A power transmission communication data processing system based on big data
The power transmission communication data processing system with multi-dimensional monitoring and integrated calculation solves the local and overall optimization problems of power transmission target communication data processing, and achieves more efficient resource allocation and data management.
Patent Information
- Application Number
- CN202411957821.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2024-09-30
- Filing Date
- 2024-12-27
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2044-12-27
AI Technical Summary
Existing power transmission communication data processing solutions are unable to conduct multi-dimensional monitoring, evaluation, and integrated analysis of communication data of different power transmission targets, resulting in poor local processing effects and poor overall expansion and optimization effects.
The multi-dimensional communication data processing monitoring statistics evaluation module and the transmission target communication data processing evaluation module are used to generate monitoring processing sequences through monitoring statistics and digital processing of different dimensions, and perform integrated calculations to evaluate the overall validity and adaptively optimize resource allocation management.
It realizes multi-dimensional processing and multi-level expansion utilization of transmission target communication data, improving local processing effects and overall optimization effects.
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Figure CN119854371B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of communication data processing, and in particular to a power transmission communication data processing system based on big data. Background Art
[0002] Transmission communication data refers to various data generated during the power transmission process, including but not limited to power system status information, fault information, control commands and other related data; this data is transmitted from one location to another through a communication network, such as from a substation to a dispatching center.
[0003] When implementing the existing transmission communication data processing scheme, it is impossible to conduct local monitoring and evaluation of the communication data processing of different transmission targets in different dimensions, and to integrate and analyze the local monitoring and evaluation results of different dimensions to determine the overall status of the communication data processing of different transmission targets and adaptively perform dynamic optimization management, resulting in poor local processing effects of the communication data processing of different transmission targets and poor overall expansion optimization effects. Summary of the Invention
[0004] The purpose of the present invention is to provide a big data-based power transmission communication data processing system to solve the technical problems of poor local processing effect and poor overall expansion and optimization effect of communication data processing for different power transmission targets in existing solutions.
[0005] The purpose of the present invention is achieved through the following technical solutions:
[0006] A power transmission communication data processing system based on big data, comprising:
[0007] The multi-dimensional communication data processing monitoring and statistical evaluation module is used to implement targeted monitoring and statistics on the communication data processing of different transmission targets from different dimensions, and digitally process the monitoring and statistical data of different dimensions of different transmission targets to obtain monitoring and processing sequences of different dimensions;
[0008] The transmission target communication data processing and evaluation module is used to integrate and calculate the monitoring and processing sequences of different dimensions of different selected transmission targets to determine the corresponding overall validity and the corresponding single overall processing status, and implement overall processing status evaluation of the overall dimensions for different selected transmission targets. According to the overall processing status evaluation results, targeted resource allocation optimization management is adaptively implemented for the transmission communication data processing of different selected transmission targets.
[0009] Preferably, when monitoring and statistics of communication data processing dimensions are performed on different power transmission targets, the power transmission target that starts communication data processing is marked as a selected power transmission target, and the start processing timestamp and end processing timestamp of the communication data processing of the selected power transmission target are obtained, and the processing time difference between the end processing timestamp and the start processing timestamp is calculated;
[0010] and, obtaining the total amount of resource processing consumption of the selected power transmission target for communication data processing between a start processing timestamp and an end processing timestamp;
[0011] When digitally processing the various data monitored and counted in the communication data processing dimension, the processing time difference and the total resource processing consumption corresponding to the selected transmission target will be analyzed through the data processing identification piecewise function and the processing validity CX will be output.
[0012] Preferably, the expression of the data processing identification piecewise function is : Where ZC is the total resource processing consumption corresponding to the selected transmission target; Tc is the processing time difference corresponding to the selected transmission target; A is the standard resource processing consumption;
[0013] The processing validity, device number, start processing timestamp, end processing timestamp, processing time difference, and total resource processing consumption corresponding to the selected power transmission target are sorted and combined to obtain a first monitoring processing sequence for communication data processing corresponding to the selected power transmission target.
