WO2014180337A1 - 热像监测控制装置、监测系统和热像监测控制方法 - Google Patents

热像监测控制装置、监测系统和热像监测控制方法 Download PDF

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Publication number
WO2014180337A1
WO2014180337A1 PCT/CN2014/077091 CN2014077091W WO2014180337A1 WO 2014180337 A1 WO2014180337 A1 WO 2014180337A1 CN 2014077091 W CN2014077091 W CN 2014077091W WO 2014180337 A1 WO2014180337 A1 WO 2014180337A1
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Prior art keywords
information
thermal image
notification information
unit
condition
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PCT/CN2014/077091
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English (en)
French (fr)
Inventor
薛晓勇
Original Assignee
王浩
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Publication of WO2014180337A1 publication Critical patent/WO2014180337A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N5/00Details of television systems
    • H04N5/30Transforming light or analogous information into electric information
    • H04N5/33Transforming infrared radiation
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/02Constructional details
    • G01J5/025Interfacing a pyrometer to an external device or network; User interface
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/02Constructional details
    • G01J5/026Control of working procedures of a pyrometer, other than calibration; Bandwidth calculation; Gain control
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/02Constructional details
    • G01J5/08Optical arrangements
    • G01J5/0806Focusing or collimating elements, e.g. lenses or concave mirrors
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/48Thermography; Techniques using wholly visual means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J2005/0077Imaging

Definitions

  • Thermal image monitoring control device monitoring system and thermal image monitoring control method
  • the thermal image monitoring control device, the monitoring system and the thermal image monitoring control method of the present invention relate to a thermal image monitoring device, a thermal image processing device that receives and processes thermal image data frames, and an application field of thermal image capture.
  • a thermal image monitoring device is set up, which is used for continuous monitoring of the object, and the collected thermal image data frame is transmitted to the background computer, and analyzed by the background computer, and the infrared thermal image is displayed, which is convenient for the user.
  • Monitoring in the background which realizes the separation of man and machine, can reduce the labor intensity of the user and ensure the safety of the user.
  • the patent document No. 200920113208. 9 uses a mobile workstation of the thermal image monitoring device of such technology.
  • the thermal image data frame is continuously transmitted to the background computer, and the user needs to monitor the thermal image display screen of the subject for a long time, and is prone to fatigue and misses a sudden situation. And increased the workload.
  • a thermal image monitoring device is temporarily installed on a hidden danger device of a substation.
  • the temperature of the hidden device is in a state of change due to changes in load, etc.
  • the workload monitored by the user is very large, especially in long-term monitoring. Users work overtime in turn; how to reduce the user's work intensity and achieve good monitoring results is a difficult point.
  • thermal image monitoring control device that can achieve the long-term observation without requiring the user to transmit the configured prescribed notification information according to the transmission condition of the prescribed notification information, thereby achieving continuous monitoring and not easily missing an emergency situation.
  • the present invention provides a thermal image monitoring control device, a monitoring system, and a thermal image monitoring control method, based on whether or not a predetermined external indication information is received, as one of a judgment condition or a judgment condition, to determine whether the transmission condition is met, and when the notification is met.
  • a predetermined external indication information is received, as one of a judgment condition or a judgment condition, to determine whether the transmission condition is met, and when the notification is met.
  • the condition for transmitting the information, the predetermined notification information is transmitted wirelessly, thereby reducing the workload of the subjective monitoring of the user and reducing the cost of the thermal image monitoring system.
  • the thermal image monitoring control device including:
  • a photographing unit configured to capture a frame for acquiring thermal image data
  • the determining unit is configured to determine whether the information receiving unit receives the predetermined external instruction information as one of the determination condition or the determination condition, and determines whether the transmission condition of the predetermined notification information is met;
  • An information configuration unit configured to configure the specified notification information
  • the communication control unit is configured to wirelessly transmit the predetermined notification information to a predetermined transmission target, wherein the communication control unit controls the information transmission unit to transmit the predetermined notification when the determination unit determines that the transmission condition is met. information.
  • the thermal image monitoring control device includes:
  • a photographing unit configured to capture a frame for acquiring thermal image data
  • the analysis unit is configured to analyze the external instruction information received by the information receiving unit to obtain at least one of a transmission condition, a configuration of the predetermined notification information, and information of the transmission object;
  • a determining unit configured to determine whether the condition for transmitting the specified notification information is met
  • An information configuration unit configured to configure the specified notification information
  • a communication control unit configured to: the control information transmitting unit wirelessly transmits the predetermined notification information to a predetermined transmission target; and when the determination unit determines that the transmission condition is met, the communication control unit controls the information transmission unit to transmit the predetermined notification information; The one or more of the transmission condition, the configuration of the predetermined notification information, the transmission target, and the number of transmissions are determined based on the information obtained by the analysis unit.
  • the thermal image monitoring and control method of the present invention comprises: An obtaining step, configured to obtain a thermal image data frame;
  • a determining step of determining whether the information receiving step receives the specified external indication information as one of a determination condition or a determination condition, and determining whether the transmission condition of the specified notification information is met;
  • Information configuration step configured to configure the notification information
  • a communication control step for transmitting a predetermined notification information to a predetermined transmission target in a wireless manner; wherein, when the determining step determines that the transmission condition is met, the communication control step control information transmission step transmits the predetermined notification information.
  • Fig. 1 is a block diagram showing a schematic configuration of a thermal imaging device 100 according to a first embodiment of the present invention.
  • Fig. 2 is a schematic view showing the mounting state of the thermal image device 100 of the embodiment.
  • Fig. 3 is a schematic view of an infrared thermal image displayed on the display unit.
  • Embodiment 4 is a schematic diagram of a transmission condition configuration interface of Embodiment 1.
  • Figure 5 is a schematic diagram of an analysis area configuration interface.
  • Fig. 6 is a diagram showing an example of display of analysis data and judgment threshold setting interface.
  • Fig. 7 is a display example of a predetermined notification information arrangement interface.
  • Fig. 8 is a display example of a transmission object configuration interface.
  • Fig. 9 is a flow chart showing the control of the first embodiment.
  • Fig. 10 is a view showing an example of display of predetermined notification information.
  • Fig. 11 is a view showing another example of display of the predetermined notification information.
  • Fig. 12 is a diagram showing an example of display of a transmission condition configuration interface of the second embodiment.
  • Fig. 13 is a flow chart showing the control of the second embodiment.
  • Fig. 14 is a flow chart showing the control of the third embodiment.
  • Fig. 15 is a schematic diagram before and after the transmission condition update of the third embodiment.
  • Figure 16 is a diagram showing a transmission condition configuration interface of the fourth embodiment.
  • Figure 17 is a flow chart showing the control of the fourth embodiment.
  • Fig. 18 is a flowchart showing the control of the fifth embodiment.
  • Fig. 19 is a view showing an example of display of the predetermined notification information of the fifth embodiment.
  • Fig. 20 is a flowchart showing the control of the sixth embodiment.
  • thermal imaging device 100 having the imaging member is taken as an example of the thermal image monitoring control device.
  • the photographing function is not essential to the present invention, and the present invention is also widely applicable to a thermal image processing apparatus (as another example of the thermal image monitoring control apparatus) that receives and processes a thermal image data frame from the outside, the thermal image.
  • a thermal image processing apparatus as another example of the thermal image monitoring control apparatus
  • Processing devices such as personal computers, personal digital assistants (PDAs), and the like.
  • the so-called thermal image data frame obtains data based on the output signal of the infrared detector.
  • the AD value data obtained by the AD detector after the output signal of the infrared detector is taken as an example.
  • the thermal image data frame may be, for example, image data of an infrared thermal image, and may be, for example, array data of temperature values, for example, a digital signal outputted by the infrared detector itself.
  • the thermal imaging device 100 of the first embodiment transmits a predetermined notification message to a predetermined user terminal in accordance with a predetermined mobile phone number based on a predetermined transmission condition based on the thermal image data frame obtained by the imaging unit 1.
  • Fig. 1 is a block diagram showing a schematic configuration of a thermal imaging device 100 according to an embodiment 1 of the present invention.
  • the thermal imaging device 100 includes an imaging unit 1, a temporary storage unit 2, a hard disk 3, a wireless communication unit 4, an image processing unit 5, an analysis unit 6, a display unit 7, a control unit 8, an operation unit 9, and a control unit 8.
  • the control and the data bus 10 are connected to the corresponding portions described above; the control unit 8 is responsible for the overall control of the thermal image device 100.
  • the imaging unit 1 is composed of an optical member (not shown), a lens driving member, an infrared detector, a signal preprocessing circuit, and the like.
  • the optical component consists of an infrared optical lens for focusing the received infrared radiation onto the infrared detector.
  • the lens driving section drives the lens in accordance with a control signal of the control section 8 to perform a focusing or zooming operation. In addition, it can also be a manually adjusted optical component.
  • Infrared detectors such as infrared or non-refrigerated infrared focal plane detectors, convert infrared radiation through optical components into electrical signals.
  • the signal pre-processing circuit comprises a sampling circuit, an AD conversion circuit, a timing trigger circuit, etc., and the signal output from the infrared detector is sampled and processed in a predetermined period, and converted into digital thermal image data by the AD conversion circuit (again
  • the thermal image data is, for example, 14-bit or 16-bit binary data
  • the thermal image data frame is constituted by the thermal image data of the predetermined array based on the control of the control unit 8.
  • the thermal image data frame is not limited to the inherent resolution of the infrared detector, and may be lower or higher than the infrared detector resolution.
  • the photographing section 1 is used as an example of an acquisition section for acquiring a thermal image data frame.
  • the temporary storage unit 2 is a buffer memory that temporarily stores a thermal image data frame output from the imaging unit 1 as a volatile memory such as a RAM or a DRAM. For example, based on the control of the control unit 8, the following processing is repeated, that is, the acquired thermal image data.
  • the frame temporarily stores a predetermined time portion, and when a new frame is acquired by the imaging unit 1, the old frame is deleted and a new thermal image data frame is stored.
  • the image processing unit 5, the analysis unit 6, the control unit 8, and the like The working memory functions to temporarily store the processed data.
  • the present invention is not limited thereto, and a memory, a register, and the like included in the corresponding processor such as the image processing unit 5, the analysis unit 6, and the control unit 8 may be interpreted as a temporary storage medium.
  • the hard disk 3 stores programs for control and various data used in various parts of the control.
  • the hard disk 3 can also be used to continuously record data such as acquired thermal image data frames.
  • the communication unit 4 performs transmission of the predetermined notification information in accordance with the transmission condition based on the control of the control unit 8.
  • the communication unit 4 is configured, for example, with a GPRS communication unit. Based on the control of the control unit 8, a short message, a multimedia message, or the like can be sent to a predetermined user terminal such as a mobile phone, and the number of the mobile phone can be stored in advance.
  • the thermal imaging device 100 is in a SIM card such as a GPRS communication unit.
  • the GPRS communication unit can also be replaced and passed through the corresponding communication network.
  • the communication unit 4 may be configured with one or more of the above communication units.
  • the communication unit 4 may have at least one of GPRS, GSM, CDMA, 3G, 4G, 5G, and WIFI units.
  • the user terminal is not limited to a mobile phone, and may be another portable communication terminal that performs data communication with the communication unit 4, such as a PDA, a tablet computer, a notebook computer, etc.; the user terminal may be a local area network or the like on the Internet.
  • the computer, the communication unit 4 is provided with, for example, a wireless communication unit such as GPRS, 3G, 4G, 5G, or a wireless network card (such as a WIFI unit), and transmits predetermined notification information to a computer on the Internet or a local area network.
  • the predetermined notification information to be transmitted is not limited to a communication terminal or the like that is transmitted to the user.
  • the communication unit 4 may transmit the predetermined notification information to the corresponding website server, and the user may log in to the website to view the predetermined notification information.
  • the communication unit 4 can also have other various implementation manners, for example, a communication unit configured by means of satellite transmission, such as maritime satellite IDEN, Beidou satellite, etc., to send short messages, pictures, voices, etc. to corresponding users according to a prescribed communication protocol. terminal.
  • a communication unit configured by means of satellite transmission, such as maritime satellite IDEN, Beidou satellite, etc.
  • the communication unit 4 can also use Bluetooth, IRDA, Zigbee, and the like to implement information transmission.
  • the communication unit 4 is configured to receive various external instruction information (for example, a short message or the like) to better control the thermal image device 100.
  • the communication unit 4 is an example of an information receiving unit and an information transmitting unit. Obviously, the information receiving unit and the information transmitting unit can also be implemented by using different wireless communication components.
  • the communication unit 4 may be a communication device connected to the thermal imaging device 100, and the thermal imaging device 100 has no communication portion in its configuration.
  • the thermal imaging device 100 has an information transmitting unit and an information receiving unit, and the information transmitting unit and the information receiving unit have one of wireless transmitting modules of GPRS, CDMA, GMS, 3G, 4G, 5G, and WIFI.
  • the thermal image monitoring system composed of the thermal image device 100 and the user terminal can be constituted by one or more thermal image monitoring control devices and one or more user terminals such as mobile phones, PDAs, etc., and/or web servers.
  • the image processing unit 5 performs predetermined processing on the thermal image data frame obtained by the imaging unit 1, and the processing of the image processing unit 5 is converted into a suitable display for correction, interpolation, pseudo color, synthesis, compression, decompression, and the like. Processing of data such as use and recording. For example, each time the display timing comes, a frame of each predetermined time interval is selected and read from a thermal image data frame temporarily stored in the temporary storage unit 2 for a predetermined time period, and pseudo color processing is performed.
  • image data of the infrared thermal image an embodiment of the pseudo color processing, for example, a range of the thermal image data (in the present embodiment, the thermal image data refers to the AD value) or a set range of the AD value according to the thermal image data frame
  • the specific color value corresponding to the thermal image data in the pseudo color plate range is taken as the image data of the corresponding pixel position in the infrared thermal image.
  • the image data obtained from the pseudo color processing by the image processing unit 5 is transferred to the temporary storage unit 2 used as a buffer memory.
  • the image processing unit 5 can be realized by, for example, a DSP or another microprocessor, a programmable FPGA, or the like, or can be integrated with the processor of the analysis unit 6 and the control unit 8.
  • the analyzing unit 6 is configured to analyze a predetermined frame of the acquired thermal image data frame to obtain analysis data.
  • the analysis of the predetermined frame of the thermal image data frame may be performed by analyzing all the thermal image data frames continuously acquired by the acquisition unit, or analyzing the predetermined frames in the acquired thermal image data frame (for example, specifying The thermal image data frame corresponding to the timing is analyzed, or the frame obtained by the multi-frame operation, etc., thereby reducing the processing load accompanying the analysis; wherein, for example, the acquired thermal image data frame can also be recorded on the hard disk 3 In the case, when the transmission condition or the analysis timing or the like is met, the recorded thermal image data frame is read for analysis.
  • the analysis data may be data obtained by analyzing one or more frames of thermal image data frames.
  • the analysis data is a temperature value obtained by temperature analysis, such as a maximum temperature, an average temperature, a lowest temperature in a specific analysis region, or a temperature difference value in a different analysis region.
  • the analysis unit 6 performs analysis processing based on a predetermined analysis region and analysis mode.
  • the analysis area represents a specific analysis area in the thermal image data frame, such as a point, a line, a surface, or an entire thermal image data frame as an analysis area.
  • the so-called analysis mode for example, calculates the highest temperature, the lowest temperature, and the average of the analysis area. Temperature, temperature difference between different analysis areas, etc.
  • the analysis area and the analysis mode may be preset by the user, in another example, the thermal image device 100 is default; in yet another example, the analysis area and the analysis mode may also be according to prescribed rules.
  • the analysis unit 6 has an analysis area setting unit for setting an analysis area related to the analysis, and an analysis mode setting unit for setting an analysis mode related to the analysis.
  • the analysis unit 6 performs predetermined processing such as correction and interpolation on the analyzed thermal image data frame, extracts thermal image data determined by the analysis region based on a predetermined analysis region, and performs temperature value conversion processing to obtain the heat.
  • the temperature value corresponding to the data is then analyzed and calculated according to the specified analysis mode.
  • the thermal image data in each analysis area (S01, S02) is sequentially converted and analyzed, and each is obtained.
