CN215490007U - Multi-dimensional control system - Google Patents

Multi-dimensional control system Download PDF

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Publication number
CN215490007U
CN215490007U CN202121266607.6U CN202121266607U CN215490007U CN 215490007 U CN215490007 U CN 215490007U CN 202121266607 U CN202121266607 U CN 202121266607U CN 215490007 U CN215490007 U CN 215490007U
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module
signal
control system
control module
alarm
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潘银山
荣建新
张琪
黄贤亮
朱林
张磊
王胤
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Fudi Honghua Power Wuhan Co ltd
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Fudi Honghua Power Wuhan Co ltd
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Abstract

The application relates to the field of warm-living control systems, in particular to a multi-dimensional control system which comprises a detection module, a control module and a control module, wherein the detection module is used for detecting pressure and temperature information of a warm-living system pipeline and outputting a pressure signal and a temperature signal; further comprising: a control module; the alarm signal is output when the pressure signal and the temperature signal are detected to be different from the corresponding preset value signals; the camera equipment is connected with the control module, responds to the alarm signal, performs image acquisition on the preset position area and outputs an image signal; and the communication module is connected with the control module and the camera shooting equipment and can communicate with external equipment. The method and the device have the effects of reducing the time spent on searching the fault point by the worker and facilitating the determination of the position of the fault point by the worker.