[0014] Preferably, when monitoring and counting the communication data transmission dimensions for different power transmission targets, the start transmission timestamp and the end transmission timestamp of the data transmission of the processing result after the selected power transmission target completes the communication data processing are monitored and counted, and the transmission time difference between the end transmission timestamp and the start transmission timestamp is calculated;
[0015] and obtaining the total amount of resource transmission consumption for communication data transmission between the start transmission timestamp and the end transmission timestamp of the selected power transmission target;
[0016] When digitally processing the various data monitored and counted in the communication data transmission dimension, the transmission time difference and the total resource transmission consumption corresponding to the selected transmission target will be analyzed through the data transmission identification piecewise function and the transmission validity SX will be output.
[0017] Preferably, the expression of the data transmission identification piecewise function is: : Where XX is the total resource transmission consumption corresponding to the selected transmission target; Ts is the transmission time difference corresponding to the selected transmission target; B is the standard resource transmission consumption; Ts′ is the standard transmission time difference corresponding to the selected transmission target; α and β are different weight coefficients and are both greater than 0;
[0018] The transmission validity, device number, start transmission timestamp, end transmission timestamp, transmission time difference, and total resource transmission consumption corresponding to the selected power transmission target are sorted and combined to obtain a second monitoring processing sequence for communication data transmission corresponding to the selected power transmission target.
[0019] Preferably, a first monitoring process sequence and a second monitoring process sequence corresponding to the selected power transmission target are obtained, and the head elements in the first monitoring process sequence and the second monitoring process sequence are traversed and analyzed respectively;
[0020] If the header elements in the first monitoring processing sequence and the second monitoring processing sequence are not 0, a local exception instruction is generated and the value corresponding to the header element that is not 0 is marked as the overall validity;
[0021] If the head elements in both the first monitoring and processing sequence and the second monitoring and processing sequence are not 0, an overall abnormal instruction is generated and the overall validity ZX of the selected power transmission target is calculated using the formula ZX=a×CX+b×SX; where a and b are different weight coefficients and are both greater than 0; and a+b=1.
[0022] Preferably, when determining the single overall processing state corresponding to the selected power transmission target based on the obtained overall validity, the overall validity is input into the single overall processing identification piecewise function for data analysis to obtain the corresponding state identifier ZB; the expression of the single overall processing identification piecewise function is: Where, C is the standard value of single overall treatment;
[0023] A single overall processing state of slight abnormality or severe abnormality corresponding to the selected power transmission target is generated according to the state identifier with a value of 0 or 1.
[0024] Preferably, when evaluating the overall processing status of the selected transmission target in the overall dimension, the total number of historical single overall processing status analysis of the selected transmission target and the analysis results corresponding to each historical single overall processing status are counted, and the formula is used to calculate the total number of historical single overall processing status analysis of the selected transmission target. Calculate and obtain the integrated validity ZQ corresponding to the selected transmission target; where N1 and N2 are the total number of times a single mild anomaly in the overall processing status and a single severe anomaly in the overall processing status corresponding to the selected transmission target occur, respectively; N is the total number of times communication data processing is implemented corresponding to the selected transmission target; N1+N2≤N.
[0025] Preferably, when implementing targeted resource allocation optimization management for subsequent power transmission communication data processing of the selected power transmission target according to the integration validity, data analysis of the integration validity is performed;
[0026] If the integration validity is 0, the existing resource allocation scheme is maintained for the subsequent power transmission communication data processing of the selected power transmission target;
[0027] If the integration validity is 1, a targeted resource allocation supplementary plan is implemented for the subsequent power transmission communication data processing of the selected power transmission target.
[0028] Compared with the prior art, the present invention achieves the following beneficial effects:
[0029] The present invention obtains the corresponding first monitoring and processing sequence and second monitoring and processing sequence by monitoring, counting and digitally processing the communication data processing dimension and the communication data transmission dimension of different transmission targets. It can not only realize the digital representation of the communication data processing status and the communication data transmission status corresponding to the communication data processing dimension and the communication data transmission dimension of different transmission targets, but also provide reliable multi-dimensional data support for the processing calculation of the single overall processing status corresponding to the subsequent transmission target; it improves the diversity of communication data processing supervision for different transmission targets and the extensibility of subsequent expansion and utilization.
