CN110916620A - Body temperature measuring method and terminal - Google Patents

Body temperature measuring method and terminal Download PDF

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Publication number
CN110916620A
CN110916620A CN201911042688.9A CN201911042688A CN110916620A CN 110916620 A CN110916620 A CN 110916620A CN 201911042688 A CN201911042688 A CN 201911042688A CN 110916620 A CN110916620 A CN 110916620A
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body temperature
user
detected
measured
temperature data
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解危夷
唐继云
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Shenzhen Everbest Machinery Industry Co ltd
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Shenzhen Everbest Machinery Industry Co ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/01Measuring temperature of body parts ; Diagnostic temperature sensing, e.g. for malignant or inflamed tissue

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Abstract

The application is applicable to the technical field of computers, and provides a body temperature measuring method and a terminal, which comprise the following steps: acquiring a face image of a user to be detected and body temperature data of the user to be detected; acquiring identity information matched with the face image of the user to be detected based on a preset face database; and establishing an incidence relation between the matched identity information and the body temperature data. In the above manner, the terminal acquires the face image of the user to be detected and the body temperature data of the user to be detected, acquires the identity information matched with the face image of the user to be detected, and establishes the association relationship between the identity information and the body temperature data. The identity information of the user to be measured is acquired based on the face image of the user to be measured, and the incidence relation between the identity information and the body temperature data is further established, so that the identity information of the person to be measured can be accurately and quickly determined even when the body temperature data are collected in batches, and the speed of measuring the body temperature is improved.

Description

Body temperature measuring method and terminal
Technical Field
The application belongs to the technical field of computers, and particularly relates to a body temperature measuring method and a terminal.
Background
Currently, campus security can be a most concern of the whole society, especially the health of students. Due to the fact that a large number of places with intensive personnel activities exist in the campus, the campus brings very convenient spreading conditions for wide-spread, epidemic and infectious diseases, and the diseases threaten the health of students.
To keep these diseases and threats away from campuses and students, the best approach is to prevent them in advance. Since the initial symptoms of these diseases are usually manifested as fever, daily body temperature measurements to school are one of the good preventive measures.
However, when the existing body temperature measurement method collects temperature data in batches, the collection speed is slow, and the identity information of a tested person cannot be determined.
Disclosure of Invention
In view of this, the embodiment of the present application provides a body temperature measurement method and a terminal, so as to solve the problem that the existing body temperature measurement method is slow in acquisition speed and cannot determine the identity information of a person to be measured when acquiring temperature data in batches.
A first aspect of an embodiment of the present application provides a body temperature measurement method, including:
acquiring a face image of a user to be detected and body temperature data of the user to be detected;
acquiring identity information matched with the face image of the user to be detected based on a preset face database;
establishing an association between the matched identity information and the body temperature data
Further, in order to accurately acquire the body temperature data of the user to be measured, acquiring the face image of the user to be measured and the body temperature data of the user to be measured may include:
acquiring a face image of a user to be detected;
determining a temperature region to be measured based on the face image; the temperature area to be measured is an area where the forehead of the user to be measured is located;
and acquiring the body temperature data measured by the body temperature gun aiming at the area to be measured.
Further, in order to accurately and quickly acquire the body temperature data of the user to be measured, before acquiring the body temperature data measured by the body temperature gun for the temperature area to be measured, the method further comprises the following steps:
measuring a target distance between the current user and the face of the user to be detected;
when the target distance is detected to be within a preset distance range and a probe identification point corresponding to the body temperature gun is detected in the temperature area to be measured, the body temperature data measured by the body temperature gun aiming at the temperature area to be measured is obtained;
when the target distance is detected not to belong to the preset distance range or a probe identification point corresponding to the body temperature gun is not detected in the temperature area to be detected, prompt information is generated; the prompt information is used for prompting the user to be detected to adjust the face position.
Further, in order to facilitate the user to view the identity information and the measured body temperature data, after the association relationship between the matched identity information and the body temperature data is established, the method further includes:
determining target physiological state information corresponding to the body temperature data based on a preset corresponding relation between a preset standard body temperature range and preset physiological state information; the preset physiological state information is information representing the physical health condition of the user;
and generating the health information of the user to be detected based on the matched identity information, the body temperature data and the target physiological state information.
Further, in order to facilitate viewing the historical health status of a certain user, the method further comprises the following steps:
acquiring health information of any one user to be tested in a first preset time period; the health information comprises the measurement time of each body temperature measurement of the user to be measured in the first preset time period and body temperature data corresponding to each measurement time;
generating a body temperature trend analysis chart based on the identity information of the user to be measured, each measurement time and each body temperature data; the body temperature trend analysis graph is used for displaying the body temperature change trend of the user to be tested in the first preset time period.
Further, in order to facilitate viewing the health status distribution of all users in a certain time period, the method further includes: acquiring health information of each user to be detected in a second preset time period; the health information comprises body temperature data obtained by measuring the body temperature of each user to be measured in the second preset time period and target physiological state information corresponding to each body temperature data; counting the number of users to be tested in the second preset time period, and acquiring the highest temperature and the lowest temperature in the second preset time period; classifying all the target physiological state information in the second preset time period to obtain a classification result; drawing a body temperature analysis map based on the classification results, the quantity, the maximum temperature, and the minimum temperature; the body temperature analysis chart is a health condition distribution chart of all users to be tested in the second preset time period.
Further, in order to facilitate the viewing of users with abnormal health status within a certain time period, the method also comprises the following steps; acquiring target physiological state information of all users to be detected within a third preset time period; screening out target physiological state information of users with abnormal physiological states from the target physiological state information of all users to be detected, and marking the users to be detected with abnormal physiological states as abnormal users; acquiring the identity information of the abnormal user, and generating an abnormal list based on the identity information of the abnormal user and the target physiological state information of the abnormal user; and the abnormal list is used for the user to check the abnormal users in the third preset time period.