Description

Multi-dimensional control system
Technical Field
The application relates to the field of warm-living control systems, in particular to a multi-dimensional control system.
Background
At present, with the rapid increase of the warm-air service traffic, the safety performance of the warm-air control system is more and more important. In a common heating system, faults such as leakage and the like easily occur at a connection node and an exposed node of a pipeline, so that heating pressure and temperature are changed.
Although the existing warm-air system can give an alarm when a fault occurs, the pipeline path of the warm-air system is usually long and has a wide coverage range, so that maintenance personnel cannot locate the fault point in time, and much time is spent on determining the fault point in the maintenance process.
In view of the above-mentioned related art, the inventors have considered that there is a drawback in that it takes much time for a maintenance worker to not easily determine a failure point.
SUMMERY OF THE UTILITY MODEL
In order to reduce the time it takes for a worker to find a point of failure, the present application provides a multi-dimensional control system.
The multi-dimensional control system provided by the application adopts the following technical scheme:
a multi-dimensional control system comprises a detection module, a control module and a control module, wherein the detection module is used for detecting pressure and temperature information of a warm-living system pipeline and outputting a pressure signal and a temperature signal; further comprising:
a control module; the alarm signal is output when the pressure signal and the temperature signal are detected to be different from the corresponding preset value signals;
the camera equipment is connected with the control module, responds to the alarm signal, performs image acquisition on the preset position area and outputs an image signal;
and the communication module is connected with the control module and the camera shooting equipment and can communicate with external equipment.
By adopting the technical scheme, when the detection module detects that the pressure and/or the temperature of the warm living system are abnormal, the control module can control the camera equipment to collect images, and the collected image information can be sent through the communication module, so that a worker can determine the position area of a fault point through images, the time spent on the maintenance worker for determining the fault point is reduced, and the working efficiency is improved.
Optionally, the multi-dimensional control system further includes a reset module connected to the control module, and configured to output a reset signal in response to an external trigger, and the image capturing apparatus stops image capturing in response to the reset signal
Through adopting above-mentioned technical scheme, after removing the trouble, the workman can stop the collection of image through module control camera equipment that resets for only when warm office system breaks down, camera equipment just can carry out the collection of image, has effectively practiced thrift the electric energy.
Optionally, the multidimensional control system further comprises an alarm module connected to the control module and configured to respond to the alarm signal to perform an alarm.
Through adopting above-mentioned technical scheme, when detection module detects that warm pressure and/or the temperature of living in the system appears unusually, control module can control warning module and warn the workman, is convenient for remind the workman to discover the fault condition of warm living in the system.
Optionally, the multidimensional control system further comprises a positioning module, and the positioning module is connected in parallel with the image pickup device and can output a position signal.
By adopting the technical scheme, the geographic position of the camera equipment for acquiring the fault point image can be determined more accurately by a worker through the position signal of the positioning module.
Optionally, the multidimensional control system further comprises a watchdog module, an output end of the watchdog module is connected to an output end of the control module, and an output end of the control module is connected to an input end of the watchdog module.
By adopting the technical scheme, the watchdog module can monitor the state of the control module at regular time and restart the control module when the control module breaks down, so that the stability of the control system is improved.
Optionally, the communication module may be a 4G communication chip or a 5G communication chip.
Through adopting above-mentioned technical scheme, 4G communication chip and 5G communication chip are used extensively in the market, and the scheme maturity is high, can reduce the design cost of this system, also can improve the stability of this system simultaneously.
Optionally, the control module is a CPU processor.
By adopting the technical scheme, the method has the advantages that,
optionally, the positioning module is a Beidou positioning chip or a GPS positioning chip.
By adopting the technical scheme, the Beidou positioning chip and the GPS positioning chip can perform accurate positioning, so that workers can determine the accurate position of a fault point conveniently; simultaneously, the Beidou positioning chip and the GPS positioning chip are high in stability, and the reliability of the control system is improved.
In summary, the present application includes at least one of the following beneficial technical effects:
1. when the detection module detects that the pressure and/or the temperature of the warm living system are abnormal, the control module can control the camera equipment to collect images, and collected image information can be sent through the communication module, so that a worker can conveniently determine the position area of a fault point through the images, the time spent by a maintenance worker on determining the fault point is reduced, and the working efficiency is improved;
2. after the fault is removed, a worker can control the camera equipment to stop image acquisition through the reset module, so that the camera equipment can acquire the image only when the warm office system has the fault, and the electric energy is effectively saved;
3. through the position signal of the positioning module, the workers can more accurately determine the geographic position of the camera equipment for acquiring the fault point image.
Drawings
Fig. 1 is a schematic diagram of a connection relationship between modules in this embodiment.
Description of reference numerals: 1. a detection module; 11. a temperature sensor; 12. a pressure sensor; 2. a control module; 3. an image pickup apparatus; 4. a communication module; 5. a reset module; 6. an alarm module; 61. an audible alarm; 62. a short message alarm; 7. a positioning module; 8. a watchdog module.
Detailed Description
The present application is described in further detail below with reference to fig. 1.
The embodiment of the application discloses a multi-dimensional control system, and with reference to fig. 1, the multi-dimensional control system comprises a detection module 1, a control module 2, a camera device 3 and an alarm module 6. The detection module 1 can detect the pressure and the temperature of a warm-living system pipeline and output corresponding pressure signals and temperature signals; when the pressure signal is not equal to the preset signal value and/or the temperature signal is not equal to the preset reference value signal, the control module 2 can output an alarm signal; the warning module 6 gives a warning in response to the warning signal, and the camera device 3 collects images in response to the warning signal, so that maintenance personnel can determine the position area of the fault point through the images conveniently, and the time for determining the fault point is shortened.