[0030] The present invention integrates and calculates the processing data of different dimensions in the early stage to obtain the overall validity and the corresponding single overall processing status corresponding to different selected power transmission targets, and implements the overall processing status evaluation of the overall dimension for the different selected power transmission targets. According to the overall processing status evaluation results, the present invention adaptively implements targeted resource allocation optimization management for the power transmission communication data processing of the different selected power transmission targets, realizes multi-dimensional processing and multi-level expansion utilization of the power transmission communication data, and improves the local processing effect and overall expansion optimization effect of the power transmission target communication data processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The present invention will be further described below with reference to the accompanying drawings.
[0032] Figure 1 This is a flowchart of the operation of the power transmission and communication data processing system based on big data of the present invention.
[0033] Figure 2 This is a flowchart of a single overall processing state analysis corresponding to the selected power transmission target in the present invention. DETAILED DESCRIPTION
[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0035] like Figure 1As shown, the present invention is a power transmission communication data processing system based on big data, including a multi-dimensional communication data processing monitoring statistics evaluation module and a power transmission target communication data processing evaluation module;
[0036] The multi-dimensional communication data processing monitoring and statistical evaluation module is used to implement targeted monitoring and statistics on the communication data processing of different power transmission targets from different dimensions, and digitally process the monitoring and statistical data of different dimensions of different power transmission targets to obtain monitoring and processing sequences of different dimensions; the different dimensions include: the communication data processing dimension and the communication data transmission dimension;
[0037] Specifically, when monitoring and statistics are performed on the communication data processing dimension of different transmission targets, the transmission targets include but are not limited to transformers, switchgear, substations, and switch cabinets. The transmission target for which communication data processing is to be started is marked as a selected transmission target. The judgment standard for starting to monitor communication data processing can be determined based on the data flow change of the corresponding transmission target. The start processing timestamp and end processing timestamp of the communication data processing of the selected transmission target are obtained, and the processing time difference between the end processing timestamp and the start processing timestamp is calculated. The units of different timestamps and processing time differences are all accurate to seconds.
[0038] and obtaining the total amount of resource processing consumption of the selected power transmission target for communication data processing between the start processing timestamp and the end processing timestamp; the total amount of resource processing consumption is specifically the total flow consumed during the entire data processing process;
[0039] When digitally processing the various data monitored and counted in the communication data processing dimension, the processing time difference and total resource processing consumption corresponding to the selected transmission target are analyzed through the data processing identification piecewise function and the processing validity CX is output;
[0040] Among them, the expression of data processing identification piecewise function is
[0041]
[0042] Where ZC is the total resource processing consumption corresponding to the selected transmission target; Tc is the processing time difference corresponding to the selected transmission target; A is the standard resource processing consumption, which is determined based on the resource processing design requirement data corresponding to the selected transmission target, or can be determined based on the median of all historical resource processing consumptions.
[0043] It should be noted that the processing validity is used to integrate and calculate various data when the selected transmission target is processing communication data to digitally represent its communication data processing status;
[0044] Sort and combine the processing validity, device number, start processing timestamp, end processing timestamp, processing time difference, and total resource processing consumption corresponding to the selected power transmission target to obtain a first monitoring processing sequence for communication data processing corresponding to the selected power transmission target;
[0045] In the embodiment of the present invention, by performing monitoring statistics and digital processing on the communication data processing dimension for different power transmission targets to obtain the corresponding first monitoring and processing sequence, it is possible to achieve a digital representation of the communication data processing status corresponding to the communication data processing dimension for different power transmission targets, and also provide reliable communication data processing dimension data support for the subsequent processing calculation of the single overall processing status corresponding to the power transmission target;
[0046] When monitoring and counting the communication data transmission dimensions for different transmission targets, the start and end transmission timestamps of the data transmission of the processing results after the selected transmission target completes the communication data processing are monitored and counted, and the transmission time difference between the end and start transmission timestamps is calculated; the units of different timestamps and transmission time differences are all in seconds; the target for data transmission of the selected transmission target can be the dispatching center or the cloud server;
[0047] And, obtaining the total amount of resource transmission consumption for communication and data transmission between the start transmission timestamp and the end transmission timestamp of the selected power transmission target; the total amount of resource transmission consumption is specifically the total flow consumed in the entire data transmission process;