  • the highest temperature value of the analysis area is stored in the predetermined area of the temporary storage unit 2 in association with the calculated maximum temperature value, and then the final analysis data is calculated according to the relationship between the analysis areas in the analysis mode. (S01MAX-S02MAX).
  • the process of converting the thermal image data in the analysis region into a temperature value may be to convert all the thermal image data in the analysis region into a temperature value; or the predetermined partial thermal image data may be converted into a temperature. Value; it is also possible to determine the conversion of the thermal image data according to the different modes of calculating the highest, lowest, average temperature, etc. in the analysis mode, whether to convert part of the thermal image data in the analysis area, or all; for example, the analysis mode is computational analysis For the highest temperature in the region, the thermal image data in the analysis region can also be compared first, and the maximum AD value is converted into the temperature value, and the thermal image data in the analysis region is not necessary.
  • the AD values of the pixels are all converted to temperature values.
  • the case where the algorithm is different is also included.
  • the AD value of the adjacent pixel of the maximum average value is not converted into the temperature by the average value of the AD values of the predetermined number of adjacent pixels instead of a single pixel.
  • the value, and the average value of the temperature values of the adjacent pixels is taken as the highest temperature value, and the maximum temperature can also be calculated from the AD value of a single pixel.
  • the thermal image data is converted into a temperature value by a predetermined process, for example, according to the set emissivity of the object, the ambient temperature, the humidity, the distance from the thermal image device 100, and the like, and the AD value of the thermal image data and the temperature.
  • the conversion factor is obtained by specifying a conversion formula to obtain a temperature value.
  • the thermal image data determined by the analysis area may be configured to analyze the thermal image data in the regions S01 and S02, or may be configured to analyze the thermal image data outside the regions S01 and S02, or may be configured as The thermal image data of the pixel in which the lines of the regions S01 and S02 are located is analyzed.
  • the above example illustrates the case where the temperature value analysis data is obtained according to the analysis area, but is not limited thereto, and the analysis data for the thermal image analysis has various conditions depending on the application, and is not limited to the temperature value; for example, a specific temperature value
  • the percentage content in the pixel array of the thermal image data frame, etc.; based on the AD value of the thermal image data frame, the gray value, the color value of the pseudo color, etc., the obtained analysis data, or the AD value is converted into the radiant energy value , gray value, emissivity value, color value, etc. for analysis.
  • the invention is equally applicable to these situations.
  • the analysis unit 6 may be implemented by, for example, one or more of a DSP, a programmable FPGA, and another microprocessor, or may be a processor integrated with the processor of the image processing unit 5 and the control unit 8. to realise.
  • the display unit 7 for example, a liquid crystal display device for displaying the image data for display stored in the temporary storage unit 2 on the display unit 7.
  • the display unit 7 may be another display device that can be wired or wirelessly connected to the thermal image device 100, and the thermal image device 100 itself may have no display portion in its electrical configuration.
  • the control unit 8 controls the overall operation of the thermal imaging device 100, and a program for control and various data used for control of each part are stored in a storage medium such as the hard disk 3.
  • the control unit 8 is realized by, for example, a CPU, an MPU, a SOC, a programmable FPGA, or the like.
  • control unit 8 has a judging unit for judging whether or not the transmission condition of the predetermined notification information is satisfied; wherein the transmission condition of the predetermined notification information can be judged based on one or more of the determination conditions.
  • a preferred embodiment is for determining whether or not the transmission condition is met as one of a determination condition or a determination condition based on the external instruction information received by the communication unit 4; in the first embodiment, whether or not the communication unit 4 receives the prescribed external condition
  • the instruction information is used to determine whether or not to transmit the prescribed notification information.
  • the determining condition includes at least one or more of the following conditions:
  • analyzing the judgment condition for example, comparing the analysis data with a predetermined judgment value (for example, a set threshold value) obtained by analyzing the predetermined frame of the thermal image data frame by the analysis unit; It also includes an analysis and judgment condition based on the diagnosis result.
  • a predetermined judgment value for example, a set threshold value
  • timing conditions such as determining whether the specified timing is reached
  • 3) query conditions for example, determining whether the communication unit receives external indication information (such as a phone call, a short message, a mail, other specific information, etc.); for example, according to the content of the external indication information received by the communication unit;
  • external indication information such as a phone call, a short message, a mail, other specific information, etc.
  • the state condition of the thermal image monitoring control device for example, whether the state information of the thermal image monitoring control device is obtained or the comparison result of the state information with the predetermined value is used as the state condition.
  • the status information such as the power state, the tilt attitude of the thermal image monitoring control device, and the environmental conditions such as wind speed, ring temperature, humidity, and the like.
  • a condition of the specific trigger information such as whether a specific trigger information is obtained or a comparison result of the specific trigger information with a prescribed value as a condition of the specific trigger information.
  • the specific trigger information is trigger information obtained based on, for example, a device that is wired or wirelessly connected to the thermal image monitoring control device, such as a load obtained by a device connected to the thermal image monitoring control device, a rotational speed, and the like. information.
  • the condition of the orientation information for example, whether the orientation information is received or the comparison result of the orientation information with the predetermined value is used as the condition of the orientation information.
  • the orientation information such as GPS information of the installation location of the thermal image monitoring control device 100, such as the GPS information of the thermal image monitoring control device 100 itself.
  • a judgment condition for example, in the first embodiment, when an external short message is received, it is determined that the transmission condition of the predetermined notification information is satisfied.
  • the plurality of judgment conditions may be determined to be in accordance with the transmission condition of the predetermined notification information when all of the plurality of judgment conditions are judged to be in conformity.
  • the plurality of judgment conditions may be a condition for determining that the one of the plurality of judgment conditions meets, that is, the condition that the predetermined notification information is met, wherein a judgment condition may further include a plurality of sub-conditions, and the sub-condition When both are satisfied, it is judged that the judgment condition is satisfied.
  • the judgment condition may be fixed or may be changed according to a predetermined condition.
  • the external indication information and the analysis data are collectively used as a judgment condition, and when the predetermined threshold is reached, the original threshold is updated (for example, an increase is specified). Value);
  • a subsequent addition of other judgment conditions, such as timing conditions of different timings, is used as a condition for judging whether or not to transmit.
  • an external instruction message such as a short message is received, and the original threshold value is updated according to the threshold value in the short message as a transmission condition.
  • control unit 8 has an information arrangement unit for arranging the predetermined notification information to be transmitted, and the predetermined notification information may include, for example, analysis data, time corresponding to the analysis data, analysis chart, statistical data, diagnostic information, infrared data, and orientation information.
  • the predetermined notification information may include, for example, analysis data, time corresponding to the analysis data, analysis chart, statistical data, diagnostic information, infrared data, and orientation information.
  • the control unit 8 may include status information (such as attitude, power supply, etc.) of the thermal image monitoring control device, environmental conditions (such as ambient temperature, wind speed, etc.), trigger information obtained by the outside world (such as the load of the object, etc.).
  • the analysis data may be analysis data obtained by analyzing one or more specified frames of the acquired thermal image data frame; for example, analyzing data obtained by specifying frame analysis at one or more time points in a predetermined time period, for example, determining The analysis data obtained by analyzing the thermal image data frame acquired in accordance with the transmission condition, for example, the analysis data that was transmitted to the largest value greater than the threshold value during the previous transmission period.
  • the time corresponding to the analysis data for example, the acquisition time of the thermal image data frame for obtaining the analysis data, for example, the analysis time corresponding to the analysis data, the transmission time of the transmission analysis data, and the like, may be variously applicable.
  • the analysis chart such as an analysis chart obtained based on the analysis data or the analysis data and the corresponding time series information, includes various curves, histograms, data lists, etc., for example, analyzing the data trend curve, for example, multiple thermal image data during a specified time period.
  • the generation of the analysis data trend curve may be obtained by analyzing the data and the corresponding timing, and the timing may be, for example, one of the analysis time and the sequence time of the analysis data and the corresponding thermal image data frame, and the analysis processing time of the analysis data. obtain.
  • an analysis data-time curve obtained based on the thermal image data frames of a plurality of predetermined time points, the analysis data of each thermal image data frame obtained by the analysis, and the timing of the corresponding thermal image data frame, such as the time of the shooting time.
  • statistical data statistical data related to analysis data, trigger information, etc., such as the number of times the analysis data exceeds the threshold in a specified time period.
  • the diagnostic information for example, the comparison result obtained by comparing the analysis data obtained by one or more frames of thermal image data frames with a threshold.
  • the infrared data for example, the acquired thermal image data frame, for example, an infrared thermal image generated based on the acquired thermal image data frame, may be a localized, or reduced, or complete infrared thermal image or thermal image data frame; One or more frames of infrared data that can be obtained from a thermal image data frame acquired in one or more frames.
  • the infrared data and the analysis data and the like may be obtained based on a specified thermal image data frame (which may be one or more frames); preferably, the infrared data is in a format convenient for the user terminal to view, such as a general picture browsing format.
  • the user terminal does not have to install software for processing the thermal image data frame pseudo color.
  • the background computer in the prior art thermal image monitoring system if it is necessary to analyze the thermal image data frame to obtain the analysis data, often needs to install dedicated analysis software, which increases the complexity of the background software.
  • the infrared data in the prescribed notification information may be one or more frames, a multi-frame video clip such as an infrared thermal image.
  • the orientation information for example, the GPS information of the location where the thermal imaging device 100 is installed, and the manner in which the orientation information is acquired, for example, the communication unit 4 may be a wireless communication unit with a positioning function, or further include a thermal imaging device 100
  • the GPS unit transmits the orientation information (such as GPS) of the thermal image device 100 to the user when transmitting.
  • the number of the thermal image monitoring control device such as the number of the thermal image device 100, when using a plurality of thermal image monitoring control devices, facilitates the user to understand the source of the notification information, and facilitates the reception of the specified notification information according to
  • the authentication information such as the number of the thermal image monitoring control device is processed and managed.
  • status information such as the tilt posture of the thermal image device 100, the power state, and the like.
  • trigger information for example, trigger information obtained based on other devices connected to the thermal image device 100, and the like.
  • the information configuration unit may also process the content of the prescribed notification information into a prescribed format conforming to the communication unit 4 for information transmission and user terminal reception. For example, when transmitting an image multimedia message including an infrared thermal image, the infrared thermal image is compatible with the MMS mobile phone.
  • the format is processed, for example, in the MMS format, to facilitate the transmission of prescribed notification information in a prescribed format.
  • the processing format of the transmission terminal type and the corresponding prescribed notification information packet may be previously stored in a storage medium such as the hard disk 3.
  • the information arrangement unit is arranged to arrange the predetermined notification information after the determination unit determines that the transmission condition is met.
  • the information configuration unit may be configured to configure the predetermined notification information before the determination unit determines that the transmission condition is met; and when the transmission condition is not satisfied, for example, the newly acquired thermal image data may be The frame updates the specified notification information; if it is satisfied, it is sent.
  • the information arrangement unit is configured to arrange different or identical predetermined notification information according to different information arrangement conditions; the information configuration condition is, for example, the same condition as the transmission condition, or may be another predetermined condition.
  • the content of the predetermined notification information arranged by the information arrangement unit may be a fixed content configuration, but may be configured as a different content configuration; for example, when the transmission condition is met, for example, if the analysis data is smaller than a predetermined threshold, the configured notification information includes The analysis data includes, for example, analysis data and time; when greater than a predetermined threshold, the configured notification information includes at least a thermal image data frame, such as analysis data, time, and infrared data. This can achieve the beneficial effects of reducing the amount of data sent, prompting the user, and the like.
  • the analysis unit 6 analyzes the obtained analysis data, and the analysis data related to the content of the specified notification information, such as the specified notification information, including the analysis data and/or information obtained based on the analysis data (eg, diagnostic information, such as Analytical chart), the analysis data can be obtained by the same and/or different analysis processing as the analysis data related to determining whether the transmission condition is met; thereby, it is beneficial to provide rich analysis data while reducing the burden of the analysis processing. effect.
  • control unit 8 includes a communication control unit, and when the determination unit determines that the transmission condition of the predetermined notification information is satisfied, the control communication unit 4 transmits the predetermined notification information.
  • the communication control unit may further have a transmission target control unit that can control the transmission of the prescribed notification information to the corresponding identical or different transmission objects according to different transmission configuration conditions, and/or configure different or identical transmission times. For example, when the transmission condition is met, when the analysis data is smaller than the predetermined threshold, it is sent to the corresponding website server, and when it is greater than the specified threshold, it is sent to the mobile phone of the specified user.
  • the number of transmissions indicates that the one-time transmission condition is met, whether the predetermined notification information is sent once, or is continuously sent multiple times; usually, the default is 1.
  • the transmission order indicates a transmission order of the transmission object and a sequential transmission order when one or more pieces of prescribed notification information are generated.
  • control unit 8 may further have a diagnosis unit for obtaining a diagnosis result based on the analysis result of the analysis unit 6, for example, obtaining a corresponding diagnosis result based on a comparison between the analysis data and the predetermined determination value, representing the diagnosis result.
  • the diagnostic information may be recorded in advance in the storage medium of the thermal imaging device 100 together with the comparison relationship between the analysis data and the predetermined determination value; obviously, different diagnostic information may be corresponding to the different comparison relationship between the analysis data and the predetermined determination value. .
  • the diagnostic information corresponding to S01MAX-S02MAX>4°C is a serious defect.
  • control unit 8 may further include an analysis unit that analyzes the external instruction information wirelessly received by the communication unit to obtain at least one of the transmission condition, the configuration of the predetermined notification information, the transmission target, and the number of transmissions.
  • control unit 8 may have a timing unit for performing timing of time; for example, based on the information of the current time (for example, year, month, day, hour, minute, and second) of the counted and the time of the timing, the time is realized. timing.
  • the current time for example, year, month, day, hour, minute, and second
  • Operation unit 9 For the user to perform various instruction operations or input various operations such as setting information, the control unit 8 executes the corresponding program based on the operation signal of the operation unit 9.
  • the operation unit 9 can perform related operations using a button, a display unit 7 (with a touch screen), or a voice recognition unit (not shown).
  • the structure of the thermal image device 100 may not have an operation portion, and the user realizes the operation of the thermal image device 100 through an operation portion that can be wirelessly or wiredly connected to the thermal image device 100; or an operation portion is not required.
  • the following describes the application and control flow of the thermal imaging device 100.
  • the application scenario such as the power industry
  • the user finds that the temperature of a certain device is abnormal, in order to properly arrange the power failure repair work, it is necessary to evaluate whether the subject has a deteriorating trend or evaluate the deterioration.
  • the user erects the thermal imaging device 100 to continuously monitor the subject.
  • the erection of the thermal image device 100 will be described with reference to FIG. 2, for example, by a tripod.
  • the power supply portion may be a built-in battery, a battery connected to the thermal image device 100, or an external power source (such as 220V). .
  • the control unit 8 controls the overall operation of the thermal image device 100 and the control for executing the plurality of mode processes based on the control program stored in the hard disk 3 and various data used in the respective partial controls.
  • the control unit 8 initializes the internal circuit, and then enters the standby shooting mode, that is, the imaging unit 1 captures and obtains a thermal image data frame, and the image processing unit 5 performs a predetermined process on the thermal image data frame captured by the imaging unit 1 and stores it in the temporary In the storage unit 2, the display unit 7 displays a real-time infrared thermal image, such as an infrared thermal image as shown in FIG.
  • the display portion 7 can display a configuration interface as shown in FIG. 4-8 for the user.
  • the display unit 7, the operation unit 9, the control unit 8, and the like constitute an example of the arrangement member for the user to configure at least one of the transmission condition, the configuration of the predetermined notification information, the transmission destination, the number of transmissions, and the like.
  • a combination of one or more transmission conditions, a configuration of the prescribed notification information, a transmission destination, and a number of transmissions may be configured, and the default value of the thermal imaging device 100 may be employed by the user.
  • the display unit 7 and the operation unit 9 may be external devices that can be connected to the thermal imaging device 100, and the thermal imaging device 100 itself has no display unit or operation unit.
  • the transmission condition may be configured as one of a timing condition, a query condition, an analysis judgment condition, or the like, or a plurality of times, as a transmission condition for whether or not to transmit.
  • a transmission condition for whether or not to transmit.