A second aspect of an embodiment of the present invention provides a body temperature measurement terminal, including:
the device comprises a first acquisition unit, a second acquisition unit and a control unit, wherein the first acquisition unit is used for acquiring a face image of a user to be detected and body temperature data of the user to be detected;
the second acquisition unit is used for acquiring identity information matched with the face image of the user to be detected based on a preset face database;
and the establishing unit is used for establishing the association relationship between the matched identity information and the body temperature data.
Further, the first obtaining unit is specifically configured to obtain a face image of a user to be detected;
determining a temperature region to be measured based on the face image; the temperature area to be measured is an area where the forehead of the user to be measured is located;
and acquiring the body temperature data measured by the body temperature gun aiming at the area to be measured.
Further, the terminal further includes:
the measuring unit is used for measuring the target distance between the current face and the face of the user to be measured;
the first detection unit is used for acquiring the body temperature data measured by the body temperature gun aiming at the temperature area to be measured when the target distance is detected to be within a preset distance range and the probe identification point corresponding to the body temperature gun is detected in the temperature area to be measured;
the second detection unit is used for generating prompt information when the target distance is detected not to belong to the preset distance range or the probe identification point corresponding to the body temperature gun is not detected in the temperature area to be detected; the prompt information is used for prompting the user to be detected to adjust the face position.
Further, the terminal further includes:
the determining unit is used for determining target physiological state information corresponding to the body temperature data based on a preset corresponding relation between a preset standard body temperature range and preset physiological state information; the preset physiological state information is information representing the physical health condition of the user;
and the first generating unit is used for generating the health information of the user to be detected based on the matched identity information, the body temperature data and the target physiological state information.
Further, the terminal further includes:
the third acquisition unit is used for acquiring the health information of any one user to be detected in a first preset time period; the health information comprises the measurement time of each body temperature measurement of the user to be measured in the first preset time period and body temperature data corresponding to each measurement time;
the second generating unit is used for generating a body temperature trend analysis chart based on the identity information of the user to be measured, each measuring time and each body temperature data; the body temperature trend analysis graph is used for displaying the body temperature change trend of the user to be tested in the first preset time period.
Further, the terminal further includes:
the fourth acquisition unit is used for acquiring the health information of each user to be detected in a second preset time period; the health information comprises body temperature data obtained by measuring the body temperature of each user to be measured in the second preset time period and target physiological state information corresponding to each body temperature data;
the counting unit is used for counting the number of the users to be measured in the second preset time period and acquiring the highest temperature and the lowest temperature in the second preset time period;
the classification unit is used for classifying all the target physiological state information in the second preset time period to obtain a classification result;
a drawing unit for drawing a body temperature analysis chart based on the classification result, the number, the maximum temperature, and the minimum temperature; the body temperature analysis chart is a health condition distribution chart of all users to be tested in the second preset time period.
Further, the terminal further includes:
the fifth acquisition unit is used for acquiring target physiological state information of all users to be detected within a third preset time period;
the screening unit is used for screening the target physiological state information of the user with abnormal physiological state from the target physiological state information of all the users to be detected, and marking the user to be detected with abnormal physiological state as an abnormal user;
the third generation unit is used for acquiring the identity information of the abnormal user and generating an abnormal list based on the identity information of the abnormal user and the target physiological state information of the abnormal user; and the abnormal list is used for the user to check the abnormal users in the third preset time period.
A third aspect of an embodiment of the present invention provides another terminal, including a processor, an input device, an output device, and a memory, where the processor, the input device, the output device, and the memory are connected to each other, where the memory is used to store a computer program that supports the terminal to execute the above method, where the computer program includes program instructions, and the processor is configured to call the program instructions and execute the following steps:
acquiring a face image of a user to be detected and body temperature data of the user to be detected;
acquiring identity information matched with the face image of the user to be detected based on a preset face database;
and establishing an incidence relation between the matched identity information and the body temperature data.
A fourth aspect of embodiments of the present invention provides a computer-readable storage medium storing a computer program which, when executed by a processor, implements the steps of:
acquiring a face image of a user to be detected and body temperature data of the user to be detected;
acquiring identity information matched with the face image of the user to be detected based on a preset face database;
and establishing an incidence relation between the matched identity information and the body temperature data.
The body temperature measuring method and the terminal provided by the embodiment of the application have the following beneficial effects: according to the embodiment of the application, the face image of the user to be detected and the body temperature data of the user to be detected are obtained through the terminal, the identity information matched with the face image of the user to be detected is obtained, and the incidence relation between the identity information and the body temperature data is established. Because the identity information of the user to be measured is acquired based on the face image of the user to be measured, and the incidence relation between the identity information and the body temperature data is further established, the identity information of the person to be measured and the body temperature data of the user to be measured can be accurately and quickly determined even when the body temperature data are collected in batches, and the speed and the accuracy of body temperature measurement are improved; and the identity information of the user to be tested is well corresponded with the body temperature data, so that the user can conveniently check the identity information.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or the prior art descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without inventive exercise.
FIG. 1 is a flowchart illustrating an implementation of a body temperature measurement method according to an embodiment of the present disclosure;
FIG. 2 is a flow chart of a body temperature measurement method according to another embodiment of the present application;
FIG. 3 is a schematic view of a body temperature measurement terminal according to an embodiment of the present application;
fig. 4 is a schematic view of a body temperature measurement terminal according to another embodiment of the present application.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present application and are not intended to limit the present application.
Referring to fig. 1, fig. 1 is a schematic flow chart of a body temperature measurement method according to an embodiment of the present invention. In this embodiment, the main execution body of the body temperature measurement method is a terminal, and includes but is not limited to a mobile terminal such as a smart phone, a tablet computer, and a Personal Digital Assistant (PDA). The body temperature measurement method as shown in fig. 1 may include:
s101: the method comprises the steps of obtaining a face image of a user to be detected and body temperature data of the user to be detected.
