CN113804328A - Body temperature detection method, device and storage medium - Google Patents

Body temperature detection method, device and storage medium Download PDF

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Publication number
CN113804328A
CN113804328A CN202111177181.1A CN202111177181A CN113804328A CN 113804328 A CN113804328 A CN 113804328A CN 202111177181 A CN202111177181 A CN 202111177181A CN 113804328 A CN113804328 A CN 113804328A
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CN
China
Prior art keywords
image
human body
temperature
temperature detection
body image
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CN202111177181.1A
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Chinese (zh)
Inventor
袁小强
贺爱文
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Shenzhen Zhumang Technology Co ltd
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Shenzhen Zhumang Technology Co ltd
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Priority to CN202111177181.1A priority Critical patent/CN113804328A/en
Publication of CN113804328A publication Critical patent/CN113804328A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K13/00Thermometers specially adapted for specific purposes
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0042Coin-freed apparatus for hiring articles; Coin-freed facilities or services for hiring of objects

Abstract

The application provides a body temperature detection method, a mobile power supply leasing device and a computer readable storage medium, wherein the mobile power supply leasing device is provided with a temperature detection device and an image acquisition device, and the method comprises the following steps: acquiring an image to be identified; when the image to be recognized contains a human body image, determining whether the human body image is located in a first recognition area in the image to be recognized; if the human body image is located in the first identification area, acquiring temperature information detected by the temperature detection device; and determining the body temperature corresponding to the human body in the human body image according to the temperature information. The human body can be measured more accurately, and meanwhile, the labor cost and the placement position of the body temperature detection equipment can be effectively saved.

Description

Body temperature detection method, device and storage medium
Technical Field
The present application relates to the field of temperature measurement technologies, and in particular, to a body temperature detection method, a portable power source rental apparatus, and a computer-readable storage medium.
Background
The epidemic situation appears repeatedly at present, because epidemic prevention requires, people get into many activity places, like market, all need carry out the measurement of body temperature when office building or outdoor park, but at present many body temperature measurements are all accomplished through the manual work, the human cost has increased intangibly, some modes pass through the camera in addition, thermoscope and display device combined use carry out the temperature measurement, but shared spatial position is great, difficult enough installation space that exists in some shops, in order to lead to the use inconvenient, and carry out the temperature measurement through the device that above-mentioned combined use can receive the distance of human body and thermoscope, angle and environmental impact, lead to the measurement of body temperature inaccurate.
Disclosure of Invention
The main purpose of the present application is to provide a body temperature detection method, a portable power source rental device, and a computer-readable storage medium, which are intended to improve the convenience of body temperature detection and improve the accuracy of body temperature detection.
In a first aspect, the present application provides a body temperature detection method, which is used for a mobile power supply rental device, wherein a temperature detection device and an image acquisition device are arranged on the mobile power supply rental device, and the body temperature detection method includes the following steps:
acquiring an image to be identified;
when the image to be recognized contains a human body image, determining whether the human body image is located in a first recognition area in the image to be recognized;
if the human body image is located in the first identification area, acquiring temperature information detected by the temperature detection device;
and determining the body temperature corresponding to the human body in the human body image according to the temperature information.
In a second aspect, the present application further provides a mobile power supply rental apparatus, which includes a temperature detecting device for detecting temperature, an image acquiring device for acquiring an image, a processor, a memory, and a computer program stored on the memory and executable by the processor, wherein the computer program, when executed by the processor, implements the steps of the body temperature detecting method as described above.
In a third aspect, the present application further provides a computer-readable storage medium having a computer program stored thereon, wherein the computer program, when executed by a processor, implements the steps of the body temperature detection method as described above.
The application provides a body temperature detection method, leasing equipment based on a mobile power supply and a computer readable storage medium, and the body temperature detection method comprises the steps of obtaining an image to be identified; when the image to be recognized contains a human body image, determining whether the human body image is located in a first recognition area in the image to be recognized; if the human body image is located in the first identification area, acquiring temperature information detected by the temperature detection device; and determining the body temperature corresponding to the human body in the human body image according to the temperature information. The temperature information is acquired by determining whether the face image is located in the first identification area in the image to be identified, so that the temperature of the human body can be more accurately measured, and the temperature measuring device is applied to the mobile power supply leasing equipment, so that the manpower and the placement position of the equipment can be effectively saved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are 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 creative efforts.
