Transmission Line Alarm Data Management System

Through the deep neural network model combined with remote sensing data processing, accurate detection and intelligent alarm of transmission lines ice covering are realized, solving the problem of insufficient ice covering detection accuracy in the existing technology, and ensuring the safe operation of transmission lines.

CN119727109BActive Publication Date: 2025-08-29WUXI MUTUAL ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202411735791.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2023-12-17
Filing Date
2024-11-29
Publication Date
2025-08-29
Estimated Expiration
2044-11-29

AI Technical Summary

Technical Problem

In the prior art, the accuracy and intelligence level of ice-covered detection of transmission lines are insufficient, resulting in false alarms or failure to alarm in time, affecting the safe operation of transmission lines.

Method used

The deep neural network model is used to combine remote sensing data processing, and through overvoltage judgment, layer-by-layer mapping and frequency-division transmission, the covered ice layer is intelligently identified and the relevant data is wirelessly sent to the remote alarm management server.

Benefits of technology

It improves the accuracy and intelligence level of ice-covered detection, ensures timely alarms, reduces false alarms, and improves the safe operation reliability of transmission lines.

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Abstract

The present invention relates to a power transmission line alarm data management system, comprising an overvoltage determination device, an adaptive download device, a layer-by-layer mapping device, a front-end processing device, a mid-end processing device, a terminal processing device, and a frequency division transmission device. The present invention can ensure the safe operation of power transmission lines.
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Description

Technical Field

[0001] The present invention relates to the field of electric power, and in particular to a transmission line alarm data management system. Background Art

[0002] Transmission lines are circuits for transmitting electricity, and various faults are inevitable during operation. Currently, transmission lines already have measures to alarm when faults occur, but the management of such alarm information needs to be continuously strengthened.

[0003] CN102509417A discloses a power transmission line alarm method and system. The method comprises: a line information unit sends first preset information to an alarm device, wherein the alarm device is carried by an operator and the line information unit is placed on a tower of the power transmission line, and the first preset information is identification information of the power transmission line; the alarm device determines whether the power transmission line is a live line based on the first preset information; and the alarm device issues a first alarm signal when the power transmission line is a live line.

[0004] CN117972582A discloses an artificial intelligence-based transmission line fault detection method and system, both of which can: collect real-time operating condition data of the transmission line, and input the collected operating condition data into a pre-established digital twin model of the transmission line for calculation, and output prediction data; input the prediction data into a pre-trained machine learning model for calculation, and output the predicted operating status of the corresponding transmission line and the probability of occurrence of the predicted operating status; the pre-trained machine learning model can predict the operating status of the transmission line and the probability of occurrence of the operating status. Summary of the Invention

[0005] In order to solve the technical problems in related fields, the present invention provides a transmission line alarm data management system, which uses a deep neural network model to intelligently identify whether there is an ice layer in the image area where each target is located based on multiple geometric features of the image area where each target is located in the on-site acquisition picture of the transmission line and multiple visual data of the picture. When the presence of an ice layer is intelligently identified, the transmission voltage of the current transmission line, the positioning data of the current transmission line and the ice layer alarm information are wirelessly sent as line alarm data to a remote alarm management server through a frequency division duplex communication link, thereby providing key information for the alarm management server to locate and respond to the ice layer.

[0006] According to the present invention, a transmission line alarm data management system includes:

[0007] an overvoltage judgment device connected to the current transmission line, configured to issue an overvoltage judgment signal when the measured transmission voltage of the current transmission line is greater than or equal to a set voltage limit, and to issue a voltage reliability signal when the measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a transmission line of a set length currently being monitored;

[0008] an adaptive downloading device connected to the overvoltage judgment device, and configured to download a remote sensing image matching the current power transmission line from a remote sensing satellite when the overvoltage judgment signal is received, and output the image as a target remote sensing image;