The terminal obtains a face image of a user to be detected and body temperature data of the user to be detected. Specifically, the terminal starts a camera to detect a face, when the face of the user to be detected is not detected, prompt information of 'no face detected' is generated and displayed on a terminal display interface, and the prompt information is used for reminding the user to adjust the position. When the terminal detects the face of a user to be detected, acquiring a face image of the user to be detected; meanwhile, the terminal collects body temperature data of the user to be measured. Specifically, the terminal determines a temperature region to be measured according to the face image, and obtains body temperature data measured by the body temperature gun aiming at the temperature region to be measured; the temperature measuring area refers to an area where the forehead of the user to be measured is located.
Furthermore, when the terminal collects the face image of the user to be detected, the face feature data contained in the face image can be collected, so that the subsequent terminal can rapidly identify the user identity information corresponding to the face image.
It is worth mentioning that, in the embodiment, the body temperature of the user to be measured can be obtained while the face image of the user to be measured is obtained. For example, the body temperature gun is provided with a measurement key, and after a user presses the measurement key, the terminal can acquire a face image of the user to be measured, and meanwhile, the body temperature gun can also acquire the body temperature of the user to be measured. The measurement key may be a physical key or a touch key, which is not limited herein.
When the terminal does not accurately detect the face image of the user to be measured and the probe identification point corresponding to the body temperature gun is not in the temperature area to be measured, the user presses the measurement key, and the terminal can generate prompt information to prompt the user to measure again; for example, the prompt message at this time may be: if the face image is not collected, please measure again. The temperature measuring area is an area where the forehead of the user to be measured is located. When the terminal detects a face image of a user to be measured and a probe identification point corresponding to the body temperature gun is not in a temperature-to-be-measured area, the user presses a measurement key, and the terminal can generate prompt information to prompt the user to adjust the face position; for example, the prompt message at this time may be: the position of the whole thermometer is regulated to ensure that the probe identification point corresponding to the thermometer is measured in the area to be measured. When the terminal not only accurately detects the face image of the user to be measured, but also detects that the probe identification point corresponding to the thermo gun is in the area to be measured, the user presses the measuring key at the moment to obtain the face image of the user to be measured and the body temperature data of the user to be measured, the terminal can upload the image and the body temperature data to the server, and meanwhile, the terminal can also store the image and the body temperature data to the local database.
Further, in order to accurately acquire the body temperature data of the user to be measured, S101 may include S1011 to S1013, specifically as follows:
s1011: and acquiring a face image of the user to be detected.
The terminal acquires a face image of a user to be detected. Specifically, the terminal starts a camera to detect a face, when the face of the user to be detected is not detected, prompt information of 'no face detected' is generated and displayed on a terminal display interface, and the prompt information is used for reminding the user to adjust the position. When the terminal detects the face of a user to be detected, the face image of the user to be detected is collected. The content of the prompt message can be customized by the user, and is not limited to this.
S1012: determining a temperature region to be measured based on the face image; the temperature area to be measured is the area where the forehead of the user to be measured is located.
The terminal determines a temperature-to-be-measured area based on the face head portrait; the temperature measuring area is an area where the forehead of the user to be measured is located. Specifically, the terminal adopts a face recognition technology, the area where the face is located can be determined according to the collected face image, and the area where the face is located is determined through a preset method. For example, the terminal may take a preset region from a preset position as an initial position in the region where the face is located, and mark the preset region as a temperature measurement region. For example, the terminal may take a third area from the top of the area where the face is located, and mark the third area as the area to be measured. The terminal can also acquire forehead feature data of the user to be detected from the face image, determine the region of the forehead in the face image according to the acquired forehead feature data, and mark the region as a temperature region to be detected.
S1013: and acquiring the body temperature data measured by the body temperature gun aiming at the area to be measured.
The terminal obtains body temperature data obtained by measuring the body temperature gun aiming at the area to be measured. The body temperature gun is used for measuring the forehead temperature of a user to be measured to obtain body temperature data of the user to be measured; when the body temperature gun is used, a corresponding probe identification point is arranged, when the probe identification point is aligned to the forehead area of a user, a probe identification point can be displayed in the forehead area, and the body temperature of the user to be measured can be measured by pressing a measuring key. In order to facilitate measurement and ensure accurate measured body temperature data, the body temperature gun used in the application is a high-precision non-contact infrared body temperature gun; the present disclosure is only exemplary, and other body temperature guns for measuring body temperature may be used in the present disclosure, and are not limited thereto. In order to measure the body temperature data of the user to be measured conveniently, the body temperature gun and the terminal can be fixed on the same bracket, and the body temperature gun and the terminal can also be fixed at preset positions respectively; when the body temperature gun and the terminal are fixed on the same support, the body temperature gun and the terminal can be in the same plane or in tandem. For example, the body temperature gun is fixed with the mobile phone in a mode of a mobile phone selfie stick, the rear end of the body temperature gun is provided with a support, the mobile phone can be fixed on the support, and the position relation between the body temperature gun and the mobile phone is in tandem; the user can adjust the position according to the actual situation, and the position is not limited. The body temperature gun is connected with the terminal through Bluetooth, a wireless network, a wired network and the like, so that data interaction can be carried out between the body temperature gun and the terminal.
The terminal measures the distance between the terminal and the face of a user to be measured, judges whether the distance is within the measurement range of the body temperature gun, further detects whether a probe identification point corresponding to the body temperature gun is in a temperature area to be measured when the distance is within the measurement range of the body temperature gun, measures the body temperature of the user to be measured by the body temperature gun to obtain body temperature data when the probe identification point is detected to be in the temperature area to be measured, namely the probe identification point is at the forehead of the user to be measured, and sends the body temperature data to the terminal, and the terminal receives the body temperature data sent by the body temperature gun.
