WO2022007116A1 - 基于测温位置分析的功能激活平台 - Google Patents

基于测温位置分析的功能激活平台 Download PDF

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WO2022007116A1
WO2022007116A1 PCT/CN2020/109745 CN2020109745W WO2022007116A1 WO 2022007116 A1 WO2022007116 A1 WO 2022007116A1 CN 2020109745 W CN2020109745 W CN 2020109745W WO 2022007116 A1 WO2022007116 A1 WO 2022007116A1
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temperature measurement
image
signal
function activation
analysis
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章微微
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章微微
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/05Programmable logic controllers, e.g. simulating logic interconnections of signals according to ladder diagrams or function charts
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T5/00Image enhancement or restoration
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T5/00Image enhancement or restoration
    • G06T5/80Geometric correction
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/10Human or animal bodies, e.g. vehicle occupants or pedestrians; Body parts, e.g. hands
    • G06V40/16Human faces, e.g. facial parts, sketches or expressions
    • G06V40/161Detection; Localisation; Normalisation
    • G06V40/165Detection; Localisation; Normalisation using facial parts and geometric relationships
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/10Plc systems
    • G05B2219/15Plc structure of the system
    • G05B2219/15039Display of reference, set value, of measured, feedback value
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T2207/00Indexing scheme for image analysis or image enhancement
    • G06T2207/30Subject of image; Context of image processing
    • G06T2207/30196Human being; Person
    • G06T2207/30201Face

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  • the invention relates to the field of body condition detection, in particular to a function activation platform based on temperature measurement position analysis.
  • Human body temperature normal human body temperature (normal human body temperature, normothermia, or euthermia,) is measured based on changes that occur in the body during the time of day, as well as on the person's activity level.
  • the normal values for normal body temperature are: oral probe (sublingual): 36.8 ⁇ 0.4°C (98.2 ⁇ 0.72°F); in vivo (rectal, vaginal): 37.0°C (98.6°F).
  • a healthy person's body temperature will be lower in the morning and about 0.5°C (0.9°F) higher in the evening and at night because of the body's needs and changes in activity.
  • Other conditions can also affect the body's temperature, for example: when a person is hungry, sleepy, ill, or cold, the body temperature changes accordingly.
  • the measurement result will have a large deviation, which will affect the corresponding body condition evaluation result in severe cases.
  • the present invention provides a function activation platform based on temperature measurement position analysis. The position between the eyes and just above the bridge of the nose is judged to ensure the authenticity and reliability of the temperature measurement of the human forehead.
  • a function activation platform based on temperature measurement position analysis includes:
  • the main control device located in the mobile temperature measurement mechanism, is used to activate the head temperature measurement function of the mobile temperature measurement mechanism when receiving a reliable position signal;
  • the main control device is further configured to disable the head temperature measurement function of the mobile temperature measurement mechanism when a position failure signal is received;
  • the button-type video recorder is located on the mobile temperature measurement mechanism, located directly above the temperature measurement port and the vertical distance from the temperature measurement port is less than or equal to the preset distance threshold, which is used to perform video recording operations on the temperature measurement environment of the mobile temperature measurement mechanism to Obtain an instant temperature measurement image corresponding to the current moment;
  • Distortion processing equipment located in the mobile temperature measurement mechanism, connected to the button-type video recorder, and used for performing distortion correction processing on the received instant temperature measurement image to obtain and output the corresponding distortion processed image;
  • An adaptive enhancement device connected with the distortion processing device, is used for determining the number of times of performing image SVD enhancement processing on the received image based on the maximum noise amplitude in the received distorted image, so as to obtain and output the corresponding adaptive enhancement Enhanced image, the greater the maximum noise amplitude in the received distorted image, the more times it is decided to perform image SVD enhancement processing on the received image;
  • a point image restoration device connected with the adaptive enhancement device, for performing single or multiple point image restoration processing on the received adaptive enhancement image to obtain and output a corresponding signal restoration image;
  • a type analysis device connected to the point image restoration device, for recognizing the respective imaging patterns of the left eye, the right eye and the bridge of the nose in the signal restoration image;
  • a signal identification mechanism connected to the type analysis device, for acquiring an imaging area between the imaging pattern of the left eye and the imaging pattern of the right eye and just above the imaging pattern of the bridge of the nose in the signal restoration image;
  • a position detection mechanism which is respectively connected with the main control device and the signal identification mechanism, and is used for the pixel points separated between the pixel points in the center of the imaging area and the pixel points in the center of the signal restoration image
  • the position reliability signal is issued when the number of , is below a preset number threshold.
