A line power failure whole-process intelligent monitoring method and device and a storage medium
By detecting the line outage process in stages in the OMS and DCCS systems, the shortcomings of intelligent monitoring of the entire line outage process are solved, and intelligent monitoring and risk control of the line outage process are realized, thereby improving the stability and efficiency of power grid operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUANGDONG POWER GRID CO LTD
- Filing Date
- 2023-02-17
- Publication Date
- 2026-04-28
AI Technical Summary
Existing technologies cannot achieve intelligent monitoring of the entire power outage process, and errors or oversights are prone to occur at various stages, affecting the stable operation of the power grid.
By detecting key information in the OMS and DCCS systems, intelligent monitoring is carried out at multiple detection nodes, including operation ticket verification, load control implementation, equipment tagging implementation, standard verification, risk control implementation, and log record verification. When anomalies are detected, early warnings are issued.
It enables intelligent monitoring of the entire power outage process, ensuring that risks are controllable, improving work efficiency, and reducing the waste of manpower and time.
Smart Images

Figure CN115986941B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of power distribution outage monitoring, and particularly to a method, device and storage medium for intelligent monitoring of the whole process of line outage. Background Art
[0002] With the increasing expansion of the power grid scale, the outage maintenance work of equipment is also increasing continuously. The outage of each line requires applying for and executing strict operation steps, which involve multiple systems such as the OMS system (production management system) and the DCCS system (dispatching command control system). The involved links are numerous and the safety risks are relatively large. Any error or omission in any link during this period may affect the stable operation of the power grid, and even trigger safety accidents, endangering personal safety. Therefore, it is necessary to monitor the whole process of line outage.
[0003] At present, for line outage, the substation initiates an outage application to the superior dispatching. The superior dispatching writes an outage ticket according to the maintenance order. After the outage application is approved, the substation starts to execute the outage operation. After the superior dispatching approves the outage operation, it can only switch between different systems to view the outage process, with huge workload and low efficiency. In addition, due to objective reasons such as low personal business level, inability to view the outage process in real time, and lack of overall awareness of individuals, various problems will occur, such as failure to write an operation ticket in time, failure to hang a sign in time when the line is out of power, and failure to transfer the maintenance order in time when the line is out of power. Eventually, it is necessary to spend a lot of energy and manpower to repeatedly verify and modify, seriously affecting the line outage work and further affecting the stable operation of the power grid. Summary of the Invention
[0004] The present invention provides a method, device and storage medium for intelligent monitoring of the whole process of line outage, which solves the technical problem that the prior art cannot realize the intelligent monitoring of the whole process of line outage, and is prone to errors or omissions in each link during the outage process, thus affecting the stable operation of the power grid.
[0005] In the first aspect of the present invention, a method for intelligent monitoring of the whole process of line outage is provided, including:
[0006] Detect whether there is a target dispatching operation mode change order in the OMS system to obtain a first detection result; the target dispatching operation mode change order is a dispatching operation mode change order that is in the to-be-started state and the change start time is within the first preset time before the current time;
[0007] When the first detection result is yes, obtain the target change start time and the corresponding target line in the target dispatching operation mode change order, and detect whether there is a target operation ticket corresponding to the target line in the operation ticket link within the second preset time before the target change start time in the DCCS system to obtain a second detection result;
[0008] If the second detection result is yes, determine the maintenance application form associated with the target dispatch operation mode change order, and check whether the corresponding operation order application has been submitted within a third preset time before the target change start time based on the determined maintenance application form to obtain the third detection result; if the second detection result is no, issue the first warning information.
[0009] If the third detection result is yes, determine whether the target dispatch operation mode change order records a load control requirement. If a load control requirement is recorded, check whether there is a telephone notification of dispatch load control to obtain a fourth detection result. If the third detection result is no, issue a second early warning message.
[0010] When the fourth detection result is yes, the status and tagging action of the target line are detected to obtain the fifth detection result; when the status of the target operation ticket is in execution and the fourth detection result is no, a third warning message is issued.