Further, in order to accurately and quickly acquire the body temperature data of the user to be measured, S1014-1016 may be further included after S1012 and before S1013, specifically as follows:
s1014: and measuring the target distance between the current user and the face of the user to be detected.
The terminal measures the target distance between the current user face and the face of the user to be measured, and whether the position of the face of the user is within the measuring range of the body temperature gun for measuring the body temperature of the user can be judged according to the target distance. Specifically, the terminal measures the target distance between the current user face and the user face to be measured, and the terminal obtains the size of the area occupied by the user face to be measured on the terminal display interface; acquiring the area size of a terminal display interface; and calculating the ratio of the area size occupied by the face of the user on the terminal display interface to the area size of the terminal display interface, searching the distance corresponding to the ratio, and recording the searched distance as the target distance. Generally, the larger the area occupied by the face of the user to be detected on the terminal display interface is, the closer the user to be detected is to the terminal camera; the smaller the area occupied by the face of the user to be detected on the terminal display interface is, the farther the user to be detected is from the terminal camera. The database stores respective corresponding distances of different proportions in advance, wherein the proportions refer to the proportion between the area size occupied by the face of the user to be detected on the terminal display interface and the area size of the terminal display interface. The user can set and adjust the corresponding relation between the proportions and the distance according to the actual situation, and the method is not limited.
Further, the terminal may measure the target distance between the current user and the face of the user to be measured, the terminal first obtains the eye position of the user to be measured and marks the eye position, transmits an infrared signal to the eye position through a sensor in the terminal, receives a reflected signal of the infrared signal, calculates a time difference between transmission time for transmitting the infrared signal and reception time for receiving the reflected signal, and multiplies the time difference by the light speed to divide by 2 to obtain the target distance. The terminal can also measure the target distance between the terminal and the face of the user to be measured through the camera.
S1015: and when the target distance is detected to be within a preset distance range and the probe identification point corresponding to the body temperature gun is detected in the temperature area to be measured, the body temperature data measured by the body temperature gun aiming at the temperature area to be measured is obtained.
The preset distance range refers to the distance range within which the body temperature gun can accurately measure body temperature data of a user, and is set by the user according to the measurement distances of different body temperature guns; furthermore, in order to enable the measured body temperature data to be more accurate, a user can use the fixed position of the body temperature gun and the terminal as a reference in the preset distance range, and the preset distance range is properly adjusted; for example, the distance is increased or decreased by several centimeters within a distance range measurable by the body temperature gun itself, and the value after the distance is increased or decreased is taken as a preset distance range. The user can set according to the actual situation, and the setting is not limited.
The terminal detects whether the target distance belongs to a preset distance range, and when the target distance is detected to be within the preset distance range, the probe identification point corresponding to the body temperature gun is detected to be in a temperature area to be detected; if the probe identification point corresponding to the body temperature gun is in the area to be measured, the terminal acquires body temperature data measured by the body temperature gun aiming at the area to be measured. For example, the preset distance range is 5CM-15CM, the target distance is 12CM, and the terminal detects that the target distance 12CM is within the preset distance range of 5CM-15 CM; at the moment, the terminal detects whether a probe identification point corresponding to the body temperature gun exists in the area to be measured, and when the probe identification point corresponding to the body temperature gun exists in the area to be measured, the terminal acquires body temperature data measured by the body temperature gun aiming at the area to be measured.
Further, when the terminal detects that the target distance is within the preset distance range, the user can also manually observe whether the forehead of the user to be detected, namely the probe identification point corresponding to the body temperature gun exists in the temperature area to be detected; if the temperature data is available, the body temperature gun presses down a measuring key on the body temperature gun to measure the body temperature of the user to be measured to obtain body temperature data, the body temperature gun sends the body temperature data of the user to be measured to the terminal, and the terminal receives the body temperature data sent by the body temperature gun.
S1016: when the target distance is detected not to belong to the preset distance range or a probe identification point corresponding to the body temperature gun is not detected in the temperature area to be detected, prompt information is generated; the prompt information is used for prompting the user to be detected to adjust the face position.
The terminal detects whether the target distance is within a preset distance range, and when the target distance is detected not to be within the preset distance range, prompt information is generated; or when the terminal detects that no probe identification point corresponding to the body temperature gun exists in the area to be measured, prompt information is generated. The prompt information is used for prompting a user to be detected to adjust the face position; for example, the prompt message may be "the current distance is too far", "please adjust the face position", "no probe identification point is detected", etc., which is merely an exemplary illustration and is not limited thereto.
It should be noted that, instead of performing S1016 after S1015, the terminal performs S1015 or S1016 according to different execution results after performing S1014. It is to be noted that, after performing S1016, the user may perform S1015 after adjusting the face position. The specific conditions are subject to, and are not limited to.
S102: and acquiring identity information matched with the face image of the user to be detected based on a preset face database.
And the terminal acquires identity information matched with the face image of the user to be detected based on a preset face database. The preset face database stores a large number of face images of users and identity information of the users corresponding to each face image in advance. The terminal matches the face image of the user to be detected with a face image pre-stored in a face database, and when the face image in the face database is matched with the face image of the user to be detected, the identity information of the user corresponding to the face image in the face database is obtained. The preset face database can be a local database or a non-local database.
Further, the terminal can also send the face image of the user to be detected to the cloud end; the database of the cloud pre-stores a large number of face images of users and identity information of the user corresponding to each face image. The cloud end receives the face image of the user to be detected sent by the terminal, searches the face image matched with the face image of the user to be detected in the database, and acquires the identity information of the user corresponding to the image when the image matched with the face image of the user to be detected is searched in the database. The cloud sends the acquired identity information corresponding to the face image of the user to be detected to the terminal, and the terminal receives the identity information. The identity information is used for representing the identity of the user to be detected, the identity information may include information such as a name, an identity card number, a contact way, a photo, a school number, a class and the like, and the user may adjust, add, delete and the like the identity information according to actual conditions, which is not limited.