  • a function activation method based on temperature measurement position analysis comprising using a function activation platform based on temperature measurement position analysis as described above, for according to the current situation of the mobile measurement mechanism Whether the body area to be measured is located in the preset body area to determine whether to activate the corresponding head temperature measurement function.
  • the function activation platform based on temperature measurement position analysis of the present invention is compact in design and reliable in logic. Due to the on-site identification of whether the temperature measurement area of the mobile temperature measurement mechanism based on forehead temperature measurement is effective, it provides an important reference signal for the operator.
  • FIG. 1 is a schematic diagram of a working scenario of a function activation platform based on temperature measurement position analysis according to an embodiment of the present invention.
  • Human physiology is the study of how organisms work, that is, to study the functions of the human body. Applied to the human body, covering a very wide range. The most important thing is to understand the operation of human physiology and understand the application relationship between systems.
  • thermometers are available for measurement, including: in the anus (rectal temperature), in the mouth (oral temperature), under the arm (armpit temperature), in the ear (tympanic temperature), in the vagina (vaginal temperature), in the bladder , on the skin of the temporal artery on the forehead.
  • the reliable detection area for the temperature measurement of the human forehead should be between the eyes of the human body and just above the bridge of the nose. However, in actual operation, due to lack of experience or improper operation, the measurement area often deviates from the above area, which affects the Authenticity and reliability of human forehead temperature measurement.
  • the present invention builds a function activation platform based on temperature measurement position analysis, which can effectively solve the corresponding technical problems.
  • FIG. 1 is a schematic diagram of a working scenario of a function activation platform based on temperature measurement position analysis according to an embodiment of the present invention, the platform includes:
  • the main control device located in the mobile temperature measurement mechanism, is used to activate the head temperature measurement function of the mobile temperature measurement mechanism when receiving a reliable position signal;
  • the main control device is further configured to disable the head temperature measurement function of the mobile temperature measurement mechanism when a position failure signal is received;
  • the button-type video recorder is located on the mobile temperature measurement mechanism, located directly above the temperature measurement port and the vertical distance from the temperature measurement port is less than or equal to the preset distance threshold, which is used to perform video recording operations on the temperature measurement environment of the mobile temperature measurement mechanism to Obtain an instant temperature measurement image corresponding to the current moment;
  • Distortion processing equipment located in the mobile temperature measurement mechanism, connected to the button-type video recorder, and used for performing distortion correction processing on the received instant temperature measurement image to obtain and output the corresponding distortion processed image;
  • An adaptive enhancement device connected with the distortion processing device, is used for determining the number of times of performing image SVD enhancement processing on the received image based on the maximum noise amplitude in the received distorted image, so as to obtain and output the corresponding adaptive enhancement Enhanced image, the greater the maximum noise amplitude in the received distorted image, the more times it is decided to perform image SVD enhancement processing on the received image;
  • a point image restoration device connected to the adaptive enhancement device, for performing single or multiple point image restoration processing on the received adaptive enhancement image to obtain and output a corresponding signal restoration image;
  • a type analysis device connected to the point image restoration device, for recognizing the respective imaging patterns of the left eye, the right eye and the bridge of the nose in the signal restoration image;
  • a signal identification mechanism connected to the type analysis device, for acquiring an imaging area between the imaging pattern of the left eye and the imaging pattern of the right eye and just above the imaging pattern of the bridge of the nose in the signal restoration image;
  • a position detection mechanism which is respectively connected with the main control device and the signal identification mechanism, and is used for the pixel points separated between the pixel points in the center of the imaging area and the pixel points in the center of the signal restoration image
  • the position reliability signal is issued when the number of , is below a preset number threshold.
  • the position detection mechanism is further configured to: when the number of pixel points separated between the pixel point at the center position of the imaging area and the pixel point at the center position of the signal restoration image is higher than or equal to the preset number threshold, Signal a position failure.
  • Identifying the respective imaging patterns of the left eye, the right eye and the bridge of the nose in the signal restoration image includes: identifying the respective imaging patterns of the left eye and the right eye in the signal restoration image based on the geometric shape of the eyes.
  • Identifying the respective imaging patterns of the left eye, the right eye and the bridge of the nose in the signal restoration image includes: identifying the imaging pattern of the bridge of the nose in the signal restoration image based on the geometric shape of the nose bridge.