Fig. 1 is a schematic structural diagram of a mobile power supply rental apparatus according to an embodiment of the present application;
fig. 2 is a schematic flowchart of a body temperature detection method according to an embodiment of the present disclosure;
fig. 3 is a usage scene diagram of an image to be recognized according to an embodiment of the present application;
fig. 4 is a block diagram illustrating a structure of a mobile power supply rental apparatus according to an embodiment of the present application.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are some, but not all, embodiments of the present application. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
The flow diagrams depicted in the figures are merely illustrative and do not necessarily include all of the elements and operations/steps, nor do they necessarily have to be performed in the order depicted. For example, some operations/steps may be decomposed, combined or partially combined, so that the actual execution sequence may be changed according to the actual situation.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a portable power rental apparatus 10 according to an embodiment of the present application.
The embodiment of the application provides a body temperature detection method, mobile power supply leasing equipment and a computer readable storage medium. The portable power supply leasing equipment 10 can provide leasing services of a plurality of portable power supplies 13, and a temperature detection device 11 and an image acquisition device 12 are arranged on the portable power supply leasing equipment 10 to complete a body temperature detection method as described below.
It is understood that the temperature detection device 11 and the image acquisition device 12 on the mobile power supply rental equipment 10 can be integrally installed or can be separately installed.
It should be noted that, the portable power source rental apparatus 10 can be placed on a counter at the entrance of a shop of a merchant due to small size, so that occupied positions can be effectively saved, and the portable power source rental apparatus 10 can be placed on the counter, so that the placement height of the portable power source rental apparatus 10 is close to the height of a user, and the temperature detection device 11 and the image acquisition device 12 on the portable power source rental apparatus 10 can shoot images of the user while the user rents/returns the portable power source 13, and the user can be subjected to temperature measurement based on the face of the user.
Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The embodiments described below and the features of the embodiments can be combined with each other without conflict.
Referring to fig. 2, fig. 2 is a schematic flow chart of a body temperature detecting method according to an embodiment of the present application.
As shown in fig. 2, the body temperature detecting method includes steps S101 to S104.
And step S101, acquiring an image to be identified.
For example, referring to fig. 1 together, the image to be recognized may be acquired by the image acquiring device 12 provided on the mobile power supply rental equipment 10. It will be appreciated that the image capture device 12 may be in a capture mode of operation at all times when proximity of an object or user is sensed, so as to continue to capture images.
For example, in another embodiment, a proximity sensing device, such as a radar, may be disposed on the image capture device 12. When the radar detects that an object/user approaches, a wake-up instruction is generated, the wake-up instruction is used for waking up the image acquisition device 12, and the image acquisition device 12 shoots after receiving the wake-up instruction, so that the power consumption can be effectively saved, and the service life of the image acquisition device 12 can be prolonged.
For example, in another embodiment, the image obtaining apparatus 12 may wake up when the portable power source rental device 10 receives a rental instruction of the portable power source 13 or a return instruction of the portable power source 13, and specifically, the portable power source rental device 10 may obtain a rental instruction sent by a mobile terminal to move out the portable power source 13, so that a user can take the portable power source 13 from the portable power source rental device 10; or a return instruction generated based on a user operation, the portable power supply rental apparatus 10 can charge the rented portable power supply 13 for the next rental by the user. As can be understood, when the portable power supply rental apparatus 10 receives the rental instruction or the return instruction, the image acquisition device 12 is awakened to perform shooting, thereby acquiring the image to be recognized.
For example, the acquired image to be recognized may include a human body image, specifically, the human body image may be a human face image or an upper body image of a human body, and whether a person appears in the image to be recognized can be determined through the human body image in the image to be recognized, so that the measured temperature of another object is avoided as the human body temperature, and if the human body image can be displayed on the portable power source rental device 10, the user can clearly know which measured temperature is the body temperature of the user.
For example, the size of the acquired image to be recognized may be, for example, one of 768px × 480, 1280px × 800px, 1440px × 900 px. It should be understood that the above description is only an example of the size of the image to be recognized, and the specific size of the image to be recognized is not limited.