[0011] When the fifth detection result indicates that the target line is under maintenance and a tagging action is detected, the target operation parameters of the target line are checked to see if they meet the preset verification conditions, resulting in a sixth detection result; when the fifth detection result does not indicate that the target line is under maintenance and a tagging action is detected, a fourth warning message is issued.
[0012] If the sixth detection result is yes, determine whether the target dispatch operation mode change order records risk control requirements. If risk control requirements are recorded, detect whether there are target risk control behaviors to obtain the seventh detection result. If the sixth detection result is no, issue the fifth early warning information.
[0013] If the seventh detection result is yes, query the DCCS system to see if there is a power outage log corresponding to the target line to obtain the eighth detection result; if the seventh detection result is no, issue the sixth warning information.
[0014] If the eighth detection result is yes, a preset termination operation is performed to indicate the end of the full-process monitoring of the power outage of the target line; if the eighth detection result is no, a seventh warning message is issued.
[0015] According to one aspect of the present invention, determining whether the target dispatch operation mode change order records a load control requirement includes:
[0016] Determine the first target area associated with the load control requirements in the target dispatch operation mode change order;
[0017] Keyword identification is performed on the first target region;
[0018] If a first target keyword corresponding to the load control requirement is identified, it is determined that the target dispatch operation mode change order records a load control requirement.
[0019] According to one achievable method of the first aspect of the present invention, the preset verification conditions include the following three target conditions:
[0020] (1) The target line is under maintenance and all maintenance orders started on the same day under the target dispatch operation mode change order are under maintenance.
[0021] (2) The start time of the power outage operation corresponding to the target line shall not be greater than the sum of the approved start time of the power outage operation and the first preset delay time;
[0022] (3) The work permit time for each maintenance order corresponding to the target line is not greater than the sum of the approved work start time and the second preset delay time;
[0023] The sixth detection result obtained by detecting whether the target operating parameters of the target line meet the preset verification conditions includes:
[0024] Obtain the target operation parameters of the target line; the target operation parameters include the status of the target line and the maintenance order started on the same day, the start time of the power outage operation, the start time of the approved power outage operation, the work permit time and the start time of the approved work.
[0025] Determine whether the three target conditions are met based on the target operation parameters;
[0026] If the three target conditions are met, the output result is the sixth detection result (yes); if any one of the three target conditions is not met, the output result is the sixth detection result (no).
[0027] According to one achievable method of the first aspect of the invention, the first preset delay time is 30 minutes;
[0028] The second preset delay time is 60 minutes.
[0029] According to one aspect of the present invention, determining whether the target dispatch operation mode change order records risk control requirements includes:
[0030] Determine the second target area that is associated with the risk control requirements in the target dispatch operation mode change order;
[0031] Keyword identification is performed on the second target region;
[0032] If a second target keyword corresponding to the risk control requirements is identified, it is determined that the target dispatch operation mode change order records risk control requirements.
[0033] According to one achievable method of the first aspect of the present invention, the first preset time is 60 minutes;
[0034] The second preset time is 60 minutes; the third preset time is 30 minutes.
[0035] According to one achievable method of the first aspect of the present invention, the first warning information, the second warning information, the third warning information, the fourth warning information, the fifth warning information and / or the sixth warning information are published by a preset voice playback device.
[0036] A second aspect of the present invention provides an intelligent monitoring device for the entire process of a power outage, comprising:
[0037] The first detection module is used to detect whether there is a target dispatch operation mode change order in the OMS system and obtain a first detection result; the target dispatch operation mode change order is a dispatch operation mode change order that is in the pending start state and whose change start time is within a first preset time before the current time.
[0038] The second detection module is used to obtain the target change start time and the corresponding target line in the target dispatch operation mode change order when the first detection result is yes, and to detect whether there is a target operation ticket corresponding to the target line in the operation ticket link within the second preset time before the target change start time in the DCCS system, and to obtain the second detection result.