  • update conditions corresponding to different transmission conditions can be configured.
  • the timing condition 401 the time when the user enters the timing, and whether or not the timing condition is one of the transmission conditions or the transmission conditions.
  • the query condition 402 the user selects whether to receive the external indication information or the determination condition obtained according to the external indication information as one of a transmission condition or a transmission condition; the external indication information, for example, the communication unit 4 receives the specified user by moving A message such as a short message or a telephone transmitted by a telephone or the like, for example, a specific information transmitted by a user via an external computer such as an email, etc.
  • the predetermined user for example, a user who sends a short message to the thermal imaging device 100, but may also reserve a predetermined user.
  • the verification information such as the telephone number, the instruction, the user verification password, and the like, when the received external indication information includes the verification information, the received external indication information is valid.
  • an analysis unit is further provided for analyzing the content of the received external instruction information of the predetermined user, and determining the configuration of the transmission condition, the predetermined notification information, the transmission target, and the like.
  • the analysis and determination condition 403 is used for the user to configure the analysis area and the analysis mode related to the analysis and judgment (the calculation mode of the analysis data in the analysis area such as maximum, minimum, average, etc., the calculation relationship of the analysis data between the analysis areas, etc.) And the relationship between the plurality of judgment sub-conditions composed of the predetermined judgment value, the plurality of analysis data, and the corresponding judgment value corresponding to the analysis data (analysis data obtained according to the analysis region and the corresponding analysis mode) (and, or, and
  • the nature of the subject state is "normal, defective, serious defect", etc.
  • the judgment basis, the type of defect, the degree of defect, the treatment suggestion, and the like can be used as the remark information of the diagnosis information.
  • the display unit 7 displays an interface as shown in FIG. 5, and displays a selection column 501 of the infrared thermal image and the analysis area (point, line, and surface), the user.
  • the face (box) is selected from the dotted plane, and the analysis areas S01 and S02 are set in the infrared thermal image.
  • the configuration of the prescribed notification information and the like will be described with reference to the configuration interface shown in FIG.
  • one or more of the analysis data, the time corresponding to the analysis data, the analysis chart, the statistical data, the diagnostic information, the infrared data, the orientation information, and the number of the thermal image device 100 may be used as the content of the prescribed notification information.
  • Composition Further, it is also possible to configure a content composition corresponding to different predetermined notification information according to different information configuration conditions.
  • the configuration of the transmission object may be described.
  • the wireless communication unit 4 may be a mobile phone number, a mailbox, a QQ number, a network address, etc., and may provide a notification to one or more transmission objects.
  • the transmission of information it is also possible to configure the same or different predetermined notification information, the number of transmissions, and the like to be transmitted to different transmission objects according to different transmission configuration conditions.
  • the user performs the following settings: Sending conditions: receiving an external short message (shown in Figure 4); analyzing areas are S01, S02 (shown in Figure 5); "S01MAX -S02MAX>4°C "The corresponding diagnostic information is "serious defect" (shown in Figure 6); the notification information is the analysis data and diagnostic information (shown in Figure 7); the destination is: Mobile phone number 139XXXXXXX ( Figure 8)).
  • the user's configuration is expected to achieve the goal of transmitting the prescribed notification information including the analysis data and the diagnostic information to the mobile phone number 1390XXXXXXX every time an external short message is received.
  • the predetermined notification information may be transmitted to the destination of the received short message.
  • the control section 8 stores the set configuration in the hard disk 3 (for example, as a configuration file) as a default configuration of the thermal imaging device 100, and does not need to be used every time. Set it all once, and then return to the standby shooting state.
  • the related configuration can be performed by the user is exemplified, it is not limited thereto, and may be an embodiment in which the thermal image device 100 is configured at the time of shipment, that is, the related configuration of the above various processes is configured.
  • Step A01 acquiring a thermal image data frame, and transmitting the thermal image data frame obtained by the imaging unit 1 to the temporary storage unit 2;
  • step A02 the thermal image data frame obtained by the imaging unit 1 in real time, for example, is read, and the analysis unit 6 performs analysis; specifically, the analysis unit 6 is based on the set analysis regions S01 and S02.
  • the thermal image data, the analysis data (S01 max - S02m ax ) is obtained, and is stored in a predetermined area of the temporary storage unit 2;
  • step A03 it is judged whether the specified transmission condition is met?
  • step A02 If the specified external indication information is not received, the process returns to step A02, and the above steps are repeated, wherein when the subsequent obtained analysis data (S01max-S02max) is greater than the previously stored analysis data (S01 max - S02 max ), Stored, and when less than the previously stored analytical data, the previously stored analytical data will remain. Further, the corresponding time of the analysis data obtained by each analysis may be stored in a storage medium such as the temporary storage unit 2. When the specified external indication information is received, the next step is entered.
  • Step A04 the information arrangement unit arranges the predetermined notification information. Specifically, the diagnosis is performed based on the analysis data stored in the predetermined area of the temporary storage unit 2 and the analysis data and the threshold value (4° C.). The information is used to configure prescribed notification information, which is, for example, "serious defect" when it is greater than 4 ° C, and normal by 4 ° C or less.
  • step A06 the control sends the notification information.
  • the communication control unit controls the communication unit 4 to transmit a short message specifying the notification information to the user's mobile phone (139 XXXXXXX); an example of the short message specifying the notification information shown in FIG.
  • the short message example is as shown in the prescribed notification information shown in FIG.
  • Step A07 judging whether to exit, if exiting, ending, if not exiting, returning to step A01, repeating the above processing.
  • the transmission network is a mobile communication network, there is no need to build a network, and since the notification information is automatically transmitted to the user's mobile phone at a predetermined timing, the workload of the user is reduced, the timeliness of monitoring is improved, and the monitoring efficiency is improved. Effect (one user can monitor multiple thermal imaging devices 100 at the same time); since the transmitted information contains analysis data, diagnostic information, etc., the method of continuously transmitting thermal image data frames compared to the prior art may not be necessary at the receiving end.
  • the analysis software that installs the thermal image data frame analyzes and obtains the analysis data, which simplifies the user's use operation; and is beneficial to ordinary users.
  • the thermal image monitoring control device is in the application form of the portable thermal imaging device with the shooting function, it is advantageous to quickly let other users who are not in the scene quickly understand the shooting situation.
  • the specified notification information does not have to include the analysis data, and may only include the infrared thermal image obtained by the specified thermal image data frame, so step A03 may be omitted or may be replaced by other processing steps, correspondingly, as shown in FIG.
  • the structure of the analysis unit 6 can be removed in the structure of the thermal imaging device 100.
  • the second embodiment is different from the first embodiment in that, in the present embodiment, the control unit 8 has a recording unit (not shown) for continuously recording the acquired thermal image data frames, and configuring the prescribed notification information.
  • the specified notification information is configured based on the recorded thermal image data frame. It is assumed that the scenario of the application is the same as that of Embodiment 1, and the configuration of the analysis region and the analysis mode related to the analysis data (S01 max - S02m ax ) is similar to that in Embodiment 1.
  • Step B01 acquiring a thermal image data frame, and transmitting the thermal image data frame obtained by the imaging unit 1 to the temporary storage unit 2;
  • step B02 a predetermined thermal image data frame is recorded, for example, the acquired thermal image data frame is recorded in the hard disk 3 according to a predetermined frame rate;
  • step B03 it is judged whether or not the transmission condition of the predetermined notification information is met. If the specified external indication information is received, proceed to the next step.
  • Step B04 the information arrangement unit configures the predetermined notification information. Specifically, the thermal image data frame recorded in the hard disk 3 is read, and the analysis unit 6 analyzes the recorded thermal image data frame to obtain the maximum value. Analytical data (S01 max -S02m ax );
  • step B05 the control sends the notification information.
  • the communication unit 4 transmits a short message specifying the notification information to the user's mobile phone; for example, an example of the short message specifying the notification information shown in FIG.
  • Step B06 judging whether to exit, if exiting, ending, if not exiting, returning to step B01, repeating the above processing.
  • the third embodiment differs from the first and second embodiments in that the present embodiment has an update unit (the control unit 8 has an update unit and is not shown) for updating the judgment condition, and after updating the judgment condition,
  • the determination unit is configured to determine whether or not the transmission condition of the predetermined notification information is met based on the updated determination condition.
  • the prescribed notification information when the inquiry short message is received, the prescribed notification information is transmitted to the user; in the actual application, when the subject is deteriorated, the user desires to receive the notification information more.
  • control unit 8 further has an update unit for updating the determination condition, and the other configuration is the same as that of the thermal image device 100 in the first embodiment, and the illustration is omitted. It is assumed that the scenario of the application is the same as that of Embodiment 1, and the analysis data is obtained similarly to that in Embodiment 1.
  • Step C01 acquiring a thermal image data frame, and transmitting the thermal image data frame obtained by the imaging unit 1 to the temporary storage unit 2;
  • step C02 the thermal image data frame obtained by the imaging unit 1 in real time, for example, is read, and the analysis unit 6 performs analysis to obtain analysis data (S01 max - S02m ax );
  • step C03 it is judged whether or not the transmission condition of the prescribed notification information is met.
  • step C02 if the inquiry short message is not received, the process returns to step C02, and the above steps are repeated. If yes, go to the next step.
  • Step C04 The information configuration unit configures the predetermined notification information.
  • Step C05 controlling to send the prescribed notification information.
  • the communication unit 4 transmits a short message specifying the notification information to the user's mobile phone; for example, an example of the short message specifying the notification information shown in FIG.
  • Step C06 judging whether the update condition is satisfied?
  • step C07 the transmission condition is updated, for example, as shown in Fig. 15, the timing time (10 minutes) is increased as one of the transmission conditions;
  • step C08 it is judged whether to exit, if it is exited, it ends; if it is not exited, it returns to step C01, and the above processing is repeated. Then, in step C03, it is judged whether the predetermined transmission condition is satisfied, that is, the updated timing (10 minutes) is reached or one of the inquiry short messages is received, and corresponding control is performed; and in step C06, it is determined again whether the update is satisfied.
  • the timing is used as one of the updated transmission conditions, it is not limited thereto, and there may be a plurality of update conditions of the transmission conditions, for example, adding other determination conditions (for example, comparing the analysis data with a specific threshold) ) as a condition for judging whether or not to send.
  • Embodiment 4 is different from Embodiments 1 and 2 described above in that, in order to avoid excessive interruption to the user while satisfying the requirement of instant transmission under specific conditions, the thermal imaging device 100 has a plurality of transmission conditions, which are satisfied. One is to send.
  • the predetermined notification information when the predetermined external instruction information is received, the predetermined notification information is transmitted to the user; there may be a case where the subject defect is missing.
  • the user also wants to receive notification information when there is an abnormality in the monitored object.
  • a transmission condition setting menu of the thermal imaging device 100 When the user selects to enter the menu mode through the operation portion, the display portion 7 displays a configuration interface for setting the transmission condition as shown in Fig. 16 for the user. Set (add, modify, delete) the sending conditions.
  • a first sending condition setting configured to configure one or more of a timing condition, a query condition, and an analysis judgment condition as a first condition for whether to transmit, when the configuration of the first condition has multiple sub-conditions, A plurality of conditions are satisfied to satisfy the transmission condition.
  • the second and second transmission condition settings are used to configure the query condition, the analysis judgment condition, and the like as the second condition, the third condition, and the like for whether or not to transmit, and obviously, there may be more transmission conditions.
  • the user's configuration is as shown in FIG. 16.
  • the first transmission condition is a timing condition (120 minutes) and an analysis determination condition (S01MAX-S02MAX>4°C)
  • the second transmission condition is that the user's external indication information is received (in this example)
  • the third sending condition is an analysis and judgment condition (S01MAX-S02MAX >8°C) ; wherein, the user expects to query the analysis data by means of texting, and the limit temperature difference that the user can endure is 8 °C, if it is greater than 8 °C, it is expected to get the notification information immediately, in order to arrange power outage maintenance.
  • Step D01 acquiring a thermal image data frame, and transmitting the thermal image data frame obtained by the imaging unit 1 to the temporary storage unit 2;
  • step D02 the thermal image data frame obtained by the imaging unit 1 for immediate imaging, for example, is read, and the analysis unit 6 performs analysis; specifically, the analysis unit 6 is based on the set analysis regions S01, S02.
  • the pixels of the thermal image data calculate the maximum temperature, and obtain the analytical data (S01MAX-S02MAX);
  • step D03 it is judged whether or not the predetermined second and third transmission conditions are met.
  • the obtained analysis data (S01MX-S02MAX) is compared with a predetermined judgment value (threshold value of 8 ° C), and if it is smaller than the predetermined judgment value, it is determined whether the user's inquiry short message is received, for example, Otherwise, proceed to step D04, if one of them is YES, then jump to step D05;
  • Step D04 determining whether the first transmission condition is met, that is, determining whether there is a greater than a predetermined threshold (4 ° C) during the predetermined timing; and step D05, the information configuration unit configuring the predetermined notification information; specifically, according to The obtained analysis data and the remark information corresponding to the threshold value are used to configure the prescribed notification information;
  • step D06 the control sends the notification information.
  • the communication unit 4 transmits a short message specifying the notification information to the mobile phone of the user;
  • step D07 it is judged whether to exit, if it is exited, it ends. If it is not exited, it returns to step D01, and the above processing is repeated.
  • Embodiment 5 is different from Embodiments 1, 2, 3, and 4 described above in that, in order to facilitate the user to understand the trend of the analysis data during the monitoring process, the thermal imaging device 100 obtains the analysis chart based on the analysis data and transmits the analysis chart to the transmitting object;
  • the thermal imaging device 100 has: a storage unit for storing analysis data obtained by analyzing a plurality of predetermined frames and a time corresponding thereto; and an information arrangement unit configured to configure predetermined notification information, wherein the predetermined notification information is at least The analysis data stored in the storage unit and its corresponding time or analysis chart obtained based on the analysis data and the corresponding time are included.
  • the analysis chart is an analysis data-time curve obtained by analyzing data obtained by analyzing a plurality of thermal image data frames at a predetermined time, and corresponding prescribed time (e.g., acquisition time of a thermal image data frame).
  • Step E02 acquiring a thermal image data frame, and transmitting the thermal image data frame obtained by the imaging unit 1 to the temporary storage unit 2;
  • step E03 the thermal image data frame obtained by the imaging unit 1 for immediate imaging, for example, is read, and the analysis unit 6 performs analysis; specifically, the analysis unit 6 is based on the set analysis regions S01, S02.
  • the pixels of the thermal image data calculate the maximum temperature, and obtain the analytical data (S01MAX-S02MAX);
  • step E04 the analysis data and the corresponding time (such as the acquisition time of the thermal image data frame) are stored in a predetermined area of the temporary storage unit 2; in addition, the analysis data and the corresponding time may be stored in the hard disk;
  • step E05 it is determined whether the sending condition is met, for example, determining whether the user's query message is received; if not, returning to step E02, and if yes, proceeding to the next step.
  • Step E06 the information arrangement unit arranges the predetermined notification information.
  • the analysis is generated based on the analysis data stored in the temporary storage unit 2 and the respective time (a predetermined number of analysis data and corresponding time can be selected). Data-time trend curve.
  • the diagnostic information corresponding to the maximum analysis data (S01MAX-S02MAX) larger than the threshold value can also be used as the predetermined notification information.
  • step E07 the control sends the notification information.
  • the communication unit 4 transmits a short message specifying the notification information to the user's mobile phone;
  • step E08 it is judged whether to exit, if it is exited, it ends. If it is not exited, it returns to step E01, and the above processing is repeated.
  • the predetermined notification information shown in FIG. 19 which includes a plurality of contents constituting the predetermined notification information, analysis data, diagnostic information, and analysis data-time curve (the ordinate analysis value, the abscissa time value, the threshold boundary, etc. are omitted.
  • the display obviously can also be displayed).
  • the analysis data-time curve is obtained based on the analysis data of a plurality of times, it is transmitted to the user, the intuitiveness of monitoring the prescribed notification information is improved, and the user can grasp the subject.
  • the change trend further improves the usability of the thermal image device 100; and, since the transmitted information contains information such as an analysis chart, it is not necessary to install the thermal image data at the receiving end as compared with the method of transmitting the thermal image data frame.