Step S102, when the image to be recognized comprises a human body image, determining whether the human body image is located in a first recognition area in the image to be recognized.
For example, feature extraction may be performed on an image to be recognized to determine whether the image to be recognized includes a human body image, specifically, a gray level processing may be performed on the image to be recognized to obtain the human body image in the image to be recognized.
For example, the human body feature information of the image to be recognized may be extracted through the image to be recognized and the preset human body feature image to determine whether the image to be recognized includes a human body image, and it may be understood that the preset human body feature image may be an image stored in the mobile power supply rental apparatus 10 in advance, the preset human body feature image may include a human face contour, and whether the image to be recognized includes a human body image is determined through the human face contour in the preset human body feature image. It is to be understood that the above embodiments are only illustrative for determining the human body image in the image to be recognized, and are not limited to the specific embodiments.
Illustratively, after determining that the image to be recognized contains the human body image, determining whether the human body image is located in the first recognition area of the image to be recognized.
For example, the first recognition area may be an area in the image to be recognized, for example, the length of the first recognition area is less than or equal to the length of the image to be recognized, and the width of the first recognition area is less than the width of the image to be recognized.
Illustratively, when the size of the image to be recognized is 1280px × 800px, the size of the first recognition area may be 500px × 800px, and it is understood that the first recognition area may be located in the central area of the image to be recognized, that is, two areas with a size of 390px × 800px are further located at both sides of the first recognition area; the first recognition area may also be located on one side of the image to be recognized, and the size of the area adjacent to the first recognition area is 780px × 800 px.
It can be understood that the human body image may be located in the first to-be-identified region or in other regions in the to-be-identified image, and when the human body image is located in the first to-be-identified region of the to-be-identified image, it may indicate that the user is located at a position where the temperature detected by the temperature detecting device 11 is accurate, so that when the human body image is located in the first to-be-identified region of the to-be-identified image, the detection accuracy of the human body temperature may be improved.
Step S103, if the human body image is located in the first identification area, obtaining temperature information detected by the temperature detection device 11.
Illustratively, when the human body image is located in the first identification area, the temperature information detected by the temperature detection device 11 arranged on the portable power source leasing equipment 10 is obtained, and it can be understood that the temperature detection device 11 can continuously detect the temperature to generate the temperature information. When it is determined that the human body image is located in the first identification region, the temperature detected by the temperature detection device 11 in the time period corresponding to the time period in which the human body image is located in the first identification region is acquired, and it is understood that in this time period, the temperature detection device 11 may detect a plurality of different temperatures.
Illustratively, when the human body image is located in the first identification area, it indicates that the current position of the human body is at the target temperature measurement position, and it can be understood that the temperature measured by the temperature detection device 11 at the target temperature measurement position is relatively accurate, so as to improve the accuracy of human body temperature measurement.
In some embodiments, the obtaining the temperature information detected by the temperature detecting device 11 if the human body image is located in the first identification area includes: judging whether the human body image accords with a target proportion in the first identification area; and if the human body image is judged to accord with the target proportion in the first identification area, acquiring the temperature information detected by the temperature detection device 11.
For example, after determining that the human body image is located in the first recognition area, determining whether the human body image meets a target proportion in the first recognition area, where the target proportion may be used to indicate a size of a proportion of the human body image in the first recognition area, for example, the target proportion may be 40% of the human body image in the first recognition area, and when the human body image occupies 20% of the first recognition area, it may be determined that the human body image does not meet the target proportion.
For example, if the human body image meets the target ratio in the first identification region, the temperature information detected by the temperature detection device 11 in the time period corresponding to the human body image meeting the target ratio in the first identification region is obtained.
It can be understood that when the human body image is in the first identification region, it can be shown that the current position of the human body is located at the target temperature measurement position, but the temperature detected by the temperature detection device 11 is still affected by the distance between the human body and the temperature detection device 11, so that whether the distance between the current position of the human body and the temperature detection device 11 is appropriate can be judged by whether the human body image in the first identification region conforms to the target ratio, and the accuracy of body temperature detection is improved.