[0039] The third detection module is used to determine the maintenance application form associated with the target dispatch operation mode change order when the second detection result is yes, and to detect whether the corresponding operation order application has been submitted within a third preset time before the target change start time based on the determined maintenance application form, and to obtain the third detection result; the early warning module is used to issue the first early warning information when the second detection result is no.
[0040] The fourth detection module is used to determine whether the target dispatch operation mode change order records a load control requirement when the third detection result is yes, and to detect whether there is a telephone notification of dispatch load control when a load control requirement is recorded, thereby obtaining the fourth detection result; the early warning module is also used to issue a second early warning message when the third detection result is no.
[0041] The fifth detection module is used to detect the status and tagging action of the target line when the fourth detection result is yes, and obtain the fifth detection result; the early warning module is also used to issue a third early warning message when the status of the target operation ticket is in execution and the fourth detection result is no.
[0042] The sixth detection module is used to detect whether the target operation parameters of the target line meet the preset verification conditions when the fifth detection result indicates that the target line is under maintenance and a tagging action is detected, and to obtain the sixth detection result; the early warning module is also used to issue a fourth early warning message when the fifth detection result does not indicate that the target line is under maintenance and a tagging action is detected.
[0043] The seventh detection module is used to determine whether the target dispatch operation mode change order records risk control requirements when the sixth detection result is yes, and to detect whether there are target risk control behaviors when risk control requirements are recorded, and to obtain the seventh detection result; the early warning module is also used to issue a fifth early warning message when the sixth detection result is no.
[0044] The eighth detection module is used to query the DCCS system for a power outage log corresponding to the target line when the seventh detection result is yes, and obtain the eighth detection result; the early warning module is also used to issue a sixth early warning message when the seventh detection result is no.
[0045] The termination module is used to perform a preset termination operation to indicate the end of the full-process monitoring of the power outage of the target line when the eighth detection result is yes; the early warning module is also used to issue a seventh early warning message when the eighth detection result is no.
[0046] According to one achievable embodiment of the second aspect of the present invention, the fourth detection module includes:
[0047] The first determining unit is used to determine the first target area associated with the load control requirements in the target dispatch operation mode change order;
[0048] The first identification unit is used to identify keywords in the first target region;
[0049] The second determining unit is used to determine that the target dispatch operation mode change order records load control requirements if a first target keyword corresponding to the load control requirements is identified.
[0050] According to one achievable method of the second aspect of the present invention, the preset verification conditions include the following three target conditions:
[0051] (1) The target line is under maintenance and all maintenance orders started on the same day under the target dispatch operation mode change order are under maintenance.
[0052] (2) The start time of the power outage operation corresponding to the target line shall not be greater than the sum of the approved start time of the power outage operation and the first preset delay time;
[0053] (3) The work permit time for each maintenance order corresponding to the target line is not greater than the sum of the approved work start time and the second preset delay time;
[0054] The sixth detection module includes:
[0055] The acquisition unit is used to acquire the target operation parameters of the target line; the target operation parameters include the status of the target line and the maintenance order started on the same day, the start time of the power outage operation, the start time of the approved power outage operation, the work permit time, and the start time of the approved work.
[0056] The judgment unit is used to determine whether the three target conditions are met based on the target operation parameters.
[0057] The result output unit is used to output a sixth detection result if the three target conditions are met, and to output a sixth detection result if any one of the three target conditions is not met.
[0058] According to one achievable method of the second aspect of the invention, the first preset delay time is 30 minutes;
[0059] The second preset delay time is 60 minutes.
[0060] According to one achievable embodiment of the second aspect of the present invention, the seventh detection module comprises:
[0061] The third determining unit is used to determine the second target area associated with the risk control requirements in the target dispatch operation mode change order;
[0062] The second identification unit is used to identify keywords in the second target region;
[0063] The fourth determining unit is used to determine that the target dispatch operation mode change order records risk control requirements if a second target keyword corresponding to the risk control requirements is identified.