[0009] a layer-by-layer mapping device connected to the adaptive downloading device and comprising a point image restoration device, a real-time enhancement device, and a dynamic filtering device; the point image restoration device is further connected to the adaptive downloading device and is configured to perform point image restoration processing on the received target remote sensing image to obtain and output a corresponding signal restoration image; the real-time enhancement device is configured to perform image frequency domain enhancement processing on the received signal restoration image to obtain and output a corresponding real-time enhanced image; and the dynamic filtering device is configured to perform median filtering processing on the received real-time enhanced image using a dynamic filtering window based on noise amplitude to obtain and output a corresponding dynamic filtered image, wherein a larger noise amplitude of the real-time enhancement is selected, a larger dynamic filtering window is selected;

[0010] a front-end processing device connected to the layer-by-layer mapping device and configured to detect a plurality of geometric features of an image region where each target in the dynamic filtered image is located, the plurality of geometric features comprising the number of pixels in the length direction and the width direction of the corresponding image region, and the maximum and minimum curvatures of a region edge curve;

[0011] a mid-end processing device, connected to the front-end processing device, configured to input a plurality of geometric features of the image region where each target is located, the signal-to-noise ratio of the dynamic filtered image, and the area ratio occupied by the background region of the dynamic filtered image into a deep neural network model and run the deep neural network model to determine whether the image region where each target is located is covered with ice;

[0012] a terminal processing device connected to the mid-end processing device, configured to send a first detection signal when no ice layer covers each image region where each target in the dynamic filtered image is located, and otherwise send a second detection signal;

[0013] a frequency division transmission device connected to the terminal processing device, and configured to, upon receiving the second detection signal, wirelessly transmit the transmission voltage of the current transmission line, the positioning data of the current transmission line, and ice cover alarm information as line alarm data to a remote alarm management server via a frequency division duplex communication link;

[0014] The deep neural network model includes a single input layer, a single output layer and multiple hidden layers, wherein the multiple hidden layers are located between the single input layer and the single output layer, and the number of hidden layers is positively correlated with the contrast of the dynamic filtered image. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 FIG. 4 is a structural block diagram of a power transmission line alarm data management system according to a first embodiment of the present invention.

[0016] Figure 2 FIG. 4 is a structural block diagram of a power transmission line alarm data management system according to a second embodiment of the present invention.

[0017] Figure 3 FIG. 4 is a structural block diagram of a power transmission line alarm data management system according to a third embodiment of the present invention. DETAILED DESCRIPTION

[0018] Icing can damage power transmission lines in three ways. The first is small amounts of ice. This circular ice on the conductors doesn't spread evenly, but may form an elliptical or other shape, creating a windward surface in the atmosphere. When the wind angle and the windward surface of the ice are right, the conductors will vibrate. The second is flashover. While the structure isn't damaged, the insulation is lost, and a flashover prevents power transmission. The third and most common type is excessive vertical load, which can cause the entire structure to collapse.

[0019] In cold and humid regions, ice coating on conductors severely impacts the safe operation of transmission lines. This icing poses a threat to production safety, increases maintenance workload, and increases costs. Therefore, effectively preventing and controlling the damage caused by ice disasters to transmission lines is a crucial challenge for power and cable companies. Only by implementing multiple measures can we proactively prevent and control ice damage in power grids.

[0020] However, the accuracy and intelligence level of ice detection for transmission lines in existing technologies cannot meet current needs, resulting in false alarms or untimely alarms, posing a hidden danger to the safe operation of transmission lines.

[0021] The following is a detailed description of an embodiment of the power transmission line alarm data management system of the present invention.