In some embodiments, if the human body image is located in the first identification area, acquiring the temperature information detected by the temperature detection device 11 includes: determining a deflection angle of a human body in the human body image relative to a vertical direction, wherein the vertical direction is a direction vertical to the ground; judging whether the deflection angle is within a preset deflection angle range: and when the deflection angle is within the range of the preset deflection angle, acquiring the temperature information detected by the temperature detection device 11.
For example, the deflection angle of the human body in the human body image relative to the vertical direction can be used to indicate whether the human body faces the temperature detection device 11, where the vertical direction is a direction perpendicular to the ground, and it can be understood that if the human body faces the temperature detection device 11, the deflection angle of the human body relative to the vertical direction is 0 °, and if the human body side faces the temperature detection device 11, the deflection angle of the human body relative to the vertical direction is 90 ° or 180 °.
Illustratively, the preset deflection angle range may be, for example, -45 ° to 45 °, and when the deflection angle of the human body in the human body image with respect to the vertical direction is 30 °, the deflection angle may be considered to be within the preset deflection angle range.
For example, if the deflection angle is within the range of the preset deflection angle, the temperature information detected by the temperature detection device 11 is obtained when the deflection angle of the human body in the human body image relative to the vertical direction is within the range of the preset deflection angle.
It can be understood that the deflection angle of the human body relative to the vertical direction is within the preset deflection angle range, and may be, for example, the human body front face to the temperature detection device 11, and the temperature detection device 11 may detect the body temperature corresponding to the human body through the human body face. The deflection angle of the human body relative to the vertical direction is outside the preset deflection angle range, for example, the side of the human body faces the temperature detection device 11, and the temperature detected by the temperature detection device 11 may be lower due to the shielding of the hair of the human body, so that the measured body temperature of the human body is not accurate enough.
It can be understood that, the deflection angle of the human body in the human body image with respect to the horizontal direction, where the horizontal direction is a direction parallel to the ground, may also be determined, and it is determined whether the deflection angle of the horizontal direction is within a preset horizontal deflection angle range, so as to obtain the temperature information detected by the temperature detection device 11.
Illustratively, when the human body image is located in the first identification area, at least one of determining whether the human body image meets a target ratio, determining whether a deflection angle of a human body in the human body image relative to a vertical direction is within a preset deflection angle range, and determining whether the deflection angle of the human body in the human body image relative to a horizontal direction is within a preset horizontal deflection angle range may be determined, and obtaining the temperature information detected by the temperature detection device 11 according to the determination result, so as to improve the measurement accuracy of the body temperature of the human body.
It can be understood that, when the determination result is that the human body image conforms to the target ratio, and at least one of the determination result that the deflection angle of the human body in the human body image with respect to the vertical direction is within the range of the preset deflection angle and the determination result that the deflection angle of the human body in the human body image with respect to the horizontal direction is within the range of the preset horizontal deflection angle, the temperature information detected by the temperature detection device 11 is obtained.
And step S104, determining the body temperature corresponding to the human body in the human body image according to the temperature information.
For example, the body temperature corresponding to the human body in the human body image can be determined by the temperature information detected by the temperature detecting device 11.
As can be understood, the corresponding body temperature of the human body in the human body image is determined to complete the temperature measurement of the human body in front of the portable power source leasing device 10.
Illustratively, the portable power source rental device 10 further includes a speaker, and the speaker is configured to broadcast the body temperature corresponding to the human body, so that the corresponding user and/or other body temperature detection personnel can know the body temperature of the human body in the human body image.
For example, the portable power source leasing equipment 10 can also be in communication connection with a server, and upload the body temperature of the human body with the detected abnormality and the corresponding human body image, so that the medical institution can timely find the abnormality for processing.
In some embodiments, the mobile power rental device 10 further includes a display device 14, and the method further includes: and displaying the human body image and the body temperature corresponding to the human body in the human body image on the display device 14.
Illustratively, as shown in fig. 1, a display device 14 may also be installed on the portable power source rental equipment 10, and the display device 14 may be configured to display the power state of the portable power source 13 on the portable power source rental equipment 10, display an advertisement, and also display a human body image and a body temperature corresponding to the human body in the human body image when body temperature detection is performed.