[0048] When digitally processing the various data monitored and counted in the communication data transmission dimension, the transmission time difference and total resource transmission consumption corresponding to the selected transmission target are analyzed through the data transmission identification piecewise function and the transmission validity SX is output;
[0049] Among them, the expression of data transmission identification piecewise function is:
[0050]
[0051] Where XX is the total resource transmission consumption corresponding to the selected transmission target; Ts is the transmission time difference corresponding to the selected transmission target; B is the standard resource transmission consumption; Ts′ is the standard transmission time difference corresponding to the selected transmission target; α and β are different weight coefficients and are both greater than 0; the standard resource transmission consumption and the standard transmission time difference can be determined based on the resource transmission design requirement data corresponding to the selected transmission target, or based on the median of all historical resource transmission consumption and the median of all historical transmission time differences;
[0052] It should be noted that the transmission validity is used to integrate and calculate various data when the selected transmission target is transmitting communication data to digitally represent its communication data transmission status;
[0053] The transmission effectiveness, device number, start transmission timestamp, end transmission timestamp, transmission time difference, and total resource transmission consumption corresponding to the selected power transmission target are sorted and combined to obtain a second monitoring processing sequence for communication data transmission corresponding to the selected power transmission target;
[0054] In an embodiment of the present invention, by monitoring and counting the communication data transmission dimension of different transmission targets and digitally processing them to obtain the corresponding second monitoring and processing sequence, it is possible to realize the digital representation of the communication data transmission status corresponding to the communication data transmission dimension of different transmission targets, and provide reliable communication data transmission dimension data support for the processing calculation of the single overall processing status corresponding to the subsequent transmission target; thereby improving the diversity of communication data processing supervision for different transmission targets and the extensibility of subsequent expansion and utilization.
[0055] The power transmission target communication data processing and evaluation module is used to integrate and calculate the monitoring and processing sequences of different dimensions of different selected power transmission targets to determine the corresponding overall validity and the corresponding single overall processing status, and to perform overall processing status evaluation of the overall dimensions of different selected power transmission targets. Based on the overall processing status evaluation results, the module adaptively implements targeted resource allocation optimization management for the power transmission communication data processing of different selected power transmission targets; it includes:
[0056] like Figure 2 As shown, the first monitoring process sequence and the second monitoring process sequence corresponding to the selected power transmission target are obtained, and the head elements in the first monitoring process sequence and the second monitoring process sequence are traversed and analyzed respectively;
[0057] If the head elements in the first monitoring processing sequence and the second monitoring processing sequence are both 0, then an overall normal instruction is generated and the flag of the selected power transmission target is modified to a normal power transmission target;
[0058] If the header elements in the first monitoring processing sequence and the second monitoring processing sequence are not 0, a local exception instruction is generated and the value corresponding to the header element that is not 0 is marked as the overall validity;
[0059] If the head elements in both the first monitoring and processing sequence and the second monitoring and processing sequence are not 0, an overall abnormal instruction is generated and the overall validity ZX of the selected power transmission target is calculated using the formula ZX = a × CX + b × SX; where a and b are different weight coefficients and are both greater than 0; a + b = 1;
[0060] When determining the single overall processing state corresponding to the selected transmission target based on the obtained overall validity, the overall validity is input into the single overall processing identification piecewise function for data analysis to obtain the corresponding state identifier ZB;
[0061] Among them, the expression of the piecewise function identified by single overall processing is:
[0062] Where C is the single overall processing standard value, which can be determined based on the overall processing design requirement data corresponding to the selected transmission target;
[0063] It should be noted that the status identifier is used to integrate and calculate the processing results of different dimensions of the selected transmission target to digitally represent its single overall processing status;
[0064] The status flag contains a value of 0 or 1, indicating that the single overall processing status of the corresponding selected power transmission target is slightly abnormal or severely abnormal;
[0065] Generate a single overall processing state of slight abnormality or severe abnormality corresponding to the selected power transmission target according to the state flag with a value of 0 or 1;
[0066] In the embodiment of the present invention, the processing results of different dimensions of the selected power transmission target are integrated and calculated to obtain the corresponding status identifier. Data analysis of the status identifier can determine the single overall processing status corresponding to the selected power transmission target, and can also provide reliable single overall processing data support for subsequent overall processing status evaluation of the overall dimension of the selected power transmission target.