  • the signal identification mechanism, the position detection mechanism and the type analysis device are realized by the same CPLD chip;
  • the signal identification mechanism, the position detection mechanism and the type analysis device are respectively realized by using logic control components at different positions in the CPLD chip.
  • the function activation platform based on temperature measurement position analysis may also include:
  • an NFC configuration interface connected to the signal identification mechanism, for configuring various operating parameters for the signal identification mechanism based on the NFC communication link;
  • the NFC configuration interface is also connected with the position detection mechanism, and is used for configuring various operating parameters for the position detection mechanism based on the NFC communication link.
  • the NFC configuration interface is also connected with the type analysis device, and is configured to configure various operating parameters for the type analysis device based on the NFC communication link.
  • the signal identification mechanism, the position detection mechanism and the type analysis device have different configuration numbers, which are used to identify the signal when the NFC configuration interface performs operating parameter configuration. mechanism, the position detection mechanism and the type analysis device to discriminate.
  • the present invention also builds a function activation method based on temperature measurement position analysis. Whether the body area of the current temperature measurement is located in the preset body area determines whether to activate the corresponding head temperature measurement function.
  • CPLD Complex Programmable Logic Device
  • PAL and GAL devices are devices developed from PAL and GAL devices. It is relatively large in scale and complex in structure, and belongs to the scope of large-scale integrated circuits. It is a digital integrated circuit that users can construct logic functions according to their own needs.
  • the basic design method is to use the integrated development software platform to generate corresponding target files by means of schematic diagrams, hardware description languages, etc., and transfer the code to the target chip through a download cable ("in-system" programming) to realize the designed digital system. .