It can be understood that the human body image and the corresponding body temperature of the human body in the human body image are displayed on the display device 14, so that a user can know the corresponding body temperature when a plurality of users exist in front of the portable power source rental apparatus 10.
In some embodiments, the determining the corresponding body temperature of the human body in the human body image according to the temperature information includes: comparing the temperature values corresponding to the plurality of moments; and determining the body temperature corresponding to the human body in the human body image according to the comparison result.
Exemplarily, when the human body image is located in the first identification region, the temperature information detected by the temperature detection device 11 is obtained, it can be understood that when the human body image is located in the first identification region, the temperature detection device 11 can continuously detect the temperature value, so that when the human body image is located in the first identification region, the temperature values at a plurality of moments can be obtained, and it can be understood that the temperature values detected at a plurality of moments can be the same or different.
For example, as in the foregoing embodiment, when the human body image is located in the first recognition area and the human body image conforms to the target scale, and/or the deflection angle of the human body in the human body image relative to the vertical direction conforms to the preset deflection angle range, and/or the deflection angle of the human body in the human body image relative to the horizontal direction conforms to the preset horizontal deflection angle range, the temperature detection device 11 may continuously detect the temperature values, so as to obtain the temperature values corresponding to multiple times. Wherein, the vertical direction is the direction of perpendicular to ground, and the horizontal direction is the direction of level and ground.
For example, the temperature values corresponding to a plurality of moments can be compared, and the body temperature corresponding to the human body in the human body image can be determined according to the comparison result.
For example, the temperature values corresponding to a plurality of times may be compared with each other, and the highest temperature value among the temperature values corresponding to the plurality of times is determined to be the body temperature corresponding to the human body in the human body image.
For example, the temperature value detected by the temperature detecting device 11 may also be obtained through a preset interval time, where the preset interval time may be 15s, when the human body image is located in the first identification region of the image to be identified, the temperature detecting device 11 may continuously detect the temperature, and obtain the detected temperature value at a time corresponding to the preset interval time.
It can be understood that accidental errors of the detected temperature can be effectively eliminated by detecting a plurality of temperature values and determining the highest temperature value as the body temperature corresponding to the human body in the human body image.
In some embodiments, the method further comprises: and if the human body image is located in the first identification area, storing the human body image based on an image storage library.
For example, an image repository may be used to store images, it being understood that the image repository may be purged over a period of time for privacy of the user, including.
Illustratively, by means of the image repository, repeated body temperature detection for one user in a short time can be avoided, so that the utilization rate of body temperature detection of the mobile power supply leasing equipment 10 is improved.
Illustratively, when it is determined that a human body image is located in the first identification area, the human body image is stored in the image repository, and after the human body in the human body image completes body temperature detection and the portable power source rental device 10 performs body temperature broadcast, the user still exists in front of the portable power source rental device 10, and the image to be identified including the human body image is obtained, and the human body image is located in the first identification area, but the image identical to the human body image exists in the image repository, and the temperature information is not obtained.
For example, the human body image may be located in the first recognition area, and a deflection angle of a human body in the human body image with respect to a horizontal direction is within a range of a preset horizontal deflection angle, so as to obtain temperature information detected by the temperature detection device 11, determine a body temperature corresponding to the human body in the human body image, report the body temperature, and then store the human body image in the image repository, where when the deflection angle of the human body in the human body image with respect to the horizontal direction is outside the range of the preset horizontal deflection angle, the temperature information detected by the temperature detection device 11 is not obtained, and when the deflection angle of the human body in the human body image with respect to the horizontal direction is again within the range of the preset horizontal deflection angle, the temperature information detected by the temperature detection device 11 is not obtained because the same human body image as the currently obtained human body image exists in the image repository.
It can be appreciated that storing the body images in an image repository can avoid the situation of repeatedly detecting body temperature.
In some embodiments, the method further comprises: if the human body image is located in a second identification area in the image to be identified, determining whether the human body image exists in the image storage library; if the human body image exists in the image repository, deleting the human body image stored in the image repository; wherein, in the image to be identified, the first identification area is adjacent to the second identification area.
For example, after the user can leave the portable power source leasing device 10 after completing the body temperature detection, it can be understood that the human body image is not located in the first identification area, and whether the human body image is located in the second identification area is determined.