[0067] When evaluating the overall processing status of the selected transmission target in the overall dimension, the total number of historical single overall processing status analysis of the selected transmission target and the analysis results corresponding to each historical single overall processing status are counted, and the formula is used to calculate the total number of historical single overall processing status analysis of the selected transmission target. Calculate and obtain the integrated validity ZQ corresponding to the selected transmission target; where N1 and N2 are the total number of times a single mild anomaly in the overall processing state and a single severe anomaly in the overall processing state corresponding to the selected transmission target occur, respectively; N is the total number of communication data processing operations corresponding to the selected transmission target; N1+N2≤N;
[0068] When implementing targeted resource allocation optimization management for subsequent power transmission communication data processing of the selected power transmission target based on the integrated validity, data analysis of the integrated validity is performed;
[0069] If the integration validity is 0, the existing resource allocation scheme is maintained for the subsequent power transmission communication data processing of the selected power transmission target;
[0070] If the integration validity is 1, a targeted resource allocation supplement plan is implemented for the subsequent power transmission communication data processing of the selected power transmission target; wherein the resource allocation supplement plan can specifically be to increase the total amount of corresponding network processing resources.
[0071] Different from the existing technical solutions that only perform a single comparison, judgment and prompt on the transmission communication data processing of different selected transmission targets, or perform data processing analysis and management based on a single dimension, the embodiment of the present invention obtains the overall validity and corresponding single overall processing status corresponding to different selected transmission targets by integrating and calculating the processed data of different dimensions in the early stage, and implements an overall processing status evaluation of the overall dimension for different selected transmission targets. According to the overall processing status evaluation result, the transmission communication data processing of different selected transmission targets is adaptively implemented with targeted resource allocation optimization management, thereby realizing multi-dimensional processing and multi-level expansion utilization of transmission communication data, and improving the local processing effect and overall expansion optimization effect of transmission target communication data processing.
[0072] In addition, the formulas involved in the above are all calculated by removing dimensions and taking their numerical values. They are a formula that is closest to the actual situation obtained by collecting a large amount of data and simulating it through simulation software.
[0073] In the several embodiments provided by the present invention, it should be understood that the disclosed system can be implemented in other ways. For example, the embodiments of the invention described above are merely illustrative. For example, the division of modules is only a logical function division, and other division methods may be used in actual implementation.
[0074] Modules described as separate components may or may not be physically separate, and components shown as modules may or may not be physical modules, and may be located in one place or distributed across multiple network modules. Some or all of these modules may be selected to achieve the objectives of this embodiment based on actual needs.
[0075] In addition, the functional modules in various embodiments of the present invention may be integrated into a single processing module, each module may exist physically separately, or two or more modules may be integrated into a single module. The aforementioned integrated modules may be implemented in the form of hardware or hardware plus software functional modules.
[0076] It is obvious to a person skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, but that the present invention can be implemented in other specific forms without departing from the essential characteristics of the present invention.
[0077] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not limiting. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention.
Claims
1. A power transmission and communication data processing system based on big data, characterized in that: include: The multi-dimensional communication data processing monitoring and statistical evaluation module is used to implement targeted monitoring and statistics on the communication data processing of different transmission targets from different dimensions, and digitally process the monitoring and statistical data of different dimensions of different transmission targets to obtain monitoring and processing sequences of different dimensions; The power transmission target communication data processing evaluation module is used to integrate and calculate the monitoring and processing sequences of different dimensions of different selected power transmission targets to determine the corresponding overall validity and the corresponding single overall processing status, and to perform overall processing status evaluation of the overall dimensions of different selected power transmission targets. Based on the overall processing status evaluation results, the module adaptively implements targeted resource allocation optimization management for the power transmission communication data processing of different selected power transmission targets; Among them, when evaluating the overall processing status of the overall dimension of the selected transmission target, the total number of historical single overall processing status analysis of the selected transmission target and the analysis results corresponding to each historical single overall processing status are counted, and the formula is used to calculate the total number of historical single overall processing status analysis of the selected transmission target. Calculate the integrated validity ZQ corresponding to the selected transmission target; where N1 and N2 are the total number of times a single overall processing state mild anomaly and a single overall processing state severe anomaly occurred for the selected transmission target, respectively; N is the total number of communication data processing operations performed for the selected transmission target; N1 + N2 ≤ N; and C is the standard value for a single overall processing operation. When implementing targeted resource allocation optimization management for subsequent power transmission communication data processing of the selected power transmission target based on the integrated validity, data analysis of the integrated validity is performed; If the integration validity is 0, the existing resource allocation scheme is maintained for the subsequent power transmission communication data processing of the selected power transmission target; If the integration validity is 1, a targeted resource allocation supplementary plan is implemented for the subsequent power transmission communication data processing of the selected power transmission target.