  • the analysis software of the frame analyzes and obtains the analysis chart, which simplifies the user's use operation; it is beneficial to the use of ordinary users.
  • any of the products of the embodiments of the present invention does not necessarily require all of the advantages described above to be achieved at the same time.
  • the specified communication information includes an analysis data trend curve and infrared data according to a point of interest in the analysis data trend curve (eg, an infrared thermal image at a maximum temperature); obviously, in step E03, the infrared information related to the specified notification information may be The thermal image is recorded in association with the analysis data and its corresponding time in the temporary storage unit 2 for use in specifying the configuration of the notification information.
  • the storage management of the analysis data and its associated time may be performed in various ways, for example, storing the analysis data and its time in a predetermined area of the temporary storage unit according to a prescribed frequency, when storing a prescribed amount of analysis data and its association At the time of time, the latest obtained analysis data and its associated time are replaced with the oldest; sparse processing can also be performed.
  • the thermal image data frame may be continuously recorded in the hard disk 3 without storing the analysis data and the corresponding time; and then the specified condition is read from the hard disk 3 when the transmission condition of the predetermined notification information is met.
  • the thermal image data frame is analyzed to obtain the analysis data and the corresponding time.
  • Example 7 uses a secondary transmission method to promptly alert the user and send The purpose of high quality infrared thermal imaging.
  • the information configuration unit is configured to configure different or the same specified notification information according to different information configuration conditions. .
  • Step F01 acquiring a thermal image data frame, and transmitting the thermal image data frame obtained by the imaging unit 1 to the temporary storage unit 2;
  • step F02 it is determined whether the transmission condition of the prescribed notification information is met, such as receiving the short message of the user? If yes, go to the next step.
  • Step F03 the information arrangement unit arranges the predetermined notification information, and the predetermined notification information is the analysis data (S01 max - S02m ax ) obtained by analyzing the predetermined thermal image data frame and the time; and then transmitting in step F04;
  • Step F05 comparing the analysis data (S01 max - S02m ax ) obtained by analyzing the predetermined thermal image data frame with a predetermined threshold value of 4 ° C; if it is less than or equal to the specified threshold value of 4 ° C, skip to If the step F08 is greater than the predetermined threshold value of 4 ° C, the process proceeds to step F06, and the information arrangement unit arranges the predetermined notification information, and the predetermined notification information is infrared thermal image, analysis data, and time; and then in step F07 again. Send;
  • Step F08 judging whether to exit, if exiting, ending, if not exiting, returning to step F01, repeating the above processing.
  • predetermined notification information of the different contents is arranged in F06, but the same predetermined notification information may be used.
  • the configured notification information when the analysis data (S01MAX-S02MAX) is less than or equal to a predetermined threshold of 4 ° C, the configured notification information is analysis data and time; when it is greater than the specified threshold, 4 ° C, The configured notification information includes analysis data, time, and infrared data. This allows you to send only once.
  • the present invention is not only applicable to a thermal image device with a photographing function, but also to a thermal image processing device that continuously receives and processes a thermal image (such as a thermal image data frame acquired in time series) from the outside, the thermal image processing device such as a computer. , personal digital assistant (PDA), thermal imaging with shooting function
  • a thermal image such as a thermal image data frame acquired in time series
  • the thermal image processing device such as a computer. , personal digital assistant (PDA), thermal imaging with shooting function
  • PDA personal digital assistant
  • the display device or the like used in the measurement control device continuously receives the thermal image data frame outputted by the thermal image device connected thereto through the communication interface to realize an embodiment of the thermal image monitoring control device; by reading the thermal image stored in the storage medium
  • the data frame is processed to realize another example of the thermal image monitoring control device; similarly to the above embodiment, the description is omitted. Further, it can also be used as a component or a functional module in a thermal image device having a photographing function or
  • the thermal imaging device 100 further has a recording unit for performing recording control.
  • the control unit 8 has a recording unit for continuously recording the captured thermal image data frame and/or thermal image data at a predetermined frame rate.
  • the data obtained after the frame specification processing is continuously recorded on a storage medium such as the hard disk 3, and may be recorded in a network destination or the like communicated through the communication unit 4.
  • the predetermined notification information is transmitted as an example.
  • the thermal image monitoring control device is not limited to the transmission target only.
  • the transmission of the predetermined notification information also includes the case where the other information is transmitted between the thermal imaging device 100 and the transmission target.
  • the thermal imaging device 100 continuously transmits other information such as a thermal image data frame to the transmission target (such as the user's computer). ), but the specified notification information (for example, diagnostic information, etc.) is sent when the transmission condition of the prescribed notification information is met.
  • the predetermined notification information it is first determined whether or not the transmission condition is satisfied, and when the transmission condition is satisfied, the predetermined notification information is arranged.
  • the predetermined notification information may be changed first. It is judged whether the transmission condition is satisfied. When it is not satisfied, for example, the predetermined notification information may be updated according to the newly acquired thermal image data frame; if satisfied, the transmission is performed.
  • the thermal image monitoring control device is fixedly used, but is not limited thereto, and may be applied to a portable thermal imaging device having a photographing function, or may be mounted on a mobile platform (such as a pan/tilt, a vehicle).
  • Thermal image device is a thermally mountable thermal imaging device or a portable thermal imaging device, and the thermal imaging device has an acquisition unit that captures a frame for acquiring thermal image data.
  • the conventional thermal imaging device for portable imaging can continuously transmit thermal image data frames in a wireless manner, if the idea of the present invention can be used, targeted transmission can be performed according to predetermined conditions, and the convenience of the backend user can be greatly improved. Or reduce the amount of data sent. Further, it is not limited to the thermal image monitoring and control device temporarily installed, and can be applied to other thermal image monitoring and control devices installed online.
  • aspects of the present invention may also be a computer (or a device such as a CPU, an MPU, etc.) of a system or device that performs the functions of the above-described embodiments by arranging and executing a program recorded on a storage device, and a system or device by the steps thereof
  • the computer is realized by, for example, a method of reading and executing a program recorded on a storage device to perform the functions of the above-described embodiments.
  • the program is provided to the computer, for example, via a network or from various types of recording media (e.g., computer readable media) used as storage devices.
  • the present invention provides a computer program in which digital signals are recorded in a computer readable recording medium such as a hard disk, a memory or the like. After the program runs, perform the following steps:
  • Thermal image monitoring control methods including:
  • An obtaining step configured to obtain a thermal image data frame
  • a determining step of determining whether the information receiving step receives the specified external indication information as one of a determination condition or a determination condition, and determining whether the transmission condition of the specified notification information is met;
  • Information configuration step configured to configure the notification information