S103: and establishing an incidence relation between the matched identity information and the body temperature data.
And the terminal establishes an incidence relation between the matched identity information and the body temperature data. Specifically, the terminal associates and stores the acquired identity information matched with the face image of the user to be detected and the body temperature data of the user to be detected.
Furthermore, the terminal can display the associated identity information and the body temperature data on a terminal display interface, so that the body temperature data of the user to be tested can be conveniently and timely checked by the user to be tested. Because the association relationship between the identity information and the body temperature data is established, any user can know which user the body temperature data is when looking over the body temperature data.
According to the embodiment of the application, the face image of the user to be detected and the body temperature data of the user to be detected are obtained through the terminal, the identity information matched with the face image of the user to be detected is obtained, and the incidence relation between the identity information and the body temperature data is established. Because the identity information of the user to be measured is acquired based on the face image of the user to be measured, and the incidence relation between the identity information and the body temperature data is further established, the identity information of the person to be measured and the body temperature data of the user to be measured can be accurately and quickly determined even when the body temperature data are collected in batches, and the speed and the accuracy of body temperature measurement are improved; and the identity information of the user to be tested is well corresponded with the body temperature data, so that the user can conveniently check the identity information.
Referring to fig. 2, fig. 2 is a schematic flow chart of a body temperature measurement method according to another embodiment of the present invention. In this embodiment, the main execution body of the body temperature measurement method is a terminal, including but not limited to a mobile terminal such as a smart phone, a tablet computer, and a personal digital assistant.
The differences between this embodiment and the embodiment corresponding to fig. 1 are S204 to S214, where S201 to S203 in this embodiment are completely the same as S101 to S103 in the embodiment corresponding to fig. 1, and please refer to the description related to S101 to S103 in the embodiment corresponding to fig. 1, which is not repeated herein.
In order to facilitate the user to view the identity information and the measured body temperature data, this embodiment may further include S204-S205, which are as follows:
s204: determining target physiological state information corresponding to the body temperature data based on a preset corresponding relation between a preset standard body temperature range and preset physiological state information; the preset physiological state information is information representing the physical health condition of the user.
The user can preset the preset corresponding relation between the preset standard body temperature range and the preset physiological state information, different body temperatures correspond to different preset physiological states, the terminal can judge whether the body temperature data belong to the preset standard body temperature range, and the target physiological state information corresponding to the body temperature data is determined according to different judgment results. The preset physiological state information is information representing the physical health condition of the user, and different preset physiological state information can be set according to different body temperature data. The preset physiological status information may be normal, fever, etc., and is only an exemplary illustration and is not limited thereto.
For example, the preset standard body temperature range is 36.3-37.2 ℃, the body temperature data of the user to be tested acquired by the terminal is 37 ℃, and the target physiological state information corresponding to the body temperature data is normal if the body temperature data belongs to the preset standard body temperature range. When the body temperature data of the user to be detected, which is acquired by the terminal, is 38 ℃, and the body temperature data does not belong to the preset standard body temperature range, the target physiological state information corresponding to the body temperature data is fever. Furthermore, when the user has fever, measures are taken in time to ensure the health of the user in order to more accurately know which fever type the user belongs to; a low fever body temperature range, a middle fever body temperature range, a high fever body temperature range and the like can also be set; accordingly, the preset physiological state information includes low fever, medium fever, high fever, and the like. When the terminal determines that the user to be tested has fever, the body temperature data of the user to be tested is further judged to belong to which fever range, so that the specific fever type of the user is obtained.
S205: and generating the health information of the user to be detected based on the matched identity information, the body temperature data and the target physiological state information.
And the terminal generates the health information of the user to be detected according to the identity information matched with the face image of the user to be detected, the body temperature data of the user to be detected and the target physiological state information corresponding to the body temperature data. The health information can comprise identity information, body temperature data, target physiological state information, measurement time, measurement times and the like of the user to be measured, and the current and previous health states of the user to be measured can be known by checking the health information of the user to be measured.
Further, in order to facilitate viewing the historical health status of a certain user, S206-S207 may be further included after S205, specifically as follows:
s206: acquiring health information of any one user to be tested in a first preset time period; the health information comprises the measurement time of each body temperature measurement of the user to be measured in the first preset time period and body temperature data corresponding to each measurement time.
The terminal acquires the health information of any user to be detected within a first preset time period; the health information comprises the measurement time of each body temperature measurement of the user to be measured in a first preset time period and body temperature data corresponding to each measurement time. The first preset time period may be preset by the user according to actual conditions, for example, the first preset time period may be set to 8: 00-20: 00, the number may be from the first day of a week to the last day of the week, which is only an exemplary description and is not limited thereto. When the first preset time period is 8: 00-20: 00, the terminal acquires the health information of the user to be detected on the day, namely acquiring the health information of the user to be detected on the day 8: 00-20: 00 the measurement time of each body temperature measurement in the time period, and body temperature data corresponding to each measurement time. The description is given for illustrative purposes only and is not intended to be limiting.
S207: generating a body temperature trend analysis chart based on the identity information of the user to be measured, each measurement time and each body temperature data; the body temperature trend analysis graph is used for displaying the body temperature change trend of the user to be tested in the first preset time period.
And the terminal generates a body temperature trend analysis chart of the user to be detected according to the identity information of the user to be detected, each measurement time in the first preset time period and each body temperature data obtained by measurement in the first preset time period. The body temperature trend analysis chart is used for showing the body temperature change trend of the user to be tested in a first preset time period. The terminal draws a body temperature change graph according to body temperature data measured by the user in a first preset time period, marks the body temperature data in each body temperature change node and the measurement time corresponding to the body temperature data, marks the identity information of the user to be measured in the graph, such as name, age, sex, class and the like, and generates a body temperature trend analysis graph of the user to be measured. The user can intuitively and clearly know how the body temperature of the user to be measured changes in the first preset time period by checking the body temperature trend analysis chart, and know information such as the highest temperature and the lowest temperature of the user to be measured in the first preset time period, the measurement time of each measurement and the like.