  • CPLD is mainly composed of programmable logic macro cells (MC, Macro Cell) around the center of the programmable interconnect matrix cells.
  • MC programmable logic macro cells
  • the MC structure is more complex and has a complex I/O unit interconnection structure. Users can generate a specific circuit structure according to their needs to complete certain functions. Because fixed-length metal lines are used inside the CPLD to interconnect each logic block, the designed logic circuit has time predictability, avoiding the disadvantage of incomplete timing prediction of the segmented interconnect structure.
  • first and second are only used for descriptive purposes, and should not be construed as indicating or implying relative importance or implying the number of indicated technical features. Thus, a feature delimited with “first”, “second” may expressly or implicitly include at least one of that feature.

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Abstract

一种基于测温位置分析的功能激活平台,包括:主控设备,位于移动测温机构中,用于在接收到位置可靠信号时,激活移动测温机构的头部测温功能;主控设备还用于在接收到位置失效信号时,禁用移动测温机构的头部测温功能;位置检测机构,用于在成像区域的中心位置的像素点与信号复原图像的中心位置的像素点之间相隔的像素点的数量低于预设数量阈值时,发出位置可靠信号。基于测温位置分析的功能激活平台设计紧凑、逻辑可靠。由于对基于额温测量的移动测温机构的测温区域是否有效进行现场辨别,从而为操作人员提供重要的参考信号。

Description

基于测温位置分析的功能激活平台 技术领域
本发明涉及体况检测领域,尤其涉及一种基于测温位置分析的功能激活平台。
背景技术
人体体温、人体正常体温(英语:Human body temperature、Normal human body temperature、normothermia、或euthermia,)测量出的结果取决于在一天中的时间中身体内发生的变化,以及该人的活动水平。而正常体温一般值在:口探(舌下):36.8±0.4℃(98.2±0.72°F);体内(直肠,阴道):37.0℃(98.6°F)。
由此可见,身体的不同部位有不同的温度,直接测量体腔内部的直肠或阴道的结果通常比口探测量稍高,而且口探测量比皮肤测量稍高。其他地方,如在手臂或耳后会产生不同的正常温度。
在一天中,因为身体的需要和人活动后的变化,一个健康的人体温在早上会较低,在傍晚和晚上则高大约0.5℃(0.9°F)。其他情形也会影响身体的温度,例如:当一个人饿了,困了,病了,或冷,体温也随之变化。
因此,如果对人体体温测量的位置不够准确,则测量结果偏差较大,严重时会影响到相应的人体体况评估结果。
发明内容
为了解决相关领域的技术问题,本发明提供了一种基于测温位置分析的功能激活平台,通过检测移动测温区域前方的人体部位的相对位置,对移动测温机构当前测温区域是否在人体两眼之间且位于鼻梁正上方的位置进行判断,从而保证对人体额头测量温度的真实性和可靠性。
为此,本发明需要具备以下几处关键的发明点:
(1)在移动测温机构当前测温区域在人体两眼之间且位于鼻梁正上方的位置时,激活所述移动测温机构的头部测温功能以保证额头温度测量结果的准确性;
(2)在定制信号处理的基础上,对处理后的图像信号执行人体各部位的定位操作,以用于检测移动测温机构当前测温区域的有效性。
根据本发明的一方面,提供了一种基于测温位置分析的功能激活平台,所述平台包括:
主控设备,位于移动测温机构中,用于在接收到位置可靠信号时,激活所述移动测温机构的头部测温功能;
所述主控设备还用于在接收到位置失效信号时,禁用所述移动测温机构的头部测温功能;
纽扣式录影机,位于移动测温机构上,位于测温口的正上方且距离测温口的垂直距离小于等于预设距离阈值,用于对移动测温机构的测温环境执行录影操作,以获得与当前时刻对应的即时测温图像;
畸变处理设备,位于移动测温机构内,与所述纽扣式录影机连接,用于对接收到的即时测温图像执行畸变校正处理,以获得并输出相应的畸变处理图像;
自适应增强设备,与所述畸变处理设备连接,用于基于接收到的畸变处理图像中的最大噪声幅值决定对接收到的图像执行图像SVD增强处理的次数,以获得并输出相应的自适应增强图像,所述接收到的畸变处理图像中的最大噪声幅值越大,决定对接收到的图像执行图像SVD增强处理的次数越多;
点像复原设备,与所述自适应增强设备连接,用于对接收到的自适应增强图像执行单次或多次点像复原处理,以获得并输出相应的信号复原图 像;