[0022] First embodiment

[0023] The internal structure of the power transmission line alarm data management system according to the first embodiment of the present invention includes:

[0024] an overvoltage judgment device connected to the current transmission line, configured to issue an overvoltage judgment signal when the measured transmission voltage of the current transmission line is greater than or equal to a set voltage limit, and to issue a voltage reliability signal when the measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a transmission line of a set length currently being monitored;

[0025] For example, an overvoltage judgment device is connected to a current transmission line and is configured to issue an overvoltage judgment signal when a measured transmission voltage of the current transmission line is greater than or equal to a set voltage limit, and to issue a voltage reliability signal when a measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a currently monitored section of a set length of the transmission line. The method includes: using an ASIC chip to implement the overvoltage judgment device, and being configured to issue an overvoltage judgment signal when a measured transmission voltage of the current transmission line is greater than or equal to the set voltage limit, and to issue a voltage reliability signal when a measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a currently monitored section of a set length of the transmission line;

[0026] an adaptive downloading device connected to the overvoltage judgment device, and configured to download a remote sensing image matching the current power transmission line from a remote sensing satellite when the overvoltage judgment signal is received, and output the image as a target remote sensing image;

[0027] a layer-by-layer mapping device connected to the adaptive downloading device and comprising a point image restoration device, a real-time enhancement device, and a dynamic filtering device; the point image restoration device is further connected to the adaptive downloading device and is configured to perform point image restoration processing on the received target remote sensing image to obtain and output a corresponding signal restoration image; the real-time enhancement device is configured to perform image frequency domain enhancement processing on the received signal restoration image to obtain and output a corresponding real-time enhanced image; and the dynamic filtering device is configured to perform median filtering processing on the received real-time enhanced image using a dynamic filtering window based on noise amplitude to obtain and output a corresponding dynamic filtered image, wherein a larger noise amplitude of the real-time enhancement is selected, a larger dynamic filtering window is selected;

[0028] a front-end processing device connected to the layer-by-layer mapping device and configured to detect a plurality of geometric features of an image region where each target in the dynamic filtered image is located, the plurality of geometric features comprising the number of pixels in the length direction and the width direction of the corresponding image region, and the maximum and minimum curvatures of a region edge curve;

[0029] a mid-end processing device, connected to the front-end processing device, configured to input a plurality of geometric features of the image region where each target is located, the signal-to-noise ratio of the dynamic filtered image, and the area ratio occupied by the background region of the dynamic filtered image into a deep neural network model and run the deep neural network model to determine whether the image region where each target is located is covered with ice;

[0030] a terminal processing device connected to the mid-end processing device, configured to send a first detection signal when no ice layer covers each image region where each target in the dynamic filtered image is located, and otherwise send a second detection signal;

[0031] a frequency division transmission device connected to the terminal processing device, and configured to, upon receiving the second detection signal, wirelessly transmit the transmission voltage of the current transmission line, the positioning data of the current transmission line, and ice cover alarm information as line alarm data to a remote alarm management server via a frequency division duplex communication link;

[0032] The deep neural network model includes a single input layer, a single output layer, and multiple hidden layers, wherein the multiple hidden layers are located between the single input layer and the single output layer, and the number of hidden layers is positively correlated with the contrast of the dynamic filtered image;

[0033] Wherein, upon receiving the overvoltage judgment signal, downloading a remote sensing image matching the current power transmission line from a remote sensing satellite to output as a target remote sensing image includes: downloading a remote sensing image matching the current power transmission line from a remote sensing satellite based on respective pieces of positioning information corresponding to respective positions traversed by the current power transmission line to output as a target remote sensing image;

[0034] Among them, based on the respective pieces of positioning information corresponding to the respective positions traversed by the current transmission line, a remote sensing image matching the current transmission line is downloaded from a remote sensing satellite as a target remote sensing image output, including: the respective pieces of positioning information corresponding to the respective positions traversed by the current transmission line are all Galileo positioning data.

[0035] Second embodiment

[0036] The internal structure of the power transmission line alarm data management system according to the second embodiment of the present invention includes the following components:

[0037] an overvoltage judgment device connected to the current transmission line, configured to issue an overvoltage judgment signal when the measured transmission voltage of the current transmission line is greater than or equal to a set voltage limit, and to issue a voltage reliability signal when the measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a transmission line of a set length currently being monitored;

[0038] an adaptive downloading device connected to the overvoltage judgment device, and configured to download a remote sensing image matching the current power transmission line from a remote sensing satellite when the overvoltage judgment signal is received, and output the image as a target remote sensing image;