Further, in order to facilitate viewing the health status distribution of all users in a certain time period, the embodiment of the present application may further include S208-S211 after S205 or S207, specifically as follows:
s208: acquiring health information of each user to be detected in a second preset time period; the health information comprises body temperature data obtained by measuring the body temperature of each user to be measured in the second preset time period and target physiological state information corresponding to each body temperature data.
The terminal acquires the health information of all users to be detected within a second preset time period; the health information comprises body temperature data obtained by measuring the body temperature of all users to be measured in the time period and target physiological state information corresponding to each body temperature data. The second preset time period may be preset by the user according to actual conditions, for example, the second preset time period may be set to 7: 00-8: 00, or 10: 00-12: 00, which are given here as illustrative examples only and are not limiting. When the second preset time period is 7: 00-8: and 00, the terminal acquires body temperature data obtained by measuring the body temperature of all users to be measured in the time period, and acquires target physiological state information corresponding to each body temperature data. In order to facilitate accurate statistics of the health status of all users in the time period, the target physiological status information may include normal fever, low fever, medium fever, high fever, and the like. It should be noted that the first preset time period may be the same as the second preset time period, or may be different from the second preset time period, and the first preset time period is set by the user according to actual needs, which is not limited to this.
S209: and counting the number of the users to be tested in the second preset time period, and acquiring the highest temperature and the lowest temperature in the second preset time period.
And the terminal counts the number of the users to be measured in the second preset time period, namely confirms how many users measure the body temperature data in the second preset time period. And screening the highest temperature and the lowest temperature from the acquired body temperature data in the time period by the terminal, extracting the highest temperature and the lowest temperature, and respectively marking the highest temperature and the lowest temperature.
S210: and classifying all the target physiological state information in the second preset time period to obtain a classification result.
The terminal classifies all the target physiological state information in a second preset time period to obtain a classification result; specifically, the terminal classifies each target physiological state information into different types according to the difference of the target physiological state information. For example, if the target physiological state information is normal, the target physiological state information is classified as normal; if the target physiological state information is low fever, classifying the target physiological state information into low fever; if the target physiological state information is Zhongshao, classifying the target physiological state information into the class of Zhongshao; and if the target physiological state information is high fever, classifying the target physiological state information into high fever. And the terminal counts the number of the target physiological state information corresponding to each type, calculates the percentage of each type according to the number of the users to be detected in the second preset time period obtained by the previous statistics, and marks the percentage. For example, the number of the users to be tested in the second preset time period is counted as 16, the normal number of the users to be tested is counted as 12, the low-burning number of the users is counted as 2, the medium-burning number of the users is counted as 1, the high-burning number of the users is counted as 1, and the calculated corresponding percentages are 75%, 12.5%, 6.25% and 6.25%, respectively.
S211: drawing a body temperature analysis map based on the classification results, the quantity, the maximum temperature, and the minimum temperature; the body temperature analysis chart is a health condition distribution chart of all users to be tested in the second preset time period.
And the terminal draws a body temperature analysis chart based on the classification result, the number of the users to be detected in the second preset time period, the highest temperature and the lowest temperature. The body temperature analysis chart is a health condition distribution chart of all users to be tested in a second preset time period. Namely, the terminal draws a body temperature analysis chart according to the classification result of the target physiological state information, and indicates the number of people with normal fever, low fever, middle fever and high fever, the total number of people measuring the body temperature in a second preset time period, the highest temperature, the lowest temperature and the like in the body temperature analysis chart. Further, in order to make the drawn body temperature analysis chart look more intuitive, different colors can be filled in the types of normal fever, low fever, medium fever and high fever respectively when the body temperature analysis chart is drawn. The user can intuitively and clearly know how many users measure the body temperature in the second preset time period, how many the highest body temperature is and how many the lowest body temperature is in the measurement result, and the health distribution condition of the user in the time period by checking the body temperature analysis chart.
Further, in order to facilitate viewing of a user with abnormal health status within a certain time period, the embodiment of the present application may further include S212-S214 after S205, or after S207, or after S211, specifically as follows:
s212: and acquiring target physiological state information of all users to be detected in a third preset time period.
And the terminal acquires the target physiological state information of all users to be detected in a third preset time period. The third preset time period may be preset by the user according to actual conditions, for example, the third preset time period may be set to 6: 00-9: 30, or 10: 00-12: 30, which are given here by way of illustration only and are not limiting. When the third preset time period is 6: 00-9: and 30, the terminal acquires target physiological state information corresponding to the body temperature data of all the users to be tested in the time period. It should be noted that the third preset time period may be the same as the first preset time period and the second preset time period, or may be different from the first preset time period and the second preset time period, and is set by the user according to actual needs, which is not limited to this.
S213: and screening the target physiological state information of the user with abnormal physiological state from the target physiological state information of all users to be detected, and marking the user with abnormal physiological state as an abnormal user.
The terminal screens out target physiological state information of users with abnormal physiological states from the target physiological state information of all users to be tested; the user with abnormal physiological state refers to a user with abnormal physiological state, namely a user with low fever, medium fever and high fever as target physiological state information. And after the terminal acquires the target physiological state information of all users to be detected within a third preset time period, removing the users with abnormal physiological states to obtain the target physiological state information of the users with abnormal physiological states, and marking the users to be detected with abnormal physiological states as abnormal users.
S214: acquiring the identity information of the abnormal user, and generating an abnormal list based on the identity information of the abnormal user and the target physiological state information of the abnormal user; and the abnormal list is used for the user to check the abnormal users in the third preset time period.