  • Embodiments of the present invention also provide a readable storage medium storing a computer program for electronic data exchange, wherein the computer program causes a computer in the thermal image monitoring control device to perform the following steps:
  • An obtaining step configured to obtain a thermal image data frame
  • a determining step configured to determine whether the condition for transmitting the specified notification information is met
  • Information configuration step configured to configure the notification information
  • a communication control step for transmitting a predetermined notification information to a predetermined transmission target in a wireless manner; and a communication control step control information transmission step to transmit the predetermined notification information when the determination step determines that the transmission condition is met;
  • the one or more of the transmission condition, the configuration of the predetermined notification information, the transmission target, and the number of transmissions are determined based on the information obtained by the analysis step.
  • a block of multiple functions can be implemented by one software or hardware module.
  • a block of functionality can be implemented by multiple software or hardware units.
  • some or all of the processing and control functions of embodiments of the present invention may also be implemented in a dedicated circuit or a general purpose processor or a programmable FPGA.
  • the example is based on the application of the subject in the power industry, and is also widely used in various industries of infrared detection.

Abstract

本发明的热像监测控制装置、监测系统和热像监测控制方法,涉及热像装置,接收和处理热像数据的热像处理设备,以及热像拍摄的应用领域。现有技术将热像数据帧等数据连续传送至后台计算机,用户需要长时间监视被摄体的热像数据等,易于疲劳而遗漏了突发的情况;本发明提供一种热像监测控制装置、监测系统和热像监测控制方法,基于是否接收到规定的外部指示信息,作为判断条件或判断条件之一,来判断是否符合发送条件,当符合规定通知信息的发送条件时,通过无线的方式发送规定通知信息,由此,降低了用户的主观监测的工作量,并降低了热像监测系统的成本。

Description

热像监测控制装置、 监测系统和热像监测控制方法
技术领域
本发明的热像监测控制装置、 监测系统和热像监测控制方法, 涉及热像监测装置, 接收和处理热像数 据帧的热像处理装置, 以及热像拍摄的应用领域。
背景技术
存在这样的技术, 架设热像监测装置, 用于对被摄体的连续监测, 并将采集的热像数据帧传送至后台 计算机, 由后台计算机进行分析、 红外热像的显示等处理, 便于用户在后台进行监视, 其实现人机分离, 能降低用户劳动强度、 保障用户的安全, 公开专利文献申请号: 200920113208. 9采用了这样的技术的热像 监测装置的移动式工作站。
但是, 现有技术在使用中存在如下的问题: 将热像数据帧连续传送至后台计算机, 使用者需要长时间 监视被摄体的热像显示画面等, 易于疲劳而遗漏了突发的情况, 并增加了工作量。
例如, 对变电站的隐患设备临时架设热像监测装置, 由于负载等的变化, 该隐患设备的温度处于变化 状态; 现有技术, 使用者监视的工作量非常大, 特别是长期监测时, 需要多个使用者轮流加班; 如何能够 降低使用者的工作强度, 并达到好的监测效果, 是一个难点。
因此, 所理解需要一种热像监测控制装置, 其应能达到无需用户长时间的观察, 根据规定通知信息的 发送条件, 发送所配置的规定通知信息, 从而达到连续监测并且不易遗漏突发情况、 降低劳动强度、 减低 系统成本、 使用简单的有益效果。
发明内容
本发明提供一种热像监测控制装置、 监测系统和热像监测控制方法, 基于是否接收到规定的外部指示 信息, 作为判断条件或判断条件之一, 来判断是否符合发送条件, 当符合规定通知信息的发送条件, 通过 无线的方式发送规定通知信息, 由此, 降低了用户的主观监测的工作量, 并降低了热像监测系统的成本。
为此, 本发明采用以下技术方案, 热像监测控制装置, 包括:
拍摄部, 用于拍摄获取热像数据帧;
判断部, 用于将信息接收部是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来判断 是否符合规定通知信息的发送条件;
信息配置部, 用于配置规定通知信息;
通信控制部, 用于控制信息发送部以无线的方式将规定通知信息发送至规定的发送对象; 其中, 当判断部判断符合发送条件时, 所述通信控制部控制信息发送部发送所述规定通知信息。 另一方案, 热像监测控制装置, 包括:
拍摄部, 用于拍摄获取热像数据帧;
解析部, 用于解析信息接收部接收的外部指示信息, 来获得发送条件、 规定通知信息的构成、 发送对 象的信息中至少之一;
判断部, 用于判断是否符合规定通知信息的发送条件;
信息配置部, 用于配置规定通知信息;
通信控制部, 用于控制信息发送部以无线的方式将规定通知信息发送至规定的发送对象; 当判断部判断符合发送条件时, 所述通信控制部控制信息发送部发送所述规定通知信息; 其中, 根据解析部所解析获得的信息来确定发送条件、 规定通知信息的构成、 发送对象,、 发送次数 其中的一项或多项。
本发明的热像监测控制方法, 包括: 获取步骤, 用于获取热像数据帧;
判断步骤, 用于将信息接收步骤是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来 判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 其中,当判断步骤判断符合发送条件时,所述通信控制步骤控制信息发送步骤发送所述规定通知信息。 本发明的其他方面和优点将通过下面的说明书进行阐述。
附图说明:
图 1是表示本发明的实施例 1的热像装置 100的概略构成的框图。
图 2是实施例的热像装置 100架设装态的示意图。
图 3是显示部所显示的红外热像的示意图。
图 4是实施例 1的发送条件配置界面的示意图。
图 5是分析区域配置界面的示意图。
图 6是分析数据及判断阀值配置界面的显示例。
图 7是规定通知信息配置界面的显示例。
图 8是发送对象配置界面的显示例。
图 9是表示实施例 1的控制流程图。
图 10是表示规定通知信息的一种显示例。
图 11是表示规定通知信息的另一种显示例。
图 12是实施例 2的发送条件配置界面的显示例。
图 13是表示实施例 2的控制流程图。
图 14是表示实施例 3的控制流程图。
图 15是实施例 3的发送条件更新前后的示意图。
图 16是实施例 4的发送条件配置界面的示意图。
图 17是表示实施例 4的控制流程图。
图 18是表示实施例 5的控制流程图。
图 19是表示实施例 5的规定通知信息的一种显示例。
图 20是表示实施例 6的控制流程图。
具体实施方式
现在将根据附图详细说明本发明的典型实施例。 注意, 以下要说明的实施例用于更好地理解本发明, 而不限制本发明的范围, 并且可以改变本发明的范围内的各种形式。 在以下实施例中以具有拍摄部件的热 像装置 100作为热像监测控制装置的例子。
但对于本发明来说拍摄功能不是必须的, 本发明还可广泛用于从外部接收和处理热像数据帧的热像处 理设备 (作为热像监测控制装置的另一例子), 所述热像处理设备例如个人计算机、 个人数字助理 (PDA) 等装置。
所谓热像数据帧, 为基于红外探测器输出信号而获得数据。 在实施例 1中, 是以红外探测器输出信号 经 AD转换后获得的 AD值数据为例。 但不限于此, 在其他的实施方式中, 热像数据帧例如可以是红外热像 的图像数据,例如也可以是温度值的阵列数据,例如也可以是红外探测器自身内部输出的数字信号(AD值) 而形成的热像数据帧。 实施例 1
实施例 1的热像装置 100基于由拍摄部 1拍摄获得的热像数据帧, 当符合规定的发送条件, 热像装置 100按照预定的移动电话号码, 发送规定通知信息给规定的用户终端。
图 1是表示本发明的实施例 1示例的热像装置 100的概略构成的框图。
具体而言, 热像装置 100具有拍摄部 1、 临时存储部 2、 硬盘 3、 无线通信部 4、 图像处理部 5、 分析 部 6、 显示部 7、 控制部 8、 操作部 9, 控制部 8通过控制与数据总线 10与上述相应部分进行连接; 控制 部 8负责热像装置 100的总体控制。
拍摄部 1由未图示的光学部件、 镜头驱动部件、 红外探测器、 信号预处理电路等构成。 光学部件由红 外光学透镜组成, 用于将接收的红外辐射聚焦到红外探测器。 镜头驱动部件根据控制部 8的控制信号驱动 透镜来执行聚焦或变焦操作。 此外, 也可为手动调节的光学部件。 红外探测器如制冷或非制冷类型的红外 焦平面探测器, 把通过光学部件的红外辐射转换为电信号。 信号预处理电路包括采样电路、 AD转换电路、 定时触发电路等, 将从红外探测器输出的电信号在规定的周期内进行取样等信号处理, 经 AD转换电路转 换为数字的热像数据 (又称为 AD值), 该热像数据例如为 14位或 16位的二进制数据, 基于控制部 8的控 制, 由规定阵列的热像数据构成热像数据帧。 热像数据帧并不限于红外探测器固有分辨率, 也可以低于或 高于红外探测器分辨率。 在实施例 1中, 拍摄部 1作为获取部的实例, 用于获取热像数据帧。
临时存储部 2如 RAM、 DRAM等易失性存储器, 作为对拍摄部 1输出的热像数据帧进行临时存储的缓冲 存储器, 例如基于控制部 8的控制, 重复如下处理, 即将获取的热像数据帧临时存储规定时间份, 并在由 所述拍摄部 1获取新的帧时, 删除旧的帧后存储新的热像数据帧; 同时, 作为图像处理部 5、 分析部 6、 控制部 8等的工作存储器起作用, 暂时存储进行处理的数据。 不限于此, 图像处理部 5、 分析部 6、 控制 部 8等对应的处理器内部包含的存储器或者寄存器等也可以解释为一种临时存储介质。
硬盘 3, 存储有用于控制的程序, 以及各部分控制中使用的各种数据。 此外, 硬盘 3也可用于连续记 录获取的热像数据帧等数据。
通信部 4, 基于控制部 8的控制, 在符合发送条件, 执行规定通知信息的发送。 具体而言, 一种实施 方式, 通信部 4例如配置有 GPRS通信单元, 基于控制部 8的控制, 可以发送短信、 彩信等给预定的用户 终端如移动电话, 该移动电话的号码可预先存储在热像装置 100内例如 GPRS通信单元的 SIM卡中。 在其 他的实施方式中, 对于其他的无线通信单元, 如 GMS、 CDMA, PHS (小灵通)、 3G、 4G、 5G、 WIFI等无线通 信单元, 显然也可以替换 GPRS通信单元并通过相应的通信网络来完成类同的目的和效果。 通信部 4可以 配置有上述通信单元中的一种或多种; 优选的, 所述通信部 4可具有 GPRS、 GSM, CDMA, 3G、 4G、 5G、 WIFI 单元中的至少之一。
用户终端不限定于移动电话,也可以是与通信部 4无线的方式,进行数据通信的其他便携的通信终端, 如 PDA、 平板电脑、 笔记本电脑等; 用户终端也可以是局域网、 互联网上的其它计算机, 通信部 4例如配 置有 GPRS、 3G、 4G、 5G、 无线网卡 (如 WIFI单元) 等无线通信单元, 向互联网或局域网上的计算机发送 规定通知信息。
此外, 所发送的规定通知信息不限定于发送给用户便携的通信终端等, 例如, 通信部 4可以将规定通 知信息发送至相应的网站服务器, 用户也可以登录该网站察看规定通知信息。
此外, 通信部 4还可有其他多种实施方式, 例如配置有通过卫星传输的方式如海事卫星 IDEN、 北斗卫 星等的通信单元, 按照规定的通讯协议发送短信、 图片、 语音等至相应的用户终端。 例如通过自组的无线 中继传输的方式, 可以发送声音, 也可以发送图片或者文字至相应的用户终端。 此外, 当应用于短距离无 线传输的方式, 通信部 4也可以采用蓝牙、 IRDA、 Zigbee等单元来实现信息的发送。 并且, 在实施例 1, 通信部 4配置为接收各种外部指示信息(例如短信等), 以便更好的控制热像装置 100。 通信部 4作为信息接收部和信息发送部的实例; 显然, 信息接收部和信息发送部也可采用不同的无 线通信部件来实现。
显然, 通信部 4也可以是与热像装置 100连接的通信装置, 而热像装置 100的结构中没有通信部。 优 选的, 热像装置 100具有信息发送部和信息接收部, 所述信息发送部和信息接收部具有 GPRS、 CDMA, GMS、 3G、 4G、 5G、 WIFI的无线发送模块之一。
显然, 由热像装置 100和用户终端构成的热像监测系统, 可以由一个或多个热像监测控制装置及一个 或多个用户终端如移动电话、 PDA等, 和 /或网站服务器等构成。
图像处理部 5, 用于对通过拍摄部 1获得的热像数据帧进行规定的处理, 图像处理部 5的处理如修正、 插值、 伪彩、 合成、 压缩、 解压等,进行转换为适合于显示用、 记录用等数据的处理。 例如, 其在显示定 时每次到来之际, 从临时存储在所述临时存储部 2的规定时间份的热像数据帧中, 选择并读出每个规定时 间间隔的帧, 进行伪彩处理, 获得红外热像的图像数据; 伪彩处理的一种实施方式, 例如根据热像数据 帧的热像数据 (在本实施例中, 热像数据指 AD值) 的范围或 AD值的设定范围来确定对应的伪彩表范围, 将热像数据在伪彩板范围中对应的具体颜色值作为其在红外热像中对应像素位置的图像数据。 从图像处理 部 5伪彩处理后获得的图像数据传送到作为缓冲存储器使用的临时存储部 2中。 图像处理部 5例如可以采 用 DSP或其他微处理器或可编程的 FPGA等来实现, 或者, 也可与分析部 6、控制部 8的处理器为一体的处 理器。
分析部 6, 用于对获取的热像数据帧的规定帧进行分析, 获得分析数据。 其中, 对热像数据帧的规定 帧的分析, 可以是获取部连续获取的热像数据帧依次全部进行分析处理, 也可以是对获取的热像数据帧中 规定的帧进行分析 (例如规定的分析定时对应的热像数据帧), 或由多帧运算获得的那一帧等, 以此, 能 减轻伴随着分析的处理负担; 其中, 例如也可将获取的热像数据帧记录在硬盘 3中, 当符合发送条件或分 析定时等时, 读取所记录的热像数据帧进行分析。 显然, 所述分析数据可以是对一帧或多帧热像数据帧分 析获得的数据。
以温度分析为例来说明分析部 6的具体实施方式。在实施例 1中,分析数据是温度分析获得的温度值, 所述温度值例如特定分析区域中的最高温度、 平均温度、 最低温度, 也可以是不同分析区域中的温差值。
一种实施方式, 分析部 6基于规定的分析区域和分析模式来进行分析处理。 所谓分析区域代表了热像 数据帧中特定的分析区域, 例如点、 线、 面, 也可以是将整个热像数据帧作为分析区域, 所谓分析模式例 如计算分析区域的最高温度、 最低温度、 平均温度、 不同分析区域之间的温差等。 在一个例子中, 分析区 域和分析模式可以是使用者预先设置的, 在另一个例子中, 为热像装置 100默认的; 在又一例子中, 分析 区域和分析模式也可以是按照规定规则来自动设置的, 分析部 6具有分析区域设置单元, 用于设置与分析 有关的分析区域, 分析模式设置单元, 用于设置与分析有关的分析模式。
具体而言, 分析部 6对所分析的热像数据帧或进行规定处理如修正、 插值, 基于规定的分析区域, 提 取分析区域所决定的热像数据, 进行温度值的转换处理, 获得这些热像数据对应的温度值, 而后对得到的 温度值, 按照规定的分析模式进行分析计算。 以图 6中所示的分析区域 S01、 分析区域 S02, 及计算 S01MAX-S02MAX为例, 依次对各分析区域 (S01、 S02 ) 中的热像数据, 进行温度值的转换和进行分析, 获 得各分析区域的最高温度值, 将计算获得的最高温度值与分析区域的编号关联存储在临时存储部 2的规定 区域, 而后按照分析模式中分析区域之间的相互关系, 来计算获得最终的分析数据 (S01MAX-S02MAX)。
上述的例举并非作为分析处理的实施方式的限定。 例如, 对分析区域中的热像数据进行转换为温度值 的处理, 可以是将分析区域中所有的热像数据都转换为温度值; 也可以是规定的部分热像数据转换为温度 值; 还可以是根据分析模式中计算最高、 最低、 平均温度等不同的模式, 来决定对热像数据的转换, 是转 换分析区域中的一部分热像数据, 还是全部; 如分析模式为计算分析区域中最高温度时, 也可针对分析区 域中的热像数据, 先比较热像数据 AD值的大小, 将其中最大的 AD值转换为温度值, 而并不必须将分析区 域中的热像数据像素的 AD值全部转化为温度值。 此外, 也包括算法不同的情况, 例如计算最高温度时, 并不以单个像素而是以规定数量的相邻像素的 AD值的平均值, 将最大平均值的相邻像素的 AD值转换为温 度值, 并将该相邻像素的温度值的平均值作为最高温度值, 此外, 也可以以单个像素的 AD值来计算最高 温度。 其中, 热像数据经过规定处理转换为温度值, 实施方式例如根据设置的被摄体的辐射系数、 环境温 度、 湿度、 与热像装置 100的距离等以及热像数据的 AD值与温度之间的转换系数, 通过规定转换公式, 得到温度值。 此外, 分析区域所决定的热像数据, 如图 6所示, 可以配置为分析区域 S01、 S02内的热像 数据, 也可以配置为分析区域 S01、 S02外的热像数据, 也可以配置为分析区域 S01、 S02的线条所在像素 的热像数据。
上面的示例说明的根据分析区域来获得温度值分析数据的情况, 但不限于此, 对于热像分析的分析数 据根据应用场合的不同, 有多种情况, 不限定于温度值; 例如特定温度值在热像数据帧的像素阵列中的百 分比含量等; 基于热像数据帧的 AD值、 灰度值、 伪彩色的颜色值等形式, 所获得的分析数据, 或将 AD值 转换为辐射能量值、 灰度值、 辐射率值、 颜色值等进行分析的情况。 本发明同样适用于这些情况。
分析部 6例如可以采用 DSP、 可编程的 FPGA、 其他微处理器中的一种或几种等来实现, 或者, 也可采 用与图像处理部 5、 控制部 8的处理器为一体的处理器来实现。
显示部 7, 例如是液晶显示装置, 用于将临时存储部 2所存储的显示用的图像数据显示在显示部 7。 例如, 在拍摄待机模式中, 连续显示拍摄获得的热像数据帧生成的红外热像; 在回放模式, 显示从硬盘 3 读出所记录的热像数据帧生成的红外热像, 此外, 还可显示各种设定信息。 不限于此, 显示部 7还可以是 能与热像装置 100有线或无线连接的其他显示装置, 而热像装置 100自身的电气结构中可以没有显示部。
控制部 8控制了热像装置 100的整体的动作, 在存储介质例如硬盘 3中存储有用于控制的程序, 以及 各部分控制中使用的各种数据。 控制部 8例如由 CPU、 MPU、 S0C、 可编程的 FPGA等来实现。
并且, 控制部 8具有判断部, 用于判断是否符合规定通知信息的发送条件; 其中, 可以基于一项或多 项判断条件来判断是否符合规定通知信息的发送条件。 优选的实施方式, 用于基于通信部 4所接收的外部 指示信息, 作为判断条件或判断条件之一, 来判断是否符合发送条件; 在实施例 1中, 根据通信部件 4是 否接收到规定的外部指示信息, 来判断是否进行规定通知信息的发送。
其中, 优选的实施方式, 所述判断条件至少包括如下条件中的一项或多项:
1 ) 分析判断条件, 例如将分析数据与规定的判断值 (例如设置的阀值) 进行比较的结果, 所述分析 数据为分析部对所述热像数据帧的规定帧,进行分析而获得;也包括可根据诊断结果来作为分析判断条件。
2 ) 定时条件, 例如判断是否达到规定的定时;
3 )查询条件, 例如判断通信部是否接收到外部指示信息(例如电话、 短信、 邮件、 其他特定信息等); 例如根据通信部接收到的外部指示信息的内容;
4 ) 热像监测控制装置的状态条件; 例如是否获得热像监测控制装置的状态信息或根据所述状态信息 与规定值的对比结果, 作为状态条件。 所述状态信息例如电源状态、 热像监测控制装置的倾角姿态、 所处 的环境条件如风速、 环温、 湿度等。