[0039] a layer-by-layer mapping device connected to the adaptive downloading device and comprising a point image restoration device, a real-time enhancement device, and a dynamic filtering device; the point image restoration device is further connected to the adaptive downloading device and is configured to perform point image restoration processing on the received target remote sensing image to obtain and output a corresponding signal restoration image; the real-time enhancement device is configured to perform image frequency domain enhancement processing on the received signal restoration image to obtain and output a corresponding real-time enhanced image; and the dynamic filtering device is configured to perform median filtering processing on the received real-time enhanced image using a dynamic filtering window based on noise amplitude to obtain and output a corresponding dynamic filtered image, wherein a larger noise amplitude of the real-time enhancement is selected, a larger dynamic filtering window is selected;

[0040] a front-end processing device connected to the layer-by-layer mapping device and configured to detect a plurality of geometric features of an image region where each target in the dynamic filtered image is located, the plurality of geometric features comprising the number of pixels in the length direction and the width direction of the corresponding image region, and the maximum and minimum curvatures of a region edge curve;

[0041] a mid-end processing device, connected to the front-end processing device, configured to input a plurality of geometric features of the image region where each target is located, the signal-to-noise ratio of the dynamic filtered image, and the area ratio occupied by the background region of the dynamic filtered image into a deep neural network model and run the deep neural network model to determine whether the image region where each target is located is covered with ice;

[0042] a terminal processing device connected to the mid-end processing device, configured to send a first detection signal when no ice layer covers each image region where each target in the dynamic filtered image is located, and otherwise send a second detection signal;

[0043] a frequency division transmission device connected to the terminal processing device, and configured to, upon receiving the second detection signal, wirelessly transmit the transmission voltage of the current transmission line, the positioning data of the current transmission line, and ice cover alarm information as line alarm data to a remote alarm management server via a frequency division duplex communication link;

[0044] an on-site storage device, connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, for providing data temporary storage services for the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device in a time-sharing manner;

[0045] The on-site storage device is connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, and is used to provide data temporary storage services for the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device in a time-sharing manner, including: the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device are respectively connected to the on-site storage device using different data channels;

[0046] Among them, the on-site storage device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to provide data temporary storage services for the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device in a time-sharing manner, including: the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device use the same reference clock signal.

[0047] Third embodiment

[0048] The internal structure of the power transmission line alarm data management system according to the third embodiment of the present invention includes the following components:

[0049] an overvoltage judgment device connected to the current transmission line, configured to issue an overvoltage judgment signal when the measured transmission voltage of the current transmission line is greater than or equal to a set voltage limit, and to issue a voltage reliability signal when the measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a transmission line of a set length currently being monitored;

[0050] an adaptive downloading device connected to the overvoltage judgment device, and configured to download a remote sensing image matching the current power transmission line from a remote sensing satellite when the overvoltage judgment signal is received, and output the image as a target remote sensing image;

[0051] a layer-by-layer mapping device connected to the adaptive downloading device and comprising a point image restoration device, a real-time enhancement device, and a dynamic filtering device; the point image restoration device is further connected to the adaptive downloading device and is configured to perform point image restoration processing on the received target remote sensing image to obtain and output a corresponding signal restoration image; the real-time enhancement device is configured to perform image frequency domain enhancement processing on the received signal restoration image to obtain and output a corresponding real-time enhanced image; and the dynamic filtering device is configured to perform median filtering processing on the received real-time enhanced image using a dynamic filtering window based on noise amplitude to obtain and output a corresponding dynamic filtered image, wherein a larger noise amplitude of the real-time enhancement is selected, a larger dynamic filtering window is selected;

[0052] a front-end processing device connected to the layer-by-layer mapping device and configured to detect a plurality of geometric features of an image region where each target in the dynamic filtered image is located, the plurality of geometric features comprising the number of pixels in the length direction and the width direction of the corresponding image region, and the maximum and minimum curvatures of a region edge curve;

