body temperature data, location information and time information to a data center for processing through the communication module, for example, the correlated identity information, body temperature data, location information and time information can be sent to a mobile terminal such as a mobile phone through the communication module, so that the correlated identity information, body temperature data, location information and time information can be uploaded to a cloud database through the mobile terminal, so that a disease control center serving as the data center can perform big data analysis based on the identity information, body temperature data, location information and time information stored in the cloud database, and further can record and feed back epidemic disease high-risk group information to the thermometer, thereby rapidly realizing epidemic situation prevention and control deployment on the spot and reducing epidemic situation prevention and control management cost, and the workload of workers is reduced.
In addition, the temperature sensor can be used as a temperature sensing module in a thermometer processing system and used for collecting body temperature data of a detected object and realizing the temperature measurement function of the thermometer. The buzzer can be used as an alarm module in the temperature measuring instrument processing system, so that the temperature measuring instrument can give out sound alarm through the buzzer.
In summary, in the embodiment, the thermometer processing system mentioned in the above embodiments is added to the thermometer, so that the body temperature detection point tracking function, the identity recognition function, and the early warning function of the thermometer are realized, various temperature measurement requirements of a user can be met, and the application range of the thermometer is expanded.
For example, the temperature measuring device can measure the infrared spectrum emitted from the body surface of the human body to determine the accurate temperature of the human body based on the infrared sensor in the temperature sensing module 110, and can associate the information of the detected crowd through the identity recognition and positioning functions to achieve the purpose of accurately positioning the epidemic situation contacter. Specifically, the thermometer can identify and record the identity information of the tested person while measuring the body temperature, and can acquire the location information through the positioning module 130 to position the position of the tested person based on the location information, and can acquire the current system time as the time for acquiring the body temperature data, namely acquiring the body temperature data, the position, the time and the identity information, and then can associate and upload the acquired body temperature data, the position, the time and the identity information to the epidemic situation prevention and control data center through the communication module to determine the high risk population of epidemic diseases through the big data analysis of the data center. Specifically, after the data center receives the associated information of the body temperature data, the position, the time and the identity information, big data analysis can be performed on the associated information to determine the epidemic high risk group, corresponding information is recorded, and then the recorded information can be fed back to the temperature measuring instrument, so that the temperature measuring instrument can output the information fed back by the data center according to the information, if the information fed back by the data center is displayed through a display screen, and/or a buzzer control signal can be generated based on the information fed back by the data center, so that the buzzer is controlled to output according to the buzzer control signal, sound alarm is realized, users are prompted to the epidemic high risk group, epidemic prevention and control are rapidly realized, the epidemic prevention and control management cost is reduced, and the workload of workers is reduced.
Therefore, in the embodiment, the thermometer processing system is added in the thermometer, so that the thermometer is added with the functions of identity recognition and positioning, and further the tracing function of the thermometer is realized, so that the thermometer can accurately position the crowd with abnormal temperature, the requirement of the user for measuring the body temperature is met, and the user use experience is improved.
On the basis of the above embodiment, the embodiment of the invention also provides a thermometer processing method. The thermometer processing method is applied to a thermometer, the thermometer is provided with an identity recognition module, a positioning module and a network communication module, and as shown in fig. 4, the thermometer processing method specifically comprises the following steps:
step 410, collecting body temperature data of the detected object.
Specifically, the temperature measuring instrument can collect body temperature data of the detected object through the temperature sensing module, for example, infrared spectrum emitted from the body surface of the detected object can be detected through an infrared sensor in the temperature sensing module to determine the body temperature data. ,
and step 420, performing association processing according to the body temperature data, the identity information identified by the identity identification module and the location information acquired by the positioning module to obtain association information corresponding to the detection object.
Specifically, the thermometer may associate the collected body temperature data with the identity information identified by the identity identification module and the location information collected by the positioning module, and then upload the body temperature data, the identity information, and the location information that can be associated as association information to the data center for big data analysis, that is, execute step 430. Of course, the thermometer may also store the correlated body temperature data, identity information, and location information in a local storage module for subsequent viewing, which is not limited in this embodiment.
Step 430, sending the association information to a data center through the network communication module.
And step 440, outputting according to the early warning prompt information after receiving the early warning prompt information sent by the data center, wherein the early warning prompt information is obtained by the data center through data processing according to the association information.