For example, in the image to be recognized, the first recognition area and the second recognition area may be adjacent to each other, for example, when the size of the image to be recognized is 1280px × 800px, the size of the first recognition area may be 500px × 800px, and it is understood that the remaining area with the size of 780px × 800px may be the second recognition area.
For example, if the human body image is located in the second identification area, it is determined whether the human body image located in the second identification area exists in the image repository, it may be understood that the human body image may be stored in the image repository when the human body image is located in the first identification area, and when the human body image is not located in the first identification area but located in the second identification area, the corresponding human body image stored in the image repository may be deleted to protect the privacy of the user.
For example, if the human body figure in the second recognition area is not in the image repository, no operation may be performed.
In some embodiments, the image to be recognized includes two second recognition regions, the two second recognition regions are respectively located on two opposite sides in the image to be recognized, and the first recognition region is located between the two second recognition regions.
For example, the first recognition area can enable the user to delete the face image stored in the image repository when the user leaves the mobile power supply leasing device 10 in any direction between the two second recognition areas, so as to protect the privacy of the user.
Referring to fig. 3, fig. 3 is a practical scene diagram of an image to be recognized according to an embodiment of the present application.
As shown in fig. 3, when the size of the image to be recognized 100 is 1280px × 800px, the size of the first recognition area a may be 500px × 800px, the size of each of the second recognition areas B may be 390px × 800px, and the two second recognition areas B are respectively located at opposite sides of the image to be recognized 10, and the first recognition area a is located between the two second recognition areas B.
In other embodiments, the image to be recognized further includes two third recognition regions, and it is understood that the two third recognition regions are respectively located at two opposite sides of the image to be recognized, and the two second recognition regions and the first recognition region are located between the two third recognition regions. It is understood that when the human body image is located in the third recognition area, the human body image may not be operated. Specifically, when the size of the image to be recognized is 1280px × 800px, the size of the first recognition area may be 500px × 800px, the size of the second recognition area may be 240px × 800px, and the size of the third recognition area may be 150px × 800 px.
Illustratively, the body temperature detection of the same user can be prevented from being repeatedly performed by storing the body image in the first identification area, and the stored corresponding body image can be deleted when the body image is in the second identification area, so that the privacy of the user can be effectively protected.
The body temperature detection method provided by the embodiment can be used for more accurately measuring the temperature of the human body by acquiring the temperature information when determining whether the face image is located in the first identification area in the image to be identified, and can be applied to the mobile power supply leasing equipment 10, so that the manpower and the placement position of the equipment can be effectively saved.
Referring to fig. 4, fig. 4 is a schematic block diagram illustrating a structure of a mobile power supply rental apparatus according to an embodiment of the present application.
As shown in fig. 4, the mobile power rental device includes an image capturing device for capturing an image, a temperature detecting device for detecting temperature, a processor, a memory and a network interface connected by a system bus, wherein the memory may include a storage medium and an internal memory.
The storage medium may store an operating system and a computer program. The computer program includes program instructions that, when executed, cause the processor to perform any of the body temperature detection methods.
The processor is used for providing calculation and control capability and supporting the operation of the whole computer equipment.
The internal memory provides an environment for the execution of a computer program on a storage medium, which when executed by the processor causes the processor to perform any of the methods of body temperature detection.
The network interface is used for network communication, such as sending assigned tasks and the like. Those skilled in the art will appreciate that the architecture shown in fig. 4 is merely a block diagram of some of the structures associated with the disclosed aspects and is not intended to limit the computing devices to which the disclosed aspects apply, as particular computing devices may include more or less components than those shown, or may combine certain components, or have a different arrangement of components.
It should be understood that the Processor may be a Central Processing Unit (CPU), and the Processor may be other general purpose processors, Digital Signal Processors (DSPs), Application Specific Integrated Circuits (ASICs), Field Programmable Gate Arrays (FPGAs) or other Programmable logic devices, discrete Gate or transistor logic devices, discrete hardware components, etc. Wherein a general purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
The embodiments of the present application also provide a computer-readable storage medium, where a computer program is stored on the computer-readable storage medium, where the computer program includes program instructions, and when the program instructions are executed, a method implemented by the computer program instructions may refer to the embodiments of the body temperature detection method of the present application.