2. The power transmission communication data processing system based on big data according to claim 1, characterized in that: When monitoring and counting the communication data processing dimension of different transmission targets, the transmission target that starts communication data processing is marked as the selected transmission target, and the start processing timestamp and end processing timestamp of the communication data processing of the selected transmission target are obtained, and the processing time difference between the end processing timestamp and the start processing timestamp is calculated; and obtaining the total amount of resource processing consumption of the selected power transmission target for communication data processing between a start processing timestamp and an end processing timestamp; When digitally processing the various data monitored and counted in the communication data processing dimension, the processing time difference and the total resource processing consumption corresponding to the selected transmission target will be analyzed through the data processing identification piecewise function and the processing validity CX will be output.
3. The power transmission communication data processing system based on big data according to claim 2, characterized in that: The expression of data processing identification piecewise function is Where ZC is the total resource processing consumption corresponding to the selected transmission target; Tc is the processing time difference corresponding to the selected transmission target; A is the standard consumption of resource processing; The processing validity, device number, start processing timestamp, end processing timestamp, processing time difference, and total resource processing consumption corresponding to the selected power transmission target are sorted and combined to obtain a first monitoring processing sequence for communication data processing corresponding to the selected power transmission target.
4. The power transmission communication data processing system based on big data according to claim 3, characterized in that: When monitoring and counting the communication data transmission dimension for different transmission targets, the monitoring and counting is performed on the start transmission timestamp and the end transmission timestamp of the data transmission of the processing result after the selected transmission target completes the communication data processing, and the transmission time difference between the end transmission timestamp and the start transmission timestamp is calculated; and obtaining the total amount of resource transmission consumption for communication data transmission between the start transmission timestamp and the end transmission timestamp of the selected power transmission target; When digitally processing the various data monitored and counted in the communication data transmission dimension, the transmission time difference and the total resource transmission consumption corresponding to the selected transmission target will be analyzed through the data transmission identification piecewise function and the transmission validity SX will be output.
5. The power transmission communication data processing system based on big data according to claim 4, characterized in that: The expression of data transmission identification piecewise function is: Where XX is the total resource transmission consumption corresponding to the selected transmission target; Ts is the transmission time difference corresponding to the selected transmission target; B is the standard resource transmission consumption; Ts′ is the standard transmission time difference corresponding to the selected transmission target; α and β are different weight coefficients and are both greater than 0; The transmission validity, device number, start transmission timestamp, end transmission timestamp, transmission time difference, and total resource transmission consumption corresponding to the selected power transmission target are sorted and combined to obtain a second monitoring processing sequence for communication data transmission corresponding to the selected power transmission target.
6. The power transmission communication data processing system based on big data according to claim 5, characterized in that: Obtaining a first monitoring process sequence and a second monitoring process sequence corresponding to the selected power transmission target, and traversing and analyzing the head elements in the first monitoring process sequence and the second monitoring process sequence respectively; If the header elements in the first monitoring processing sequence and the second monitoring processing sequence are not 0, a local exception instruction is generated and the value corresponding to the header element that is not 0 is marked as the overall validity; If the head elements in both the first monitoring and processing sequence and the second monitoring and processing sequence are not 0, an overall abnormal instruction is generated and the overall validity ZX of the selected power transmission target is calculated using the formula ZX=a×CX+b×SX; where a and b are different weight coefficients and are both greater than 0; and a+b=1.
7. The power transmission communication data processing system based on big data according to claim 6, characterized in that: When determining the single overall processing state corresponding to the selected transmission target based on the obtained overall validity, the overall validity is input into the single overall processing identification piecewise function for data analysis to obtain the corresponding state identifier ZB; the expression of the single overall processing identification piecewise function is: Where, C is the standard value of single overall treatment; A single overall processing state of slight abnormality or severe abnormality corresponding to the selected power transmission target is generated according to the state identifier with a value of 0 or 1.
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