类型分析设备,与所述点像复原设备连接,用于在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图案;
信号辨识机构,与所述类型分析设备连接,用于在所述信号复原图像中获取左眼的成像图案和右眼的成像图案之间且在鼻梁的成像图案正上方的成像区域;
位置检测机构,分别与所述主控设备和所述信号辨识机构连接,用于在所述成像区域的中心位置的像素点与所述信号复原图像的中心位置的像素点之间相隔的像素点的数量低于预设数量阈值时,发出位置可靠信号。
根据本发明的另一方面,还提供了一种基于测温位置分析的功能激活方法,所述方法包括使用一种如上述的基于测温位置分析的功能激活平台,用于根据移动测量机构当前测温的人体区域是否位于预设人体区域以决定是否激活相应的头部测温功能。
本发明的基于测温位置分析的功能激活平台设计紧凑、逻辑可靠。由于对基于额温测量的移动测温机构的测温区域是否有效进行现场辨别,从而为操作人员提供重要的参考信号。
附图说明
以下将结合附图对本发明的实施方案进行描述,其中:
图1为根据本发明实施方案示出的基于测温位置分析的功能激活平台的工作场景示意图。
具体实施方式
下面将参照附图对本发明的基于测温位置分析的功能激活平台的实施方案进行详细说明。
人体生理学(Human physiology)是研究生物体如何运作的一门学问,也就是说,用来研究人体的功能。应用于人体,涵盖范围非常广泛。最重要必须了解人体生理的运作,了解系统与系统之间的应用关系。
测量一个人的温度是一个完整的临床检查的初始部分。有用于测量的各类医疗温度计,包含:在肛门(直肠温度)、在口腔(口腔温度)、在手臂下(腋下温度)、在耳(鼓膜温度)、在阴道(阴道温度)、在膀胱、在额头上颞动脉皮肤。
对人体额头测温的可靠检测区域应该是在人体两眼之间且位于鼻梁正上方的位置,而实际操作中,工作人员由于经验不足或者操作不当,测量的区域经常偏离上述区域,从而影响了人体额头测量温度的真实性和可靠性。
为了克服上述不足,本发明搭建了一种基于测温位置分析的功能激活平台,能够有效解决相应的技术问题。
图1为根据本发明实施方案示出的基于测温位置分析的功能激活平台的工作场景示意图,所述平台包括:
主控设备,位于移动测温机构中,用于在接收到位置可靠信号时,激活所述移动测温机构的头部测温功能;
所述主控设备还用于在接收到位置失效信号时,禁用所述移动测温机构的头部测温功能;
纽扣式录影机,位于移动测温机构上,位于测温口的正上方且距离测温口的垂直距离小于等于预设距离阈值,用于对移动测温机构的测温环境执行录影操作,以获得与当前时刻对应的即时测温图像;
畸变处理设备,位于移动测温机构内,与所述纽扣式录影机连接,用于对接收到的即时测温图像执行畸变校正处理,以获得并输出相应的畸变处理图像;
自适应增强设备,与所述畸变处理设备连接,用于基于接收到的畸变处理图像中的最大噪声幅值决定对接收到的图像执行图像SVD增强处理的次数,以获得并输出相应的自适应增强图像,所述接收到的畸变处理图像中的最大噪声幅值越大,决定对接收到的图像执行图像SVD增强处理的次数越多;
点像复原设备,与所述自适应增强设备连接,用于对接收到的自适应增强图像执行单次或多次点像复原处理,以获得并输出相应的信号复原图像;
类型分析设备,与所述点像复原设备连接,用于在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图案;
信号辨识机构,与所述类型分析设备连接,用于在所述信号复原图像中获取左眼的成像图案和右眼的成像图案之间且在鼻梁的成像图案正上方的成像区域;
位置检测机构,分别与所述主控设备和所述信号辨识机构连接,用于在所述成像区域的中心位置的像素点与所述信号复原图像的中心位置的像素点之间相隔的像素点的数量低于预设数量阈值时,发出位置可靠信号。
接着,继续对本发明的基于测温位置分析的功能激活平台的具体结构进行进一步的说明。
所述基于测温位置分析的功能激活平台中:
所述位置检测机构还用于在所述成像区域的中心位置的像素点与所述信号复原图像的中心位置的像素点之间相隔的像素点的数量高于等于所述预设数量阈值时,发出位置失效信号。
所述基于测温位置分析的功能激活平台中:
在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图 案包括:基于眼部几何外形识别所述信号复原图像中的左眼和右眼各自的成像图案。
所述基于测温位置分析的功能激活平台中:
在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图案包括:基于鼻梁几何外形识别所述信号复原图像中的鼻梁的成像图案。
所述基于测温位置分析的功能激活平台中:
所述信号辨识机构、所述位置检测机构和所述类型分析设备由同一块CPLD芯片来实现;
其中,采用所述CPLD芯片中的不同位置的逻辑控制部件分别实现所述信号辨识机构、所述位置检测机构和所述类型分析设备。
所述基于测温位置分析的功能激活平台中还可以包括:
NFC配置接口,与所述信号辨识机构连接,用于基于NFC通信链路为所述信号辨识机构配置各项运行参数;
其中,所述NFC配置接口还与所述位置检测机构连接,用于基于NFC通信链路为所述位置检测机构配置各项运行参数。
所述基于测温位置分析的功能激活平台中:
所述NFC配置接口还与所述类型分析设备连接,用于基于NFC通信链路为所述类型分析设备配置各项运行参数。
所述基于测温位置分析的功能激活平台中:
在所述NFC配置接口中,所述信号辨识机构、所述位置检测机构和所述类型分析设备具有不同的配置编号,用于在所述NFC配置接口执行运行参数配置时,对所述信号辨识机构、所述位置检测机构和所述类型分析设备进行辨别。
同时,为了克服上述不足,本发明还搭建了一种基于测温位置分析的功能激活方法,所述方法包括使用一种如上述的基于测温位置分析的功能激活平台,用于根据移动测量机构当前测温的人体区域是否位于预设人体区域以决定是否激活相应的头部测温功能。