The computer-readable storage medium may be an internal storage unit of the computer device described in the foregoing embodiment, for example, a hard disk or a memory of the computer device. The computer readable storage medium may also be an external storage device of the computer device, such as a plug-in hard disk, a Smart Media Card (SMC), a Secure Digital (SD) Card, a Flash memory Card (Flash Card), and the like provided on the computer device.
It is to be understood that the terminology used in the description of the present application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used in the specification of the present application and the appended claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise.
It should also be understood that the term "and/or" as used in this specification and the appended claims refers to and includes any and all possible combinations of one or more of the associated listed items. It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or system that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or system. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other like elements in a process, method, article, or system that comprises the element.
The above-mentioned serial numbers of the embodiments of the present application are merely for description and do not represent the merits of the embodiments. While the invention has been described with reference to specific embodiments, the scope of the invention is not limited thereto, and those skilled in the art can easily conceive various equivalent modifications or substitutions within the technical scope of the invention. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims (10)

1. A body temperature detection method is used for mobile power supply leasing equipment, wherein a temperature detection device and an image acquisition device are arranged on the mobile power supply leasing equipment, and the method comprises the following steps:
acquiring an image to be identified;
when the image to be recognized contains a human body image, determining whether the human body image is located in a first recognition area in the image to be recognized;
if the human body image is located in the first identification area, acquiring temperature information detected by the temperature detection device;
and determining the body temperature corresponding to the human body in the human body image according to the temperature information.
2. The method for detecting body temperature according to claim 1, wherein the obtaining the temperature information detected by the temperature detecting device if the human body image is located in the first identification area comprises:
judging whether the human body image accords with a target proportion in the first identification area;
and if the human body image accords with the target proportion in the first identification area, acquiring the temperature information detected by the temperature detection device.
3. The method for detecting body temperature according to claim 1, wherein the obtaining the temperature information detected by the temperature detecting device if the human body image is located in the first identification area comprises:
determining a deflection angle of a human body in the human body image relative to a vertical direction, wherein the vertical direction is a direction vertical to the ground;
judging whether the deflection angle is within a preset deflection angle range or not;
and when the deflection angle is within the range of the preset deflection angle, acquiring the temperature information detected by the temperature detection device.
4. The method as claimed in claim 1, wherein the temperature information includes temperature values detected by the temperature detecting device at a plurality of times, and the determining the body temperature corresponding to the human body in the human body image according to the temperature information includes:
comparing the temperature values corresponding to the plurality of moments;
and determining the body temperature corresponding to the human body in the human body image according to the comparison result.
5. The body temperature detection method of any one of claims 1-4, wherein the mobile power supply rental equipment further comprises a display device, the method further comprising:
and displaying the human body image and the body temperature corresponding to the human body in the human body image on the display device.
6. The method of body temperature detection according to claim 1, further comprising:
and if the human body image is located in the first identification area, storing the human body image based on an image storage library.
7. The method of body temperature detection as set forth in claim 6, further comprising:
if the human body image is located in a second identification area in the image to be identified, determining whether the human body image exists in the image storage library;
if the human body image exists in the image repository, deleting the human body image stored in the image repository;
wherein, in the image to be identified, the first identification area is adjacent to the second identification area.
8. The method for detecting body temperature according to claim 7, wherein the image to be recognized includes two second recognition areas, the two second recognition areas are respectively located on two opposite sides in the image to be recognized, and the first recognition area is located between the two second recognition areas.
9. A mobile power supply leasing device, comprising:
the temperature detection device is used for detecting temperature;
image acquisition means for acquiring an image;
a processor and a memory, the memory having stored therein a computer program, the processor executing the body temperature detection method according to any one of claims 1 to 8 when calling the computer program in the memory.
10. A computer-readable storage medium, having a computer program stored thereon, wherein the computer program, when being executed by a processor, carries out the steps of the body temperature detection method according to any one of claims 1 to 8.
CN202111177181.1A 2021-10-09 2021-10-09 Body temperature detection method, device and storage medium Pending CN113804328A (en)

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