The terminal acquires the identity information of the abnormal users and generates an abnormal list according to the identity information of the abnormal users and the target physiological state information of the abnormal users. The abnormal list can comprise names, pictures, school numbers, classes, body temperature data, target physiological state information, measurement time and the like of the abnormal users, and the abnormal list is used for the users to check the abnormal users in a third preset time period, and identity information, body temperature data, physiological states and the like of the abnormal users, so that the users can take corresponding treatment measures for the abnormal users in time, and the physical health of the users is guaranteed.
It should be noted that, in this embodiment, S206-S207, S208-S211, and S212-S214 may all be executed after S205, and the number does not limit the execution sequence, and the specific execution manner is subject to actual implementation, which is not limited herein.
According to the embodiment of the application, the face image of the user to be detected and the body temperature data of the user to be detected are obtained through the terminal, the identity information matched with the face image of the user to be detected is obtained, and the incidence relation between the identity information and the body temperature data is established. Because the identity information of the user to be measured is acquired based on the face image of the user to be measured, and the incidence relation between the identity information and the body temperature data is further established, the identity information of the person to be measured and the body temperature data of the user to be measured can be accurately and quickly determined even when the body temperature data are collected in batches, and the speed and the accuracy of body temperature measurement are improved; and the identity information of the user to be tested is well corresponded with the body temperature data, so that the user can conveniently check the identity information.
Referring to fig. 3, fig. 3 is a schematic view of a body temperature measuring terminal according to an embodiment of the present application. The terminal includes units for executing the steps in the embodiments corresponding to fig. 1 and fig. 2. Please refer to fig. 1 and fig. 2 for the corresponding embodiments. For convenience of explanation, only the portions related to the present embodiment are shown. Referring to fig. 3, comprising:
a first obtaining unit 310, configured to obtain a face image of a user to be measured and body temperature data of the user to be measured;
a second obtaining unit 320, configured to obtain, based on a preset face database, identity information matched with a face image of the user to be detected;
an establishing unit 330, configured to establish an association relationship between the matched identity information and the body temperature data.
Further, the first obtaining unit 310 is specifically configured to obtain a face image of a user to be detected;
determining a temperature region to be measured based on the face image; the temperature area to be measured is an area where the forehead of the user to be measured is located;
and acquiring the body temperature data measured by the body temperature gun aiming at the area to be measured.
Further, the terminal further includes:
the measuring unit is used for measuring the target distance between the current face and the face of the user to be measured;
the first detection unit is used for acquiring the body temperature data measured by the body temperature gun aiming at the temperature area to be measured when the target distance is detected to be within a preset distance range and the probe identification point corresponding to the body temperature gun is detected in the temperature area to be measured;
the second detection unit is used for generating prompt information when the target distance is detected not to belong to the preset distance range or the probe identification point corresponding to the body temperature gun is not detected in the temperature area to be detected; the prompt information is used for prompting the user to be detected to adjust the face position.
Further, the terminal further includes:
the determining unit is used for determining target physiological state information corresponding to the body temperature data based on a preset corresponding relation between a preset standard body temperature range and preset physiological state information; the preset physiological state information is information representing the physical health condition of the user;
and the first generating unit is used for generating the health information of the user to be detected based on the matched identity information, the body temperature data and the target physiological state information.
Further, the terminal further includes:
the third acquisition unit is used for acquiring the health information of any one user to be detected in a first preset time period; the health information comprises the measurement time of each body temperature measurement of the user to be measured in the first preset time period and body temperature data corresponding to each measurement time;
the second generating unit is used for generating a body temperature trend analysis chart based on the identity information of the user to be measured, each measuring time and each body temperature data; the body temperature trend analysis graph is used for displaying the body temperature change trend of the user to be tested in the first preset time period.
Further, the terminal further includes:
the fourth acquisition unit is used for acquiring the health information of each user to be detected in a second preset time period; the health information comprises body temperature data obtained by measuring the body temperature of each user to be measured in the second preset time period and target physiological state information corresponding to each body temperature data;
the counting unit is used for counting the number of the users to be measured in the second preset time period and acquiring the highest temperature and the lowest temperature in the second preset time period;
the classification unit is used for classifying all the target physiological state information in the second preset time period to obtain a classification result;
a drawing unit for drawing a body temperature analysis chart based on the classification result, the number, the maximum temperature, and the minimum temperature; the body temperature analysis chart is a health condition distribution chart of all users to be tested in the second preset time period.
Further, the terminal further includes:
the fifth acquisition unit is used for acquiring target physiological state information of all users to be detected within a third preset time period;
the screening unit is used for screening the target physiological state information of the user with abnormal physiological state from the target physiological state information of all the users to be detected, and marking the user to be detected with abnormal physiological state as an abnormal user;
the third generation unit is used for acquiring the identity information of the abnormal user and generating an abnormal list based on the identity information of the abnormal user and the target physiological state information of the abnormal user; and the abnormal list is used for the user to check the abnormal users in the third preset time period.
Referring to fig. 4, fig. 4 is a schematic view of a body temperature measuring terminal according to another embodiment of the present application. As shown in fig. 4, the terminal 4 of this embodiment includes: a processor 40, a memory 41, and computer readable instructions 42 stored in the memory 41 and executable on the processor 40. The processor 40, when executing the computer readable instructions 42, implements the steps in the above-described embodiments of the terminal body temperature measurement method, such as S101 to S103 shown in fig. 1. Alternatively, the processor 40, when executing the computer readable instructions 42, implements the functions of the units in the embodiments described above, such as the functions of the units 310 to 330 shown in fig. 3.