[0053] a mid-end processing device, connected to the front-end processing device, configured to input a plurality of geometric features of the image region where each target is located, the signal-to-noise ratio of the dynamic filtered image, and the area ratio occupied by the background region of the dynamic filtered image into a deep neural network model and run the deep neural network model to determine whether the image region where each target is located is covered with ice;

[0054] a terminal processing device connected to the mid-end processing device, configured to send a first detection signal when no ice layer covers each image region where each target in the dynamic filtered image is located, and otherwise send a second detection signal;

[0055] a frequency division transmission device connected to the terminal processing device, and configured to, upon receiving the second detection signal, wirelessly transmit the transmission voltage of the current transmission line, the positioning data of the current transmission line, and ice cover alarm information as line alarm data to a remote alarm management server via a frequency division duplex communication link;

[0056] a content display device, connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, for simultaneously displaying various status information of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device;

[0057] The content display device is connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, including: the simultaneously displayed various status information of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device includes the sleep state or working state of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device;

[0058] The content display device is connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device. The content display device also includes: a liquid crystal display screen or an LED display array;

[0059] The content display device is connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device. The content display device also includes: the LED display array is composed of a plurality of LED display units arranged in a rectangular matrix pattern;

[0060] And wherein, the content display device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and also includes: the structure of the multiple LED display units arranged in a rectangular matrix pattern is the same.

[0061] In addition, in the power transmission line alarm data management system, a median filtering process of a dynamic filtering window based on the noise amplitude is performed on the received real-time enhanced image to obtain and output a corresponding dynamic filtered image. The larger the real-time enhanced noise amplitude, the larger the selected dynamic filtering window, including: the selected dynamic filtering window is a square pixel window.

[0062] According to the above embodiments, the salient essential features of the present invention are as follows:

[0063] (1) Introducing a deep neural network model comprising a single input layer, a single output layer, and a plurality of hidden layers for performing ice layer identification, wherein the plurality of hidden layers are located between the single input layer and the single output layer and the number of hidden layers is positively correlated with the contrast of the dynamic filtering image;

[0064] (2) Based on multiple geometric features of the image area where each target is located and multiple visual data of the image, a deep neural network model is used to intelligently identify whether there is ice covering the image area where each target is located;

[0065] (3) When receiving the second detection signal, the transmission voltage of the current transmission line, the positioning data of the current transmission line, and the ice cover alarm information are wirelessly sent to the remote alarm management server through the frequency division duplex communication link as line alarm data, thereby providing key information for the alarm management server to locate and respond to the ice cover.

[0066] The power transmission line alarm data management system of the present invention addresses the technical problem that the accuracy and intelligence level of ice coverage detection on power transmission lines in the prior art cannot meet existing needs. It can intelligently identify whether there is ice coverage in the image area where each target is located in the on-site collection image of the transmission line based on multiple geometric features of the image area where each target is located and multiple visual data of the image. When the presence of ice coverage is intelligently identified, a wireless alarm of multiple on-site information is issued.

[0067] Many details of the present invention may be changed without departing from its spirit and scope. In addition, the description of the preferred embodiments of the present invention is provided for illustrative purposes only and is not intended to limit the present invention, which scope is defined by the appended claims and their equivalents.