5 )特定触发信息的条件, 例如是否获得特定触发信息或根据所述特定触发信息与规定值的对比结果, 作为特定触发信息的条件。所述特定触发信息例如基于热像监测控制装置有线或无线连接的装置而获得的 触发信息, 例如与热像监测控制装置连接的被摄体的负载、 转速等装置的采集的信息而获得的触发信息。 6 ) 方位信息的条件, 例如是否接收到方位信息或根据方位信息与规定值的对比结果, 作为方位信息 的条件。所述方位信息如热像监测控制装置 100安装地点的 GPS信息,如热像监测控制装置 100自身的 GPS 信息。
其中, 一项判断条件, 例如实施例 1中, 当接收到外部短信时, 判断为符合规定通知信息的发送条件。 多项判断条件, 也可以是对多项判断条件中的所有条件判断符合时, 才判断为符合规定通知信息的发 送条件。
多项判断条件,可以是对多项判断条件中的其中一项符合时,即判断为符合规定通知信息的发送条件, 其中, 一项判断条件中还可以包含了若干的子条件, 当子条件均满足时, 才判断该项判断条件满足。
其中, 判断条件可以是固定的, 也可以是根据规定条件来变化的, 例如以外部指示信息及分析数据共 同作为判断条件, 当达到规定的阀值后, 对原阀值进行更新 (例如增加规定值); 例如在后续增加其他的 判断条件, 如不同定时的定时条件来作为判断是否发送的条件等。 例如接收到外部指示信息如短信, 根据 短信中的阀值对原阀值进行更新作为发送条件等。
并且, 控制部 8具有信息配置部, 用于配置所要发送的规定通知信息; 规定通知信息, 例如可以包含 分析数据、 分析数据对应的时间、 分析图表、 统计数据、 诊断信息、 红外数据、 方位信息、 热像装置 100 的编号等之一或多个。 此外, 还可以包含热像监测控制装置的状态信息(如姿态、 电源等)、 环境条件(如 环境温度、 风速等)、 外界获得的触发信息 (如被摄体的负载等)。
其中, 所述分析数据可以是对所获取的热像数据帧的一个或多个规定帧进行分析获得的分析数据; 例 如规定时间期间的一个或多个时刻规定帧分析获得的分析数据, 例如判断为符合发送条件获取的热像数据 帧进行分析获得的分析数据, 例如前一次发送到后一次发送期间大于阀值的最大的分析数据等。
其中, 分析数据对应的时间, 例如获得该分析数据的热像数据帧的获取时间、 例如该分析数据对应的 分析时间、 发送分析数据的发送时间等, 可以有各种适用的方式。
其中, 分析图表, 如基于分析数据或分析数据及相应的时序信息获得的分析图表, 包括各种曲线、 直 方图、 数据列表等, 例如分析数据趋势曲线、 例如规定时间期间的多个热像数据帧的分析数据的直方图。 其中分析数据趋势曲线的生成, 可以由分析数据与对应的时序来获得, 所述时序例如可以由分析数据及对 应的热像数据帧的拍摄时间或序号、 分析数据的分析处理时刻等之一来获得。 例如基于多个规定时刻的热 像数据帧, 根据分析获得的每个热像数据帧的分析数据, 及对应的热像数据帧的时序如拍摄时刻的时间, 而获得的分析数据 -时间曲线。
其中, 统计数据, 可以与分析数据、 触发信息等有关的统计数据, 例如规定时间期间中分析数据超过 阀值的次数。
其中, 诊断信息, 例如对一帧或多帧热像数据帧获得的分析数据与阀值的对比而得到的诊断结果。 其中, 红外数据, 例如所获取的热像数据帧,例如基于所获取的热像数据帧生成的红外热像等, 可以 是局部、 或缩小的、 或完整的红外热像或热像数据帧; 可以通过一帧或多帧所获取的热像数据帧获得的一 帧或多帧红外数据。 显然, 红外数据及上述的分析数据等可以是基于规定的热像数据帧(可以是一帧或多 帧)来获得;优选的,红外数据为便于用户终端查看的格式,如通用图片浏览的格式例如 JPG, BMP, DIB, TIFF 等格式的红外热像; 这样, 用户终端可不必安装将热像数据帧伪彩处理的软件。 而现有技术的热像监测系 统中的后台计算机, 如果需要对热像数据帧进行分析来获得分析数据, 往往需要按装专用的分析软件, 增 加了后台软件的复杂性。 显然, 规定通知信息中的红外数据可以是一帧或多帧, 多帧例如红外热像的录像 片段。 其中, 方位信息, 例如热像装置 100安装地的 GPS信息, 所述方位信息的获取方式, 例如通信部 4可 以是带有定位功能的无线通信单元, 或在热像装置 100中进一步包含有一个 GPS单元, 在发送时, 将热像 装置 100的方位信息 (如 GPS ) 发送给用户。
其中, 热像监测控制装置的编号, 如热像装置 100的编号, 当使用了多台热像监测控制装置时, 有利 于用户了解通知信息的来源, 并便于将所接收的规定通知信息, 按照热像监测控制装置的编号等身份验证 信息进行处理和管理。
其中, 状态信息, 例如热像装置 100的倾角姿态、 电源状态等。
其中, 触发信息, 例如基于与热像装置 100连接的其他装置而获得的触发信息等。
信息配置部还可将规定通知信息的内容处理为符合通信部 4进行信息发送和用户终端接收的规定格 式, 例如, 当发送包含红外热像的图像彩信时, 对红外热像按照彩信手机所兼容的格式例如 MMS格式进行 处理, 便于发送规定格式的规定通知信息。 可预先将发送终端类型及对应的规定通知信息数据包的处理格 式存在在存储介质如硬盘 3中。
并且, 在实施例 1中, 信息配置部配置为在判断部判断符合发送条件之后, 来配置规定通知信息。 但 不限于此, 在其他的一个实施方式中, 所述信息配置部可以配置为在判断部判断符合发送条件之前, 配置 规定通知信息; 当不满足发送条件, 例如可根据新获取的热像数据帧来更新规定通知信息; 如满足, 则进 行发送。
并且, 所述信息配置部, 用于根据不同的信息配置条件, 来配置不同或相同的规定通知信息; 所述信 息配置条件例如与发送条件相同的条件, 或也可以是其它的规定条件。 信息配置部配置的规定通知信息的 内容可以是固定的内容构成, 但也可配置为不同的内容构成; 例如当符合发送条件, 如分析数据小于规定 的阀值时, 配置的规定通知信息中包含分析数据, 例如包含分析数据及时间; 当大于规定的阀值时, 配置 的规定通知信息中至少包含热像数据帧, 例如分析数据、 时间、 红外数据。 这样可以达到减少数据的发送 量、 提示使用者等的有益效果。
需要注意的是, 分析部 6分析获得的分析数据中, 与规定通知信息的内容相关的分析数据, 如规定通 知信息包含该分析数据和 /或基于该分析数据获得的信息 (如诊断信息、 如分析图表), 所述分析数据可以 与作为判断是否符合发送条件有关的分析数据相同和 /或不同的分析处理来获得; 由此, 达到在降低分析 处理的负担的同时提供丰富的分析数据的有益效果。
并且, 控制部 8具有通信控制部, 当判断部判断为符合规定通知信息的发送条件, 控制通信部 4进行 规定通知信息的发送。
其中, 通信控制部可进一步具有发送对象控制单元, 可以根据不同的发送配置条件来控制发送规定通 知信息给相应相同或不同的发送对象, 和 /或, 配置不同或相同的发送次数。 例如当符合发送条件, 当分 析数据小于规定的阀值时,发送至相应的网站服务器,而大于规定的阀值时,发送给规定用户的移动电话。 所述发送次数表示, 符合一次发送条件, 是发送一次规定通知信息, 还是连续发送多次; 通常可默认为 1。 所述发送次序表示, 对发送对象的发送次序、 以及当产生一个以上的规定通知信息时的先后发送次序。
此外, 控制部 8还可进一步具有诊断部, 用于根据分析部 6的分析结果, 获得诊断结果, 例如基于分 析数据与规定的判断值之间的比较来获得对应的诊断结果, 代表诊断结果的诊断信息可以预先与分析数据 与规定的判断值的比较关系一起关联记录在热像装置 100的存储介质中; 显然, 针对分析数据与规定的判 断值的不同比较关系, 可以有对应不同的诊断信息。 例如, 图 6中, S01MAX-S02MAX>4°C对应的诊断信息 为严重缺陷, 进一步还可配置如: S01MAX-S02MAX>8°C对应的诊断信息为危急缺陷、 S01MAX-S02MAX<2 °C 对应的诊断信息为正常等。 此外,控制部 8还可进一步具有解析部,用于解析通信部无线接收的外部指示信息,来获得发送条件、 规定通知信息的构成、 发送对象、 发送次数等的信息中至少之一。
并且, 控制部 8可具有定时单元, 用于进行时间的定时; 例如根据所记数的当前时刻 (例如年、 月、 日、 时、 分、 秒) 的信息及定时的时间, 来实现时间的定时。
操作部 9: 用于用户进行各种指示操作, 或者输入设定信息等各种操作, 控制部 8根据操作部 9的操 作信号, 执行相应的程序。 操作部 9可采用按键、 显示部 7 (带有触摸屏) 或语音识别部件 (未图示) 等 来实现相关的操作。 此外, 热像装置 100的结构中也可以没有操作部, 用户通过能与热像装置 100无线或 有线连接的操作部来实现对热像装置 100的操作; 或无需操作部。
下面来说明热像装置 100的应用、控制流程等,应用场景如电力行业, 当用户发现某设备温度异常时, 为合理安排停电抢修的工作, 需要评估被摄体是否有恶化的趋势或评估恶化的状态, 用户将热像装置 100 进行架设对该被摄体进行连续监测。
参考图 2来说明热像装置 100的架设, 例如通过三角架进行架设, 其供电部分可采用内置的电池、 外 置与热像装置 100连接的电池、 或外接的电源 (如 220V) 等实施方式。
在接通电源后, 控制部 8基于硬盘 3中存储的控制程序, 以及各部分控制中使用的各种数据, 控制了 热像装置 100的整体的动作及执行多种模式处理的控制。 控制部 8进行内部电路的初始化, 而后, 进入待 机拍摄模式, 即拍摄部 1拍摄获得热像数据帧, 图像处理部 5将拍摄部 1拍摄获得的热像数据帧进行规定 的处理, 存储在临时存储部 2中, 显示部 7显示实时的红外热像, 如图 3所示的红外热像。
参考图 4来说明热像装置 100的发送条件设置菜单的实施例; 当用户通过操作部 9选择进入菜单模式 后, 显示部 7可显示如图 4-图 8所示的配置界面, 用于用户设置(增加、 修改、 删除)发送条件、 规定通 知信息、 发送对象、 发送次数等的内容。 显示部 7、 操作部 9、 控制部 8等构成了配置部件的实例用于使 用者配置发送条件、 规定通知信息的构成、 发送对象、 发送次数等中至少之一。 可配置一个或多个发送条 件、 规定通知信息的构成、 发送对象、 发送次数的组合, 使用者未配置的可采用热像装置 100的默认值。 其中的显示部 7、操作部 9也可以是能与热像装置 100连接的外部装置,而热像装置 100自身没有显示部、 操作部。
发送条件, 可以配置为定时条件、 查询条件、 分析判断条件等中的一项, 或同时满足多项, 作为是否 进行发送的发送条件。 优选的, 至少将是否接收到外部指示信息作为发送条件或发送条件的构成之一。 进 一步, 还可配置与不同的发送条件对应的更新条件。
其中, 定时条件 401, 用户录入定时的时间及是否将定时条件作为发送条件或发送条件的构成之一。 其中, 查询条件 402, 用户选择将是否接收到外部指示信息或根据外部指示信息获得的判断条件作为 发送条件或发送条件的构成之一; 所述外部指示信息例如通信部 4接收到规定用户通过移动电话等发送的 短信信息、 电话等信息, 例如用户通过外部的计算机通过网络发送的特定信息如邮件等, 所述规定用户例 如向该热像装置 100发送短信的用户,但也可预定规定用户的电话号码、指令、用户验证密码等验证信息, 当所接收的外部指示信息包含有上述验证信息时, 所接收的外部指示信息为有效。 优选的, 也可进一步配 置有解析部, 用于解析所接收的规定用户的外部指示信息的内容, 来决定发送条件、 规定通知信息、 发送 对象等的构成。
其中, 分析判断条件 403, 用于用户配置与分析判断有关的分析区域、 分析模式 (分析区域中分析数 据的计算模式如最大、 最小、 平均等, 分析区域之间的分析数据的计算关系等)、 分析数据 (根据分析区 域及对应的分析模式获得的分析数据)对应的规定判断值、 多个分析数据及对应的判断值所构成的多个判 断子条件之间的关系 (与、 或、 非)等; 此外, 还可有分析数据与规定判断值的判断结果对应的诊断信息 例如被摄体状态的性质 "正常、 缺陷、 严重缺陷"等, 进一步还可将判断依据、 缺陷类型、 缺陷程度、 处 理建议等作为诊断信息的备注信息。
参考图 5来说明分析区域的设置, 当用户选中分析判断条件 403, 显示部 7显示如图 5所示例的界面, 显示红外热像、 分析区域(点、 线、 面) 的选择栏 501, 用户从点线面中选择了面(方框), 对红外热像中 设置了分析区域 S01、 S02。
参考图 6来说明分析数据及其对应的判断值的设置; 而后, 当选中判断值配置 502, 显示如图 6所示 的设置界面, 对分析数据、 分析数据对应的判断值、 备注信息进行设置。 其中, "区域"可选择在图 5 中 所设置的分析区域、 或整个热像数据帧的全部像素作为分析区域; "模式"可选择最大、 最小、 平均等分 析区域中分析数据的计算模式; "计算"可选择分析区域中分析数据之间的计算关系; "比较"可选择于阀 值之间的比较关系例如"大于 "小于"、 "等于"; "阀值 "为与分析数据之间的比较的判断值; "关系 "如多 个分析数据及对应的判断值构成的判断条件之间的关系, 如与、 或、 非的关系; "诊断"如分析数据对应 的判断阀值的诊断信息例如被摄体状态的性质 "正常、 缺陷、 严重缺陷"等, 进一步还可将判断依据、 缺 陷类型、 缺陷程度、 处理建议等作为诊断信息的备注信息。 当完成设置确认后, 则在图 4所示的分析判断 条件 403中显示 " S01MAX- S02MAX>4°C " 的字样。
参考图 7所示的配置界面, 来说明规定通知信息等的配置。 根据应用的不同, 可以将分析数据、 分析 数据对应的时间、 分析图表、 统计数据、 诊断信息、 红外数据、 方位信息、 热像装置 100的编号等之一或 多个, 作为规定通知信息的内容构成。 进一步, 还可配置根据不同的信息配置条件, 对应有不同的规定通 知信息的内容构成。
参考图 8所示的配置界面, 来说明对发送对象的配置, 根据无线通信部 4的配置, 可以是手机号码、 邮箱、 QQ号码、 网络地址等, 可以向一个或多个发送对象进行规定通知信息的发送。 进一步, 还可配置根 据不同的发送配置条件, 向不同的发送对象发送相同或不同的规定通知信息、 发送次数等。
在本实施例中, 如图 4-8所示, 用户进行了如下的设置: 发送条件: 接收到外部短信 (图 4所示); 分析区域为 S01、 S02 (图 5所示); " S01MAX-S02MAX>4°C "对应的诊断信息为 "严重缺陷"(图 6所示); 规定通知信息为分析数据及诊断信息 (图 7所示); 发送对象是: 号码为 139XXXXXXXX的移动电话 (图 8 所示)。
显然,用户的配置所期望达到的目的是,当每接收到外部短信时,热像装置 100向号码为 1390XXXXXXXX 的手机发送包含分析数据及诊断信息的规定通知信息。 此外, 也可向所接收的短信的发送对象, 发送规定 通知信息。
当完成设置操作, 按下确认键, 控制部 8将所设置的各项配置存储在硬盘 3中 (例如作为一个配置文 件), 作为之后热像装置 100的默认配置, 而并不需要每次使用都设置一次, 而后, 回到待机拍摄状态。 需要注意的是, 尽管示例了可由用户进行相关配置的实施方式; 但不限于此, 也可以是这样的实施方式, 即热像装置 100在出厂时, 即配置好了上述各种处理的相关配置, 而不需要用户进行任何人工设置; 或者 在外部计算机中配置完毕, 在拍摄前将配置文件装载到热像装置 100 ; 或者, 由用户通过操作部 9进行上 述说明的部分内容的配置; 或者根据通信部 4所接收的外部指示信息来确定规定通知信息的构成。 由此, 显然可以在图 1所示的结构中去除显示部 7和操作部 9。
参见图 9来说明热像装置 100的控制流程, 步骤如下:
步骤 A01, 获取热像数据帧, 将拍摄部 1拍摄获得的热像数据帧传送到临时存储部 2 ; 接着, 在步骤 A02, 读取临时存储部 2中例如由拍摄部 1即时拍摄获得的热像数据帧, 分析部 6进行 分析;具体而言, 分析部 6基于所设置的分析区域 S01、S02中的热像数据,获得分析数据 ( S01max-S02max), 存储在临时存储部 2的规定区域;
在步骤 A03, 判断是否符合规定的发送条件?
如未接收到规定的外部指示信息, 则回到步骤 A02, 重复上述步骤, 其中, 当后续获得分析数据 ( S01max-S02max) 大于之前存储的分析数据 (S01max-S02max ) 时, 则替换之前所存储的, 而当小于之前 存储的分析数据时, 将仍保持之前存储的分析数据。 此外, 也可以将每次分析获得的分析数据其对应的时 间均存储在临时存储部 2等存储介质中。 当接收到规定的外部指示信息, 则进入下一步。
步骤 A04, 信息配置部, 对规定通知信息进行配置; 具体而言, 根据临时存储部 2的规定区域中存储 的分析数据、 该分析数据与阀值 (4°C ) 进行比较后所对应的诊断信息来配置规定通知信息, 所述诊断信 息例如在大于 4°C时为 "严重缺陷", 在小于等于 4°C时默认为正常。
步骤 A06, 控制发送规定通知信息。
具体而言, 通信控制部 (控制部 10) 控制通信部 4, 向用户的手机 (139 XXXXXXXX) 发送规定通知信 息的短信; 见图 10所示的规定通知信息的短信示例。
此外, 如用户配置了构成规定通知信息的多项内容时, 如还配置了红外热像、 GPS信息等时, 所述短 信示例见图 11所示的规定通知信息。
并且, 在发送规定通知信息后, 可配置为删除临时存储部 2中所存储的分析数据、 规定通知信息等。 步骤 A07, 判断是否退出, 如退出, 则结束, 如未退出, 则回到步骤 A01, 重复上述的处理。
如上所述, 当达到规定的定时, 就向用户以短信通知的方式进行通知, 用户就不必始终观看图像的方 式或事后追述的方式来进行热像监测, 由于使用了移动通信技术来发送规定通知信息, 由于传输网络是移 动通信网, 因此无需自建网络, 并且由于规定通知信息在规定定时时自动传送到用户手机上, 因此减低了 用户的工作量, 提高监测时效性、 提高监测效率的有益效果 (一个用户就可同时监测多个热像装置 100) ; 由于发送的信息包含了分析数据、 诊断信息等, 因此, 相比现有技术连续发送热像数据帧的方式, 在接收 端可以不必安装热像数据帧的分析软件来分析获得分析数据, 简化了用户的使用操作; 利于普通用户的使 用。 显然, 当热像监测控制装置为带有拍摄功能的便携式热像装置的应用形态时, 有利于迅速让未在现场 的其他用户迅速了解到拍摄的情况。
其中, 规定通知信息并不必须包含分析数据, 也可仅包含规定的热像数据帧获得的红外热像, 因此步 骤 A03可省略或可用其他的处理步骤所替换, 相应的, 在图 1所示的热像装置 100的结构中可以去除分析 部 6的结构。
实施例 2
实施例 2与实施例 1的不同之处在于, 本实施例中, 控制部 8具有记录部 (省略了图示) , 用于连续记 录所获取的热像数据帧, 并且, 在配置规定通知信息时, 基于所记录的热像数据帧, 来配置规定通知信息。 假定应用的场景与实施例 1相同, 与实施例 1中类同的与获得分析数据 (S01max-S02max ) 有关的分析区域 和分析模式的配置。
参见图 13来说明实施例 2的热像装置 100的控制流程。
步骤 B01, 获取热像数据帧, 将拍摄部 1拍摄获得的热像数据帧传送到临时存储部 2 ;
接着, 在步骤 B02, 记录规定的热像数据帧, 例如按照规定的帧频在硬盘 3中记录所获取的热像数据 帧;
并且, 在步骤 B03, 判断是否符合规定通知信息的发送条件?如接收到规定的外部指示信息, 则进入 下一步。 步骤 B04, 信息配置部, 对规定通知信息进行配置; 具体而言, 读取硬盘 3中所记录的热像数据帧, 分析部 6对所记录的热像数据帧进行分析, 获得其中最大数值的分析数据 (S01max-S02max ) ;
步骤 B05, 控制发送规定通知信息。
具体而言, 通过通信部 4, 向用户的手机发送规定通知信息的短信; 例如图 10所示的规定通知信息的 短信示例。
步骤 B06, 判断是否退出, 如退出, 则结束, 如未退出, 则回到步骤 B01, 重复上述的处理。
如上所述, 在本实施例中, 提供了另一种实施方式, 其优点在于, 由于热像数据帧被记录在硬盘 3中, 在后续的规定通知信息的配置时, 可以更为灵活。 当然, 实施本发明的实施方式的任一产品并不一定需要 同时达到以上所述的所有优点。
实施例 3
实施例 3与实施例 1, 2的不同之处在于, 本实施例中, 具有更新部 (控制部 8具有更新部, 省略了 图示), 用于更新判断条件, 当更新了判断条件后, 所述判断部, 用于根据更新后的判断条件, 来判断是 否符合规定通知信息的发送条件。
在实施例 1中, 当接收到查询短信时, 即向用户发送规定通知信息; 在实际应用中, 当被摄体有恶化 的情况时, 用户希望能更多地接收到通知信息。
实施例 3中, 控制部 8进一步具有更新部, 用于更新判断条件, 其他的结构与实施例 1中热像装置 100的 结构相同, 省略了图示。 假定应用的场景与实施例 1相同, 与实施例 1中类同的与获得分析数据
( S01max-S02max )有关的分析区域和分析模式的配置;并配置了相应的更新条件, (S01MAX-S02MAX>4°C ) 对应的发送条件 "接收到外部指示信息(本例中为查询短信)或定时条件 10分钟", ( S01MAX-S02MAX>8°C ) 对应的发送条件 "接收到外部指示信息(本例中为查询短信)或定时条件 5分钟", ( S01MAX-S02MAX<4°C ) 对应的发送条件"接收到查询短信"等(未图示); 即例如当分析数据(S01max-S02max )大于判断值(4°C ), 则更新判断条件, 当更新了判断条件后, 所述判断部, 用于基于更新后的判断条件, 来判断是否符合规定 通知信息的发送条件。
参见图 14来说明实施例 3的热像装置 100的控制流程。
步骤 C01, 获取热像数据帧, 将拍摄部 1拍摄获得的热像数据帧传送到临时存储部 2 ;
接着, 在步骤 C02, 读取临时存储部 2中例如由拍摄部 1即时拍摄获得的热像数据帧, 分析部 6进行 分析, 获得分析数据 (S01max-S02max ) ;
并且, 在步骤 C03, 判断是否符合规定通知信息的发送条件?