Illustratively, the computer readable instructions 42 may be divided into one or more units, which are stored in the memory 41 and executed by the processor 40 to accomplish the present application. The one or more elements may be a series of computer readable instruction segments capable of performing certain functions, which are used to describe the execution of the computer readable instructions 42 in the terminal 4. For example, the computer readable instructions 42 may be provided by a first acquisition unit, a second acquisition unit, and a setup unit, each unit functioning as described above.
The terminal may include, but is not limited to, a processor 40, a memory 41. Those skilled in the art will appreciate that fig. 4 is merely an example of a terminal 4 and is not intended to be limiting of terminal 4, and may include more or fewer components than shown, or some components in combination, or different components, e.g., the terminal may also include input and output terminals, network access terminals, buses, etc.
The processor 40 may be a central processing unit, but may also be other general purpose processors, digital signal processors, application specific integrated circuits, off-the-shelf programmable gate arrays or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, or the like. A general purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
The memory 41 may be an internal storage unit of the terminal 4, such as a hard disk or a memory of the terminal 4. The memory 41 may also be an external memory terminal of the terminal 4, such as a plug-in hard disk, a smart memory card, a secure digital card, a flash memory card, etc. provided on the terminal 4. Further, the memory 41 may also include both an internal storage unit of the terminal 4 and an external storage terminal. The memory 41 is used for storing the computer readable instructions and other programs and data required by the terminal. The memory 41 may also be used to temporarily store data that has been output or is to be output.
The above-mentioned embodiments are only used for illustrating the technical solutions of the present application, and not for limiting the same; although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the spirit and scope of the embodiments of the present application and are intended to be included within the scope of the present application.

Claims (10)

1. A body temperature measuring method is characterized in that the body temperature measuring method is applied to a terminal and comprises the following steps:
acquiring a face image of a user to be detected and body temperature data of the user to be detected;
acquiring identity information matched with the face image of the user to be detected based on a preset face database;
and establishing an incidence relation between the matched identity information and the body temperature data.
2. The method of claim 1, wherein the obtaining of the face image of the user to be tested and the body temperature data of the user to be tested comprises:
acquiring a face image of a user to be detected;
determining a temperature region to be measured based on the face image; the temperature area to be measured is an area where the forehead of the user to be measured is located;
and acquiring the body temperature data measured by the body temperature gun aiming at the area to be measured.
3. The method of claim 2, wherein before acquiring the body temperature data measured by the body temperature gun for the area to be measured, further comprising:
measuring a target distance between the current user and the face of the user to be detected;
when the target distance is detected to be within a preset distance range and a probe identification point corresponding to the body temperature gun is detected in the temperature area to be measured, the body temperature data measured by the body temperature gun aiming at the temperature area to be measured is obtained;
when the target distance is detected not to belong to the preset distance range or a probe identification point corresponding to the body temperature gun is not detected in the temperature area to be detected, prompt information is generated; the prompt information is used for prompting the user to be detected to adjust the face position.
4. The method of claim 1, wherein after establishing the association between the matched identity information and the body temperature data, further comprising:
determining target physiological state information corresponding to the body temperature data based on a preset corresponding relation between a preset standard body temperature range and preset physiological state information; the preset physiological state information is information representing the physical health condition of the user;
and generating the health information of the user to be detected based on the matched identity information, the body temperature data and the target physiological state information.
5. The method of claim 4, wherein after generating the health information of the user under test based on the matched identity information, the body temperature data, and the target physiological state information, further comprising:
acquiring health information of any one user to be tested in a first preset time period; the health information comprises the measurement time of each body temperature measurement of the user to be measured in the first preset time period and body temperature data corresponding to each measurement time;
generating a body temperature trend analysis chart based on the identity information of the user to be measured, each measurement time and each body temperature data; the body temperature trend analysis graph is used for displaying the body temperature change trend of the user to be tested in the first preset time period.
6. The method of claim 4, wherein after generating the health information of the user under test based on the matched identity information, the body temperature data, and the target physiological state information, further comprising:
acquiring health information of each user to be detected in a second preset time period; the health information comprises body temperature data obtained by measuring the body temperature of each user to be measured in the second preset time period and target physiological state information corresponding to each body temperature data;
counting the number of users to be tested in the second preset time period, and acquiring the highest temperature and the lowest temperature in the second preset time period;
classifying all the target physiological state information in the second preset time period to obtain a classification result;
drawing a body temperature analysis map based on the classification results, the quantity, the maximum temperature, and the minimum temperature; the body temperature analysis chart is a health condition distribution chart of all users to be tested in the second preset time period.
7. The method of claim 4, wherein after generating the health information of the user under test based on the matched identity information, the body temperature data, and the target physiological state information, further comprising:
acquiring target physiological state information of all users to be detected within a third preset time period;
screening out target physiological state information of users with abnormal physiological states from the target physiological state information of all users to be detected, and marking the users to be detected with abnormal physiological states as abnormal users;
acquiring the identity information of the abnormal user, and generating an abnormal list based on the identity information of the abnormal user and the target physiological state information of the abnormal user; and the abnormal list is used for the user to check the abnormal users in the third preset time period.
8. A body temperature measurement terminal, comprising:
the device comprises a first acquisition unit, a second acquisition unit and a control unit, wherein the first acquisition unit is used for acquiring a face image of a user to be detected and body temperature data of the user to be detected;
the second acquisition unit is used for acquiring identity information matched with the face image of the user to be detected based on a preset face database;
and the establishing unit is used for establishing the association relationship between the matched identity information and the body temperature data.
9. A body temperature measurement terminal comprising a memory, a processor and computer readable instructions stored in the memory and executable on the processor, wherein the processor when executing the computer readable instructions implements the method of any one of claims 1 to 7.
10. A computer-readable storage medium, in which a computer program is stored which, when being executed by a processor, carries out the method according to any one of claims 1 to 7.
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US11906361B2 (en) 2020-10-28 2024-02-20 Datalogic Ip Tech S.R.L. Portable device combining indicia scan and contactless temperature functions
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