Specifically, after the temperature detector uploads the associated information to the data center, the temperature detector can receive early warning prompt information fed back by the data processing center aiming at the associated information, and then can display corresponding early warning reason information according to the early warning prompt information to inform a user of the early warning reason, and can control the output of the buzzer according to the early warning prompt information to realize sound early warning, and can control the light emitting color of the three-color diode based on the early warning prompt information, for example, the three-color diode is controlled to alternately display red, green and yellow, so that the early warning prompt purpose is achieved.
In conclusion, the thermodetector in the embodiment side has a tracing function, so that the thermodetector can measure the body temperature of a human body and can identify personal identity information, the identity information can be uploaded to the cloud center in a manner of being related to body temperature data, time information and position information, and information measured by the thermodetector, such as measured body temperature data, location information and identity information, can be used for accurately tracking epidemic situation contact persons, high-risk groups and asymptomatic patients, so that the defect that the existing thermodetector cannot accurately position and identify the epidemic situation contact persons is overcome, and the purposes of convenient management and epidemic situation prevention and control are achieved.
It should be noted that, in the present specification, the embodiments are all described in a progressive manner, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments may be referred to each other. For simplicity of explanation, the method embodiments are described as a series of acts or combinations, but those skilled in the art will appreciate that the embodiments are not limited by the order of acts described, as some steps may occur in other orders or concurrently with other steps in accordance with the embodiments of the invention.
From the above description of the embodiments, it is obvious for those skilled in the art that the present invention can be implemented by software and necessary general hardware, and certainly, can also be implemented by hardware, but the former is a better embodiment in many cases. It should be noted that, in the smart band and the holographic smart band system, each unit and module included in the smart band and the holographic smart band system are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be realized; in addition, specific names of the functional units are only for convenience of distinguishing from each other, and are not used for limiting the protection scope of the present invention.
It should be understood that portions of the present invention may be implemented in hardware, software, firmware, or a combination thereof. In the above embodiments, the various steps or methods may be implemented in software or firmware stored in memory and executed by a suitable instruction execution system. For example, if implemented in hardware, as in another embodiment, any one or combination of the following techniques, which are known in the art, may be used: a discrete logic circuit having a logic gate circuit for implementing a logic function on a data signal, an application specific integrated circuit having an appropriate combinational logic gate circuit, a Programmable Gate Array (PGA), a Field Programmable Gate Array (FPGA), or the like.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
It is to be noted that the foregoing is only illustrative of the preferred embodiments of the present invention and the technical principles employed. It will be understood by those skilled in the art that the present invention is not limited to the particular embodiments described herein, but is capable of various obvious changes, rearrangements and substitutions as will now become apparent to those skilled in the art without departing from the scope of the invention. Therefore, although the present invention has been described in more detail by the above embodiments, the present invention is not limited to the above embodiments, and may include other equivalent embodiments without departing from the spirit of the present invention, and the scope of the present invention is determined by the scope of the claims.

Claims (10)

1. A thermometer processing system, comprising: the system comprises a temperature sensing module, a processor module, a positioning module, a network communication module, an identity recognition module and an alarm module;
the temperature sensing module is connected with the processor module and used for collecting body temperature data of a detected object and transmitting the body temperature data to the processor module;
the identity recognition module is connected with the processor module and used for recognizing the identity information of the detection object and transmitting the recognized identity information to the processor module;
the positioning module is connected with the processor module and used for acquiring the location information of the detection object and transmitting the location information to the processor module;
the processor module is connected with the network communication module and the alarm module and used for performing association processing according to the body temperature data, the identity information and the location information to obtain association information corresponding to the detection object, uploading the association information to a data center through the network communication module, and triggering the alarm module to output according to received early warning prompt information, wherein the early warning prompt information is obtained by performing data processing according to the association information by the data center.
2. The thermometer processing system of claim 1 wherein said temperature sensing module comprises a temperature sensor;
the temperature sensor is specifically used for measuring the infrared spectrum of the detection object and generating corresponding body temperature data according to the measured infrared spectrum;
the data center is specifically configured to determine a geographic position according to location information in the associated information after receiving the associated information, analyze the body temperature data in combination with detection data corresponding to the geographic position to obtain an analysis result, and determine early warning prompt information corresponding to the body temperature data based on the analysis result.