具体而言, 如未接收到查询短信, 则回到步骤 C02, 重复上述步骤。 如符合, 则进入下一步。
步骤 C04, 信息配置部, 对规定通知信息进行配置;
步骤 C05, 控制发送规定通知信息。
具体而言, 通过通信部 4, 向用户的手机发送规定通知信息的短信; 例如图 10所示的规定通知信息的 短信示例。
步骤 C06, 判断是否满足更新条件?
如满足, 例如 (S01MAX-S02MAX>4°C ), 则在步骤 C07, 更新发送条件, 例如图 15所示, 增加定时时 间 (10分钟) 作为发送条件之一;
步骤 C08, 判断是否退出, 如退出, 则结束; 如未退出, 则回到步骤 C01, 重复上述的处理。 而后, 在步骤 C03, 判断是否满足规定的发送条件, 即达到更新后的定时 (10分钟) 或接收到查询短信的其中之 一,并进行相应的控制;并且在步骤 C06,再次判断是否满足更新条件,当分析数据(S01MAX-S02MAX>8°C ) 时, 将再次更新定时 (如 5分钟); 或当 (S01MAX-S02MAX<4°C ) 时, 更新回原来的发送条件 (接收到查 询短信); 这样, 能避免对用户的过度打扰, 并在特定的情况下, 使用户能及时了解到变化的情况。
本实施例中, 虽然以定时作为更新后的发送条件之一,但不限于此, 可以有多种发送条件的更新方式, 例如增加其他的判断条件 (如以分析数据与特定阀值的比较结果) 来作为判断是否发送的条件等。
其他的实施方式,或者,也可以将判断满足更新条件的步骤改变为判断是否满足特定的信息配置条件, 来配置不同或相同的规定通知信息。 或者, 也可以将判断满足更新条件的步骤, 改变为判断是否满足特定 的发送配置条件, 来配置不同或相同的发送对象, 和 /或, 配置不同或相同的发送次数。 或者, 也可以伴 随着改变发送对象、 发送通知信息的内容、 发送次数等实施方式。
如上所述, 在本实施例中, 由于考虑了对判断条件的更新, 避免了对用户的过度打扰, 避免了对规定 通知信息的忽视, 显然, 在特定的应用情况下, 提高了规定通知信息的实用性; 当然, 实施本发明的实施 方式的任一产品并不一定需要同时达到以上所述的所有优点。
实施例 4
实施例 4, 与上述实施例 1, 2的不同之处在于, 为避免对用户的过度打扰, 同时满足特定条件下的即 时发送的需求, 所述热像装置 100具有多个发送条件, 满足其中一个即进行发送。
在实施例 1、 2 中, 当接收到规定的外部指示信息时, 即向用户发送规定通知信息; 可能存在遗漏被 摄体缺陷的情况。 在实际应用中, 用户还希望在监测的对象有异常时, 也能接收到通知信息。
参考图 16来说明热像装置 100的发送条件设置菜单的实施例, 当用户通过操作部, 选择进入菜单模 式后, 显示部 7显示如图 16所示的发送条件设置的配置界面, 用于用户设置 (增加、 修改、 删除) 发送 条件。
第一发送条件设置, 用于配置定时条件、 查询条件、 分析判断条件中的一项或多项, 作为是否进行发 送的第一条件, 当第一条件的配置有多项子条件时, 必须同时满足多项才满足发送条件。
第二、 第二等发送条件设置, 用于配置查询条件、 分析判断条件等, 作为是否进行发送的第二条件、 第三条件等, 显然, 可以有更多的发送条件。
用户的配置如图 16所示,第一发送条件为定时条件(120分钟)及分析判断条件 ( S01MAX-S02MAX>4°C ), 第二发送条件为接收到用户的外部指示信息 (本例中为查询短信), 第三发送条件为分析判断条件 ( S01MAX-S02MAX >8°C ) ; 其中, 用户所期望能通过发短信的方式来查询分析数据, 并且, 用户所能忍受 的极限温差为 8°C, 如果大于 8°C, 期望立即能得到规定通知信息, 以便安排停电检修。
参见图 17来说明实施例 4的热像装置 100的控制流程。
步骤 D01, 获取热像数据帧, 将拍摄部 1拍摄获得的热像数据帧传送到临时存储部 2 ;
接着, 在步骤 D02, 读取临时存储部 2中例如由拍摄部 1即时拍摄获得的热像数据帧, 分析部 6进行 分析; 具体而言, 分析部 6基于所设置的分析区域 S01、 S02中的热像数据的像素, 计算最高温度, 获得 分析数据 (S01MAX-S02MAX) ;
并且, 在步骤 D03, 判断是否符合规定的第二、 第三发送条件?
具体而言, 将所获得的分析数据(S01MX-S02MAX )与规定的判断值(阀值 8°C )进行比较, 如小于规 定的判断值, 则判断是否接收到用户的查询短信, 如均为否, 则进入步骤 D04, 如其中之一为是, 则跳到 步骤 D05 ;
步骤 D04, 判断是否符合第一发送条件, 即判断在规定定时期间是否有大于规定阀值 (4°C ) 的情况; 步骤 D05, 信息配置部, 对规定通知信息进行配置; 具体而言, 根据所获得的分析数据、 与阀值进行 比较后对应的备注信息来配置规定通知信息; 步骤 D06, 控制发送规定通知信息。 具体而言, 通过通信部 4, 向用户的手机发送规定通知信息的短 信;
步骤 D07, 判断是否退出, 如退出, 则结束, 如未退出, 则回到步骤 D01, 重复上述的处理。
如上所述, 在本实施例中, 由于考虑了多个发送条件, 即避免了对用户的过度打扰, 避免了对规定通 知信息的忽视, 又在特定情况下对用户进行即时的规定通知信息发送, 提高了监测规定通知信息的可利用 性; 当然, 实施本发明的实施方式的任一产品并不一定需要同时达到以上所述的所有优点。
实施例 5
实施例 5, 与上述实施例 1, 2 , 3, 4的不同之处在于, 为便于用户了解监测过程中的分析数据变化趋 势, 热像装置 100基于分析数据获得分析图表, 发送给发送对象; 一种实施方式, 热像装置 100具有: 用 于存储多个规定帧分析获得的分析数据及其对应的时间的存储部; 信息配置部, 用于配置规定通知信息, 所述规定通知信息中至少包含存储部中存储的分析数据及其对应的时间或基于分析数据及对应的时间获 得的分析图表。 本例中, 所述分析图表为多个规定时刻热像数据帧分析获得的分析数据, 及对应的规定时 刻 (如热像数据帧的获取时刻) 而获得的分析数据 -时间曲线。
参见图 18来说明实施例 5的热像装置 100的控制流程。
步骤 E02, 获取热像数据帧, 将拍摄部 1拍摄获得的热像数据帧传送到临时存储部 2 ;
接着, 在步骤 E03, 读取临时存储部 2中例如由拍摄部 1即时拍摄获得的热像数据帧, 分析部 6进行 分析; 具体而言, 分析部 6基于所设置的分析区域 S01、 S02中的热像数据的像素, 计算最高温度, 获得 分析数据 (S01MAX-S02MAX) ;
并且, 在步骤 E04, 在临时存储部 2的规定区域存储分析数据及对应的时间 (如热像数据帧的获取时 间); 此外, 也可将分析数据及对应的时间存储在硬盘中;
步骤 E05, 判断是否符合发送条件, 例如判断是否接收到用户的查询短信; 如否, 则回到步骤 E02, 如是, 则进入下一步。
步骤 E06, 信息配置部, 对规定通知信息进行配置; 具体而言, 根据临时存储部 2中存储的分析数据 及各自对应的时间 (可选择规定数量的分析数据及对应的时间), 来生成分析数据-时间趋势曲线。 此外, 还可将大于阀值的最大的分析数据 (S01MAX-S02MAX ) 所对应的诊断信息同时作为规定通知信息。
步骤 E07, 控制发送规定通知信息。 具体而言, 通过通信部 4, 向用户的手机发送规定通知信息的短 信;
步骤 E08, 判断是否退出, 如退出, 则结束, 如未退出, 则回到步骤 E01, 重复上述的处理。
参见图 19所示的规定通知信息, 其中包含了构成规定通知信息的多项内容, 分析数据、 诊断信息、 分析数据-时间曲线(省略了纵坐标分析数值、横坐标时间数值、 阀值界线等的显示, 显然也可进行显示)。
如上所述, 在本实施例中, 由于考虑了基于多个时刻的分析数据来获得分析数据 -时间曲线, 发送给 用户,提高了监测规定通知信息的直观性,并使用户能掌握被摄体的变化趋势,进一步提高了热像装置 100 的实用性; 并且, 由于发送的信息包含了分析图表等的信息, 因此, 相比发送热像数据帧的方式, 在接收 端可以不必安装热像数据帧的分析软件来分析获得分析图表, 简化了用户的使用操作; 利于普通用户的使 用。 当然, 实施本发明的实施方式的任一产品并不一定需要同时达到以上所述的所有优点。
当设置有多个分析区域、 分析模式的组合来获得相应的多组分析数据, 可获得多条分析数据 -时间曲 线。 可在同一或多个坐标系中来布置多条曲线。 优选的, 规定通信信息包括分析数据趋势曲线及根据分析数据趋势曲线中的关注点的红外数据 (如最 高温度时的红外热像); 显然, 可在步骤 E03, 将与规定通知信息相关的红外热像与分析数据及其对应的时 间关联记录在临时存储部 2中, 以备规定通知信息的配置所用。
其中, 可以采用多种方式来进行分析数据及其关联时间的存储管理, 例如按照规定频率, 将分析数据 及其时间存储在临时存储部的规定区域, 当存储了规定数量的分析数据及其关联时间时, 将最新获得的分 析数据及其关联时间替换最旧的; 也可进行稀疏处理等。
实施例 5的变形, 例如也可将热像数据帧连续记录在硬盘 3中, 而并不存储分析数据及对应的时间; 而后当符合规定通知信息的发送条件, 从硬盘 3中读取规定的热像数据帧进行分析, 来获得分析数据及对 应的时间。
实施例 6
在实际应用中, 使用者往往希望看到关注时刻的红外热像, 目前由于高像素的红外探测器的应用, 例 如 640*480像素的红外探测器, 可以拍摄到清晰的红外热像, 这种图像大导致无线传输时可能较慢, 虽然 可以发送缩小的红外热像, 但为便于使用者的监测观看高质量的图像; 实施例 7采用了二次发送的方式, 来达到及时提醒用户并发送高质量红外热像的目的。 实施例 6与实施例 1, 2, 3, 4, 5的不同之处在于, 本实施例中, 所述信息配置部, 用于根据不同的信息配置条件, 来配置不同或相同的规定通知信息。 假定 应用的场景与实施例 1相同, 与实施例 1中类同的分析区域、 分析模式的配置, 并设置 " S01MAX-S02MX > 4 °C "作为信息配置条件及发送配置条件(未图示), 当符合发送条件, 配置的规定通知信息为分析数据 及时间, 进行一次发送; 当大于规定的阀值时 4°C, 进行第二次发送, 配置的规定通知信息中包含分析数 据、 时间、 红外数据。
参见图 20来说明实施例 6的热像装置 100的控制流程。
步骤 F01, 获取热像数据帧, 将拍摄部 1拍摄获得的热像数据帧传送到临时存储部 2 ;
接着, 在步骤 F02, 判断是否符合规定通知信息的发送条件如接收到用户的短信? 如是, 则进入下一 步。
步骤 F03, 信息配置部, 对规定通知信息进行配置, 配置的规定通知信息为对规定的热像数据帧进行 分析获得的分析数据 (S01max-S02max ) 及时间; 而后在步骤 F04进行发送;
步骤 F05, 将对规定的热像数据帧进行分析获得的分析数据 (S01max-S02max ) 与规定的阀值 4°C进行 比较; 如小于等于规定的阀值 4°C时, 则跳到步骤 F08, 如大于规定的阀值 4°C时, 则到步骤 F06, 信息配 置部, 对规定通知信息进行配置, 配置的规定通知信息为红外热像、 分析数据及时间; 而后在步骤 F07再 次进行发送;
步骤 F08, 判断是否退出, 如退出, 则结束, 如未退出, 则回到步骤 F01, 重复上述的处理。
如上所述, 在本实施例中, 其优点在于, 可以达到减少数据的发送量、 提高发送的速度, 及时提示使 用者等的有益效果。当然,实施本发明的实施方式的任一产品并不一定需要同时达到以上所述的所有优点。
并且, 在 F06配置了不同内容的规定通知信息, 但也可以是相同的规定通知信息。
显然, 另一优选的实施方式, 当分析数据(S01MAX-S02MAX )小于等于规定的阀值 4°C时, 配置的规定 通知信息为分析数据及时间; 当大于规定的阀值时 4°C, 配置的规定通知信息中包含分析数据、 时间、 红 外数据。 这样可仅进行一次发送。
其他实施例
本发明不仅适用于带有拍摄功能的热像装置, 还适用于从外部连续接收和处理热像(如按时序获取的 热像数据帧) 的热像处理装置, 所述热像处理装置如计算机、 个人数字助理 (PDA)、 与拍摄功能的热像监 测控制装置配套使用的显示装置等, 通过通信接口连续接受与其连接的热像装置输出的热像数据帧, 来实 现热像监测控制装置的一个实施例子; 通过读取存储介质中存储的热像数据帧进行处理, 来实现热像监测 控制装置的另一个例子; 与上述实施方式类同, 省略了说明。 并且, 也可作为带有拍摄功能的热像装置、 或热像处理装置中的一个构成部件或功能模块, 也构成本发明的实施方式。
优选的方式, 热像装置 100还具有记录部, 用于进行记录的控制, 例如控制部 8具有记录部, 用于按 照规定的帧频连续记录拍摄获得的热像数据帧和 /或热像数据帧规定处理后获得的数据, 连续记录在存储 介质如硬盘 3中等, 此外, 也可以记录在通过通讯部 4通讯的网络目的地等。
在上述实施例中, 在热像监测控制装置与发送对象之间, 当符合规定通知信息的发送条件, 以发送规 定通知信息作为示例; 显然, 热像监测控制装置向发送对象并不限定于仅发送规定通知信息, 也包括这种 情况, 即热像装置 100与发送对象之间存在其他信息的发送, 例如热像装置 100不断将热像数据帧等其他 信息发送给发送对象 (如用户的计算机), 但当符合规定通知信息的发送条件, 才发送规定通知信息 (例 如诊断信息等)。
在上述的例子, 是按照一定的步骤次序来描述, 但根据不同的实施方式可以有各种先后顺序, 并不限 于上述例子所描述的处理次序。 例如当控制部 8、 图像处理部 5、 分析部 6等之一或多个分为多个处理器 时, 还可能存在部分步骤适用的并行处理。
在上述的例子中, 先判断是否满足发送条件, 当满足发送条件, 进行规定通知信息的配置; 但不限于 此, 在其他的实施方式中, 也可以变更为先进行规定通知信息的配置, 再判断是否满足发送条件, 当不满 足, 例如可根据新获取的热像数据帧来更新规定通知信息; 如满足, 则进行发送。
本领域技术人员可根据本发明的思想来进行多种处理次序的变化, 这些变化均属于本发明的范围。 在上述实施例中仅是示例, 本发明不限于此。 在上述实施例中的结构和操作可以根据需要改变。 其中, 在上述实施例中, 热像监测控制装置为固定使用, 但不限定于此, 也可以适用于便携式的具有 拍摄功能的热像装置, 或架设在移动平台 (如云台、 车辆) 上的热像装置。 即所述热像监测控制装置为可 固定安装的热像装置或便携式的热像装置, 所述热像装置具有拍摄获取热像数据帧的获取部。 现有便携拍 摄的热像装置虽能无线的方式连续发送热像数据帧, 但如能采用本发明的思想, 按照规定的条件来进行有 针对性的发送, 能大大提高后端使用者的便利或降低发送的数据量。 并且, 不限于临时架设的热像监测控 制装置, 也可适用于其他在线安装的热像监测控制装置。
本发明的方面还可以通过独处和执行记录在存储装置上的程序来执行上述实施例的功能的系统或设 备的计算机(或诸如 CPU、 MPU等的装置)、 以及通过其步骤由系统或设备的计算机通过例如读出和执行记 录在存储装置上的程序来执行上述实施例的功能而知性的方法来实现。 为此目的, 例如经由网络或从用作 存储装置的各种类型的记录介质 (例如, 计算机可读介质) 中将程序提供至计算机。
本发明提供一种计算机程序,计算机程序构成的数字信号记录在计算机可读的记录介质中,例如硬盘、 存储器等中。 该程序运行后执行如下步骤:
29、 热像监测控制方法, 包括:
获取步骤, 用于获取热像数据帧;
判断步骤, 用于将信息接收步骤是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来 判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 其中,当判断步骤判断符合发送条件时,所述通信控制步骤控制信息发送步骤发送所述规定通知信息。 本发明的实施方式还提供一种可读存储介质, 其存储用于电子数据交换的计算机程序, 其中, 所述计 算机程序使得热像监测控制装置中的计算机执行如下步骤:
获取步骤, 用于获取热像数据帧;
解析步骤, 用于解析信息接收步骤接收的外部指示信息, 来获得发送条件、 规定通知信息的构成、 发 送对象的信息中至少之一;
判断步骤, 用于判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 当判断步骤判断符合发送条件时, 所述通信控制步骤控制信息发送步骤发送所述规定通知信息; 其中, 根据解析步骤所解析获得的信息来确定发送条件、 规定通知信息的构成、 发送对象、 发送次数 其中的一项或多项。
可以通过一个软件或硬件模块来实现多个功能的块。 或也可通过多个软件或硬件单元来实现一个功能 的块。 此外, 也可以用专用电路或通用处理器或可编程的 FPGA实现本发明的实施方式中的部分或全部部 位的处理和控制功能。
此外, 例子以电力行业的被摄体应用作为场景例举, 也适用在红外检测的各行业广泛运用。
上述所描述的仅为发明的具体例子(实施方式), 各种例举说明不对发明的实质内容构成限定, 并且, 各种实施方式进行相应的替换和组合, 可构成更多的实施方式。 所属领域的技术人员在阅读了说明书后可 对具体实施方式进行其他的修改和变化, 而不背离发明的实质和范围。

Claims

权 利 要 求 书
1、 热像监测控制装置, 包括:
拍摄部, 用于拍摄获取热像数据帧;
判断部, 用于将信息接收部是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来判断 是否符合规定通知信息的发送条件;
信息配罝部, 用于配罝规定通知信息;
通信控制部, 用于控制信息发送部以无线的方式将规定通知信息发送至规定的发送对象; 其中, 当判断部判断符合发送条件时, 所述通信控制部控制信息发送部发送所述规定通知信息。
2、 热像监测控制装罝, 包括:
拍摄部, 用于拍摄获取热像数据帧:
解析部, 用于解析信息接收部接收的外部指示信息, 来获得发送条件、 规定通知信息的构成、 发送对 象的信息中至少之一;
判断部, 用于判断是否符合规定通知信息的发送条件;
信息配置部, 用于配置规定通知信息;
通信控制部, 用于控制信息发送部以无线的方式将规定通知信息发送至规定的发送对象; 当判断部判断符合发送条件时, 所述通信控制部控制信息发送部发送所述规定通知信息; 其中, 根据解析部所解析获得的信息来确定发送条件、 规定通知信息的构成、 发送对象,、 发送次数 其中的一项或多项。
3、 热像监测控制装置, 包括:
获取部, 用于获取热像数据帧;
判断部, 用于将信息接收部是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来判断 是否符合规定通知信息的发送条件;
信息配置部, 用于配置规定通知信息;
通信控制部, 用于控制信息发送部以无线的方式将规定通知信息发送至规定的发送对象; 其中, 当判断部判断符合发送条件时, 所述通信控制部控制信息发送部发送所述规定通知信息。
4、 热像监测控制装置, 包括:
获取部, 用于获取热像数据帧;
解析部, 用于解析信息接收部接收的外部指示信息, 来获得发送条件、 规定通知信息的构成、 发送对 象的信息中至少之一;
判断部, 用于判断是否符合规定通知信息的发送条件;
信息配罝部, 用于配罝规定通知信息;
通信控制部, 用于控制信息发送部以无线的方式将规定通知信息发送至规定的发送对象; 当判断部判断符合发送条件时, 所述通信控制部控制信息发送部发送所述规定通知信息; 其中, 根据解析部所解析获得的信息来确定发送条件、 规定通知信息的构成、 发送对象、 发送次数其 中的一项或多项。
5、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 所述判断部, 用于基于定时条 件、 查询条件、 分析判断条件中的一项或多项, 作为判断条件或判断条件之一, 来判断是否符合规定通知 信息的发送条件。
6、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 具有更新部, 用于更新判断条 件、 规定通知信息、 发送对象中的一项或多项; 当更新了判断条件后, 所述判断部, 用于根据更新后的判断条件, 来判断是否符合规定通知信息的发 送条件;
当更新了规定通知信息的构成配置后, 信息配置部, 用于根据更新后的规定通知信息的配置来配置规 定通知信息;
当更新了发送对象后, 通信控制部, 用于根据更新后的发送对象进行规定通知信息发送。
7、 如权利要求 7所述的热像监测控制装置, 其特征在于, 所述更新部, 用于增加定时条件、 或延长 定时条件中的定时时间、 或缩短定时条件中的定时时间。
8、 如权利要求 1-4任意一项所述的热像监测控制装置, 所述规定通知信息, 可以包含分析数据、 分 析数据对应的时间、 分析图表、 统计数据、 诊断信息、 热像数据、 方位信息、 热像监测控制装置的编号之 一或多个。
9、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 具有分析部, 用于对所获取的 热像数据帧的规定帧进行分析, 获得分析数据;
所述规定通知信息中至少包含分析部分析获得的分析数据、 基于分析数据获得的分析图表、 诊断结果 的其中之一。
10、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于,
具有分析部, 用于对所述热像数据帧的规定帧进行分析, 获得分析数据;
具有诊断部, 用于根据分析数据来获得诊断结果;
所述信息配置部, 配置的规定通知信息中至少包含所述诊断结果。
11、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 当符合第一配置条件, 配置的 规定通知信息中至少包含分析数据, 或还包括分析数据对应的时间; 当符合第二配置条件, 配置的规定通 知信息中至少包含红外数据, 或还包括分析数据、 或还包括分析数据对应的时间。
12、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 所述通信控制部, 用于控制通 信部进行规定通知信息发送至规定的发送对象, 其中, 根据不同的发送配置条件, 发送给不同或相同的发 送对象, 和 /或, 采用不同或相同的发送次数。
13、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 具有信息发送部和 /或信息接 收部, 所述信息发送部和 /或信息接收部具有 GPRS、 GSM, CDMA, 3G、 4G、 5G、 WIFI单元中的至少之一。
14、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 所述信息发送部具有短信发送 部, 用于发送短信; 和 /或信息接收部, 具有短信接收部, 用于接收短信。
15、 如权利要求 1-4任意一项所述的热像监测控制装置,
其特征在于, 具有记录部, 用于连续记录热像数据帧。
16、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 具有
接收部, 用于接收外部指示信息;
解析部, 所述用于解析所接收的外部指示信息;
所述判断部、 信息配置部、 通信控制部中的一个或多个, 基于解析的外部指示信息, 执行相应的处理 控制。
17、 如权利要求 16所述的热像监测控制装置, 其特征在于, 所述判断部根据所述外部指示信息获得 解析获得的信息, 与规定值的比较结果, 来决定是否满足发送条件。
18、 如权利要求 21所述的热像监测控制装置, 其特征在于,
所述外部指示信息至少包括短信或电话其中之一。 19、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于, 具有配置部, 用于使用者配置 发送条件、 规定通知信息的构成、 发送对象、 发送次数、 发送配置条件、 信息配置条件中之一或多个。
20、 如权利要求 1所述的热像监测控制装置, 其特征在于, 所述热像监测控制装置为可架设式热像装 置。
21、 如权利要求 1-4任意一项所述的热像监测控制装置, 其特征在于,
具有记录部, 用于连续记录所获取的热像数据帧中的规定的热像数据帧;
分析部, 用于对记录部所记录的热像数据帧中的规定帧, 进行分析, 获得分析数据;
所述规定通知信息中至少包含对所述规定帧分析获得的分析数据、 基于对热像数据帧分析获得的分析 数据生成的分析图表、 诊断结果的其中之一。
22、 如权利要求 1所述的热像监测控制装置, 其特征在于, 所述热像数据帧包含基于红外探测器的信 号获得的 AD值数据。
23、 如权利要求 2所述的热像监测控制装置, 其特征在于, 所述热像数据帧为从外部接收或从存储介 质中读取获得。
24、 如权利要求 12-14任意一项所述的热像监测控制装置, 其特征在于, 所述分析数据至少包括温度 值数据。
25、 如权利要求 1-27任意一项所述的热像监测控制装置, 其特征在于, 当符合发送条件, 如符合网 站服务器的发送条件时, 将规定通知信息发送至网站服务器; 如符合规定用户的便携终端的发送条件时, 将规定通知信息发送至规定用户的便携终端。
26、 监测系统, 包括一个或多个如权利要求 1-25任意一项所述的热像监测控制装置, 及一个或多个 发送对象; 所述发送对象包括网络服务器和 /或用户终端, 所述用户终端包括便携的手机、 PDA、 笔记本电 脑、 平板电脑。
27、 热像监测控制方法, 包括:
拍摄步骤, 用于拍摄获取热像数据帧;
判断步骤, 用于将信息接收步骤是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来 判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 其中,当判断步骤判断符合发送条件时,所述通信控制步骤控制信息发送步骤发送所述规定通知信息。
28、 热像监测控制方法, 包括:
拍摄步骤, 用于拍摄获取热像数据帧;
解析步骤, 用于解析信息接收步骤接收的外部指示信息, 来获得发送条件、 规定通知信息的构成、 发 送对象的信息中至少之一;
判断步骤, 用于判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 当判断步骤判断符合发送条件时, 所述通信控制步骤控制信息发送步骤发送所述规定通知信息; 其中, 根据解析步骤所解析获得的信息来确定发送条件、 规定通知信息的构成、 发送对象,、 发送次 数其中的一项或多项。
29、 热像监测控制方法, 包括: 获取步骤, 用于获取热像数据帧;
判断步骤, 用于将信息接收步骤是否接收到规定的外部指示信息, 作为判断条件或判断条件之一, 来 判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 其中,当判断步骤判断符合发送条件时,所述通信控制步骤控制信息发送步骤发送所述规定通知信息。
30、 热像监测控制方法, 包括:
获取步骤, 用于获取热像数据帧;
解析步骤, 用于解析信息接收步骤接收的外部指示信息, 来获得发送条件、 规定通知信息的构成、 发 送对象的信息中至少之一;
判断步骤, 用于判断是否符合规定通知信息的发送条件;
信息配置步骤, 用于配置规定通知信息;
通信控制步骤, 用于控制信息发送步骤以无线的方式将规定通知信息发送至规定的发送对象; 当判断步骤判断符合发送条件时, 所述通信控制步骤控制信息发送步骤发送所述规定通知信息; 其中, 根据解析步骤所解析获得的信息来确定发送条件、 规定通知信息的构成、 发送对象、 发送次数 其中的一项或多项。
31、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 所述判断步骤, 用于基于定 时条件、 査询条件、 分析判断条件中的一项或多项, 作为判断条件或判断条件之一, 来判断是否符合规定 通知信息的发送条件。
32、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 具有更新步骤, 用于更新判 断条件、 规定通知信息、 发送对象中的一项或多项;
当更新了判断条件后, 所述判断步骤, 用于根据更新后的判断条件, 来判断是否符合规定通知信息的 发送条件;
当更新了规定通知信息的构成配置后, 信息配置步骤, 用于根据更新后的规定通知信息的配置来配置 规定通知信息;
当更新了发送对象后, 通信控制步骤, 用于根据更新后的发送对象进行规定通知信息发送。
33、 如权利要求 7所述的热像监测控制方法, 其特征在于, 所述更新步骤, 用于增加定时条件、 或延 长定时条件中的定时时间、 或缩短定时条件中的定时时间。
34、 如权利要求 27-30任意一项所述的热像监测控制方法, 所述规定通知信息, 可以包含分析数据、 分析数据对应的时间、 分析图表、 统计数据、 诊断信息、 热像数据、 方位信息、 热像监测控制方法的编号 之一或多个。
35、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 具有分析步骤, 用于对所获 取的热像数据帧的规定帧进行分析, 获得分析数据;
所述规定通知信息中至少包含分析步骤分析获得的分析数据、 基于分析数据获得的分析图表、 诊断结 果的其中之一。
36、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于,
具有分析步骤, 用于对所述热像数据帧的规定帧进行分析, 获得分析数据;
具有诊断步骤, 用于根据分析数据来获得诊断结果;
所述信息配置步骤, 配置的规定通知信息中至少包含所述诊断结果。 37、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 当符合第一配置条件, 配置 的规定通知信息中至少包含分析数据, 或还包括分析数据对应的时间; 当符合第二配置条件, 配置的规定 通知信息中至少包含红外数据, 或还包括分析数据、 或还包括分析数据对应的时间。
38、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 所述信息发送步骤具有短信 发送步骤, 用于发送短信; 和 /或信息接收步骤, 具有短信接收步骤, 用于接收短信。
39、 如权利要求 27-30任意一项所述的热像监测控制方法,
其特征在于, 具有记录步骤, 用于连续记录热像数据帧。
40、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 具有
接收步骤, 用于接收外部指示信息;
解析步骤, 所述用于解析所接收的外部指示信息;
所述判断步骤、 信息配置步骤、 通信控制步骤中的一个或多个, 基于解析的外部指示信息, 执行相应 的处理控制。
42、 如权利要求 16所述的热像监测控制方法, 其特征在于, 所述判断步骤根据所述外部指示信息获 得解析获得的信息, 与规定值的比较结果, 来决定是否满足发送条件。
43、 如权利要求 21所述的热像监测控制方法, 其特征在于,
所述外部指示信息至少包括短信或电话其中之一。
44、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 具有配置步骤, 用于使用者 配置发送条件、 规定通知信息的构成、 发送对象、发送次数、 发送配置条件、 信息配置条件中之一或多个。
45、 如权利要求 27-30任意一项所述的热像监测控制方法, 其特征在于, 所述信息配置步骤可在判断 步骤之前、 之后、 或同时。
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