Referring to fig. 1, specifically, the control module 2 may be a CPU processor, the detection module 1 includes a plurality of temperature sensors 11 and a plurality of pressure sensors 12, and output ends of the temperature sensors 11 and the pressure sensors 12 are connected to an input end of the CPU processor in a one-to-one correspondence manner. The input of the preset value signal to the CPU processor is prior art, and no further description is given herein in this embodiment of the present application. The camera device 3 can be a monitoring camera, and the position of the monitoring camera can be arranged at the joint of the warm-living system pipeline, so that the monitoring camera can acquire images at the joint of the warm-living system pipeline; however, in the embodiment of the present application, the setting position of the camera apparatus 3 is not limited, as long as the image acquired by the camera apparatus 3 can facilitate a maintenance worker to determine the position of the fault point. The power supply end of the monitoring camera is connected with the output end of the CPU processor.
Referring to fig. 1, specifically, the alarm module 6 includes an acoustic alarm 61 and a short message alarm 62, power supply sections of the acoustic alarm 61 and the short message alarm 62 are both connected to an output end of the CPU processor, and when the acoustic alarm 61 is powered on, sound can be emitted to warn maintenance personnel; when the short message alarm 62 is powered on, a short message can be sent to the corresponding equipment to warn maintenance personnel.
Referring to fig. 1, the communication module 4 may be a 4G communication chip and a 5G communication chip, a communication input terminal of the communication module 4 is connected to a communication output terminal of the CPU processor, and a signal output terminal of the monitoring camera is connected to a signal input terminal of the communication module 4.
When the CPU processor outputs an alarm signal, the monitoring camera, the sound alarm 61 and the short message alarm 62 are all powered on, the monitoring camera collects images of preset positions at the moment, and the sound alarm 61 and the short message alarm 62 can warn maintenance workers so that the workers can find faults in time. The picture information that the surveillance camera machine gathered can be transmitted through communication module 4, and the maintenance workman can receive image information through the electronic equipment who links to each other with communication module 4 and look over, and the maintenance workman of being convenient for confirms the position of fault point.
Referring to fig. 1, further, the multi-dimensional control system further includes a plurality of positioning modules 7, the monitoring cameras are provided, the positioning modules 7 are also provided, and the positioning modules 7 are connected in parallel with the monitoring cameras in a one-to-one correspondence manner. The positioning module 7 is a Beidou positioning chip or a GPS positioning chip, when the monitoring camera collects images, the positioning module 7 can transmit corresponding position signals to be received by corresponding electronic equipment, and after a worker collects a rough fault area through the monitoring camera, the accurate geographical position of a fault point can be determined through the position signals transmitted by the positioning module 7 connected with the corresponding cameras in parallel.
Referring to fig. 1, further, the multidimensional control system further includes a reset module 5, where the reset module 5 may be a pulse switch, and may also be another type of switch capable of outputting an electrical signal, which is not limited in this embodiment of the present invention. The output of the reset module 5 is connected to the input of the CPU processor, after the maintenance is completed, the maintenance worker triggers the reset module 5, the reset module 5 outputs a reset signal to the CPU processor, the CPU processor controls the alarm module 6 and the camera device 3 to be powered off, and the multidimensional control system restores the original state.
Referring to fig. 1, further, the multidimensional control system further includes a watchdog module 8, an output end of the watchdog module 8 is connected to an input end of the CPU, and an output end of the CPU is connected to an input end of the watchdog module 8. The watchdog module 8 can detect the state of the CPU at regular time, and can restart the CPU when the CPU fails, thereby improving the stability of the control system.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. A multi-dimensional control system, characterized by: the system comprises a detection module (1) for detecting pressure and temperature information of a warm living system pipeline and outputting a pressure signal and a temperature signal; further comprising:
a control module (2); the temperature sensor is connected to the detection module (1) and outputs an alarm signal when the pressure signal and the temperature signal are detected to be different from the corresponding preset value signals;
the camera equipment (3) is connected to the control module (2), responds to the alarm signal, collects images of the preset position area and outputs image signals;
and the communication module is connected with the control module (2) and the camera equipment (3) and can communicate with external equipment.
2. A multidimensional control system according to claim 1, wherein: the camera shooting device is characterized by further comprising a reset module (5) which is connected to the control module (2) and responds to an external trigger to output a reset signal, and the camera shooting device (3) responds to the reset signal to stop image acquisition.
3. A multidimensional control system according to claim 1, wherein: the alarm device also comprises an alarm module (6) which is connected with the control module (2) and responds to the alarm signal to warn.
4. A multidimensional control system according to claim 1, wherein: the positioning device further comprises a positioning module (7), wherein the positioning module (7) is connected with the camera equipment (3) in parallel and can output a position signal.
5. A multidimensional control system according to claim 1, wherein: the intelligent monitoring system is characterized by further comprising a watchdog module (8), wherein the output end of the watchdog module (8) is connected to the output end of the control module (2), and the output end of the control module (2) is connected to the input end of the watchdog module (8).
6. A multidimensional control system according to claim 1, wherein: the communication module (4) can be a 4G communication chip or a 5G communication chip.
7. A multidimensional control system according to claim 1, wherein: the control module (2) is a CPU processor.
8. A multidimensional control system according to claim 4, wherein: the positioning module (7) is a Beidou positioning chip or a GPS positioning chip.
CN202121266607.6U 2021-06-07 2021-06-07 Multi-dimensional control system Active CN215490007U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121266607.6U CN215490007U (en) 2021-06-07 2021-06-07 Multi-dimensional control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121266607.6U CN215490007U (en) 2021-06-07 2021-06-07 Multi-dimensional control system

Publications (1)

Publication Number Publication Date
CN215490007U true CN215490007U (en) 2022-01-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121266607.6U Active CN215490007U (en) 2021-06-07 2021-06-07 Multi-dimensional control system

Country Status (1)

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CN (1) CN215490007U (en)

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