Claims

1. A transmission line alarm data management system, characterized in that: The system comprises: an overvoltage judgment device connected to the current transmission line, configured to issue an overvoltage judgment signal when the measured transmission voltage of the current transmission line is greater than or equal to a set voltage limit, and to issue a voltage reliability signal when the measured transmission voltage of the current transmission line is less than the set voltage limit, wherein the current transmission line is a transmission line of a set length currently being monitored; an adaptive downloading device connected to the overvoltage judgment device, and configured to download a remote sensing image matching the current power transmission line from a remote sensing satellite when the overvoltage judgment signal is received, and output the image as a target remote sensing image; a layer-by-layer mapping device connected to the adaptive downloading device and comprising a point image restoration device, a real-time enhancement device, and a dynamic filtering device; the point image restoration device is further connected to the adaptive downloading device and is configured to perform point image restoration processing on the received target remote sensing image to obtain and output a corresponding signal restoration image; the real-time enhancement device is configured to perform image frequency domain enhancement processing on the received signal restoration image to obtain and output a corresponding real-time enhanced image; and the dynamic filtering device is configured to perform median filtering processing on the received real-time enhanced image using a dynamic filtering window based on noise amplitude to obtain and output a corresponding dynamic filtered image, wherein a larger noise amplitude of the real-time enhancement is selected, a larger dynamic filtering window is selected; a front-end processing device connected to the layer-by-layer mapping device and configured to detect a plurality of geometric features of an image region where each target in the dynamic filtered image is located, the plurality of geometric features comprising the number of pixels in the length direction and the width direction of the corresponding image region, and the maximum and minimum curvatures of a region edge curve; a mid-end processing device, connected to the front-end processing device, configured to input a plurality of geometric features of the image region where each target is located, the signal-to-noise ratio of the dynamic filtered image, and the area ratio occupied by the background region of the dynamic filtered image into a deep neural network model and run the deep neural network model to determine whether the image region where each target is located is covered with ice; a terminal processing device connected to the mid-end processing device, configured to send a first detection signal when no ice layer covers each image region where each target in the dynamic filtered image is located, and otherwise send a second detection signal; a frequency division transmission device connected to the terminal processing device, and configured to, upon receiving the second detection signal, wirelessly transmit the transmission voltage of the current transmission line, the positioning data of the current transmission line, and ice cover alarm information as line alarm data to a remote alarm management server via a frequency division duplex communication link; The deep neural network model includes a single input layer, a single output layer and multiple hidden layers, wherein the multiple hidden layers are located between the single input layer and the single output layer, and the number of hidden layers is positively correlated with the contrast of the dynamic filtered image.

2. The power transmission line alarm data management system according to claim 1, characterized in that: Upon receiving the overvoltage judgment signal, downloading a remote sensing image matching the current power transmission line from a remote sensing satellite to output as a target remote sensing image includes: downloading a remote sensing image matching the current power transmission line from a remote sensing satellite based on respective pieces of positioning information corresponding to respective positions traversed by the current power transmission line to output as a target remote sensing image; Among them, based on the respective pieces of positioning information corresponding to the respective positions traversed by the current transmission line, a remote sensing image matching the current transmission line is downloaded from a remote sensing satellite as a target remote sensing image output, including: the respective pieces of positioning information corresponding to the respective positions traversed by the current transmission line are all Galileo positioning data.

3. The power transmission line alarm data management system according to claim 2, characterized in that: The system further comprises: an on-site storage device, connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, for providing data temporary storage services for the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device in a time-sharing manner; Among them, the on-site storage device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to provide data temporary storage services for the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device in a time-sharing manner, including: the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device are respectively connected to the on-site storage device using different data channels.

4. The power transmission line alarm data management system according to claim 3, characterized in that: An on-site storage device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to provide data temporary storage services for the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device in a time-sharing manner, including: the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device share a same reference clock signal.

5. The power transmission line alarm data management system according to claim 2, characterized in that: The system further comprises: The content display device is connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device respectively, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device.

6. The power transmission line alarm data management system according to claim 5, characterized in that: The content display device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, including: the various status information of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device displayed simultaneously includes the sleep state or working state of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device.

7. The power transmission line alarm data management system according to claim 6, characterized in that: A content display device is connected to the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device, respectively, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device, and the dynamic filtering device. The content display device also includes: a liquid crystal display screen or an LED display array.

8. The power transmission line alarm data management system according to claim 7, characterized in that: The content display device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device. It also includes: the LED display array is composed of a plurality of LED display units arranged in a rectangular matrix pattern.

9. The power transmission line alarm data management system according to claim 8, characterized in that: The content display device is respectively connected to the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device, and is used to simultaneously display various status information of the front-end processing device, the point image restoration device, the real-time enhancement device and the dynamic filtering device. It also includes: the multiple LED display units arranged in a rectangular matrix pattern have the same structure.

Citation Information

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