3. The thermometer processing system of claim 1 further comprising a storage module;
the storage module is connected with the processor module and is used for storing preset temperature interval thresholds, and the temperature interval thresholds comprise an upper temperature threshold and a lower temperature threshold;
the processor module is further used for outputting corresponding alarm information to the alarm module when the body temperature data exceeds the temperature range corresponding to the temperature zone threshold value, so as to trigger the alarm module to output according to the alarm information.
4. The thermometer processing system of claim 1 further comprising a display screen;
the processor module is further used for determining early warning reason information according to the early warning prompt information and transmitting the early warning reason information to the display screen so as to trigger the display screen to display according to the early warning reason information;
the display screen is also used for displaying the body temperature data acquired by the temperature sensing module.
5. The thermometer processing system of claim 4 wherein said alarm module comprises a diode submodule, said diode submodule being coupled to said processor module;
the processor module triggers the alarm module to output according to the received early warning prompt information, and the method comprises the following steps: and the processor module outputs a diode control signal to the diode submodule according to the early warning prompt information so as to control the working state of the diodes in the diode submodule.
6. The thermometer processing system of claim 3 wherein said alarm module comprises a buzzer sub-module, said buzzer sub-module being connected to said processor module;
the processor module triggers the alarm module to output according to the received early warning prompt information, and the method comprises the following steps: the processor module outputs a buzzer control signal to the buzzer submodule according to the early warning prompt information so as to trigger the buzzer submodule to output according to the buzzer control signal.
7. The thermometer processing system of claim 1 wherein said identification module comprises a camera and/or a Near Field Communication (NFC) sub-module;
the identity recognition module recognizes the identity information of the detection object and transmits the recognized identity information to the processor module, and the method comprises the following steps: shooting through the camera, and transmitting image information obtained by shooting to the processor module as the identity information; or, reading information through the NFC submodule, and transmitting the read information serving as the identity information to the processor module.
8. The thermometer processing system of claim 1 wherein said network communication module comprises at least one of: the mobile communication device comprises a Bluetooth module, a mobile communication module and a wireless internet module;
the processor module performs correlation processing according to the body temperature data, the identity information and the location information, and comprises the following steps: when the temperature sensing module collects the body temperature data, time information corresponding to the body temperature data is determined based on system time, and the body temperature data, the identity information and the place information are subjected to correlation processing by combining the time information.
9. A thermometer processing method is characterized in that the method is applied to a thermometer, the thermometer is provided with an identity recognition module, a positioning module and a network communication module, and the method comprises the following steps:
collecting body temperature data of a detected object;
performing association processing according to the body temperature data, the identity information identified by the identity identification module and the location information acquired by the positioning module to obtain association information corresponding to the detection object;
sending the associated information to a data center through the network communication module;
and after early warning prompt information sent by a data center is received, outputting according to the early warning prompt information, wherein the early warning prompt information is obtained by the data center through data processing according to the associated information.
10. A thermometer arranged with a thermometer processing system according to any one of claims 1 to 8.
CN202010560550.4A 2020-06-18 2020-06-18 Temperature measuring instrument processing system and method and temperature measuring instrument Pending CN111521280A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112689123A (en) * 2020-12-17 2021-04-20 上海融恒智能科技有限公司 Intelligent infectious disease early warning system and method
CN112866945A (en) * 2021-01-11 2021-05-28 成戍 Infectious disease prevention, control and traceability system based on sensor network and big data analysis
CN112842282A (en) * 2021-01-07 2021-05-28 林喜国 Temperature measurement control method, device and system and computer readable storage medium
CN114244862A (en) * 2021-10-30 2022-03-25 深圳市巨龙创视科技有限公司 Temperature measurement prevention and control method and system based on cloud data

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112689123A (en) * 2020-12-17 2021-04-20 上海融恒智能科技有限公司 Intelligent infectious disease early warning system and method
CN112842282A (en) * 2021-01-07 2021-05-28 林喜国 Temperature measurement control method, device and system and computer readable storage medium
CN112866945A (en) * 2021-01-11 2021-05-28 成戍 Infectious disease prevention, control and traceability system based on sensor network and big data analysis
CN114244862A (en) * 2021-10-30 2022-03-25 深圳市巨龙创视科技有限公司 Temperature measurement prevention and control method and system based on cloud data

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