另外,CPLD(Complex Programmable Logic Device)复杂可编程逻辑器件,是从PAL和GAL器件发展出来的器件,相对而言规模大,结构复杂,属于大规模集成电路范围。是一种用户根据各自需要而自行构造逻辑功能的数字集成电路。其基本设计方法是借助集成开发软件平台,用原理图、硬件描述语言等方法,生成相应的目标文件,通过下载电缆(“在系统”编程)将代码传送到目标芯片中,实现设计的数字系统。
CPLD主要是由可编程逻辑宏单元(MC,Macro Cell)围绕中心的可编程互连矩阵单元组成。其中MC结构较复杂,并具有复杂的I/O单元互连结构,可由用户根据需要生成特定的电路结构,完成一定的功能。由于CPLD内部采用固定长度的金属线进行各逻辑块的互连,所以设计的逻辑电路具有时间可预测性,避免了分段式互连结构时序不完全预测的缺点。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示例中。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。
虽然本发明已以实施例揭示如上,但其并非用以限定本发明,任何所属技术领域的普通技术人员,在不脱离本发明的精神和范围内,应当可以做出适当的改动和同等替换。因此本发明的保护范围应当以本申请权利要求所界定的范围为准。

Claims (9)

  1. 一种基于测温位置分析的功能激活平台,所述平台包括:
    主控设备,位于移动测温机构中,用于在接收到位置可靠信号时,激活所述移动测温机构的头部测温功能;
    所述主控设备还用于在接收到位置失效信号时,禁用所述移动测温机构的头部测温功能;
    纽扣式录影机,位于移动测温机构上,位于测温口的正上方且距离测温口的垂直距离小于等于预设距离阈值,用于对移动测温机构的测温环境执行录影操作,以获得与当前时刻对应的即时测温图像;
    畸变处理设备,位于移动测温机构内,与所述纽扣式录影机连接,用于对接收到的即时测温图像执行畸变校正处理,以获得并输出相应的畸变处理图像;
    自适应增强设备,与所述畸变处理设备连接,用于基于接收到的畸变处理图像中的最大噪声幅值决定对接收到的图像执行图像SVD增强处理的次数,以获得并输出相应的自适应增强图像,所述接收到的畸变处理图像中的最大噪声幅值越大,决定对接收到的图像执行图像SVD增强处理的次数越多;
    点像复原设备,与所述自适应增强设备连接,用于对接收到的自适应增强图像执行单次或多次点像复原处理,以获得并输出相应的信号复原图像;
    类型分析设备,与所述点像复原设备连接,用于在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图案;
    信号辨识机构,与所述类型分析设备连接,用于在所述信号复原图像中获取左眼的成像图案和右眼的成像图案之间且在鼻梁的成像图案正上 方的成像区域;
    位置检测机构,分别与所述主控设备和所述信号辨识机构连接,用于在所述成像区域的中心位置的像素点与所述信号复原图像的中心位置的像素点之间相隔的像素点的数量低于预设数量阈值时,发出位置可靠信号。
  2. 如权利要求1所述的基于测温位置分析的功能激活平台,其特征在于:
    所述位置检测机构还用于在所述成像区域的中心位置的像素点与所述信号复原图像的中心位置的像素点之间相隔的像素点的数量高于等于所述预设数量阈值时,发出位置失效信号。
  3. 如权利要求2所述的基于测温位置分析的功能激活平台,其特征在于:
    在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图案包括:基于眼部几何外形识别所述信号复原图像中的左眼和右眼各自的成像图案。
  4. 如权利要求3所述的基于测温位置分析的功能激活平台,其特征在于:
    在所述信号复原图像中分别识别出左眼、右眼以及鼻梁各自的成像图案包括:基于鼻梁几何外形识别所述信号复原图像中的鼻梁的成像图案。
  5. 如权利要求4所述的基于测温位置分析的功能激活平台,其特征在 于:
    所述信号辨识机构、所述位置检测机构和所述类型分析设备由同一块CPLD芯片来实现;
    其中,采用所述CPLD芯片中的不同位置的逻辑控制部件分别实现所述信号辨识机构、所述位置检测机构和所述类型分析设备。
  6. 如权利要求5所述的基于测温位置分析的功能激活平台,其特征在于,还包括:
    NFC配置接口,与所述信号辨识机构连接,用于基于NFC通信链路为所述信号辨识机构配置各项运行参数;
    其中,所述NFC配置接口还与所述位置检测机构连接,用于基于NFC通信链路为所述位置检测机构配置各项运行参数。
  7. 如权利要求6所述的基于测温位置分析的功能激活平台,其特征在于:
    所述NFC配置接口还与所述类型分析设备连接,用于基于NFC通信链路为所述类型分析设备配置各项运行参数。
  8. 如权利要求7所述的基于测温位置分析的功能激活平台,其特征在于:
    在所述NFC配置接口中,所述信号辨识机构、所述位置检测机构和所述类型分析设备具有不同的配置编号,用于在所述NFC配置接口执行运行参数配置时,对所述信号辨识机构、所述位置检测机构和所述类型分析设备进行辨别。
  9. 一种基于测温位置分析的功能激活方法,所述方法包括提供一种如权利要求1-8任一所述的基于测温位置分析的功能激活平台,用于根据移动测量机构当前测温的人体区域是否位于预设人体区域以决定是否激活相应的头部测温功能。
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