[0064] According to one achievable method of the second aspect of the present invention, the first preset time is 60 minutes;
[0065] The second preset time is 60 minutes; the third preset time is 30 minutes.
[0066] According to one achievable method of the second aspect of the present invention, the first warning information, the second warning information, the third warning information, the fourth warning information, the fifth warning information and / or the sixth warning information are published by a preset voice playback device.
[0067] A third aspect of the present invention provides an intelligent monitoring device for the entire process of a power outage, comprising:
[0068] A memory for storing instructions; wherein the instructions are used to implement the intelligent monitoring method for the entire process of power outage as described in any of the above-mentioned methods;
[0069] A processor for executing instructions in the memory.
[0070] The fourth aspect of the present invention provides a computer-readable storage medium storing a computer program, wherein when the computer program is executed by a processor, it implements the intelligent monitoring method for the entire process of power outage as described in any of the above embodiments.
[0071] As can be seen from the above technical solutions, the present invention has the following advantages:
[0072] When a target dispatch operation mode change order is detected in the OMS system, this invention initiates intelligent monitoring of the entire power outage process of the target line. During this process, the entire power outage process is divided into several detection nodes: operation ticket verification, operation condition verification, load control implementation, equipment tagging implementation, standard verification, risk control implementation, and log record verification. By periodically scanning and collecting relevant information about the power outage of the target line, each of the above detection nodes is checked sequentially. If any abnormal behavior or information is detected, an early warning is issued. This achieves intelligent monitoring of the entire power outage process, ensuring that risks are controllable and improving work efficiency. Attached Figure Description
[0073] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0074] Figure 1 A flowchart of an intelligent monitoring method for the entire process of a power outage is provided in an optional embodiment of the present invention;
[0075] Figure 2 The diagram below shows the structural connection of an intelligent monitoring device for the entire process of a power outage, provided as an optional embodiment of the present invention.
[0076] Figure label:
[0077] 1-First detection module; 2-Second detection module; 3-Third detection module; 4-Fourth detection module; 5-Fifth detection module; 6-Sixth detection module; 7-Seventh detection module; 8-Eighth detection module; 9-End module. Detailed Implementation
[0078] This invention provides a method, device, and storage medium for intelligent monitoring of the entire power outage process, which solves the technical problem that existing technologies cannot achieve intelligent monitoring of the entire power outage process, and errors or omissions are prone to occur at various stages of the power outage process, thereby affecting the stable operation of the power grid.
[0079] To make the objectives, features, and advantages of this invention more apparent and understandable, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.
[0080] This invention provides a method for intelligent monitoring of the entire process of power outages.
[0081] Please see Figure 1 , Figure 1 The flowchart illustrates a method for intelligent monitoring of the entire power outage process provided by an embodiment of the present invention.
[0082] This invention provides an intelligent monitoring method for the entire process of a power outage, comprising:
[0083] Step S1: Detect whether there is a target dispatch operation mode change order in the OMS system and obtain the first detection result; the target dispatch operation mode change order is a dispatch operation mode change order that is in the pending start state and whose change start time is within the first preset time before the current time.
[0084] The OMS (Production Management System) is responsible for production management-related business, such as production approval processes. As a specific implementation method, when detecting whether a target dispatch operation mode change order exists in the OMS system, the area related to dispatch operation modes in the OMS system is scanned periodically. If a dispatch operation mode change order in a pending start state with a change start time within the first preset time before the current time is detected, it indicates that a target dispatch operation mode change order has been detected. The output result is then "Yes," indicating a positive detection result, triggering a power outage monitoring scenario and driving the subsequent steps of the method described in this application.
[0085] The first preset time can be set according to actual conditions. As a specific implementation, to ensure the reliability of power outage operation progress monitoring, the first preset time is set to 60 minutes.
[0086] Step S2: When the first detection result is yes, obtain the target change start time and the corresponding target line in the target dispatch operation mode change order, and detect whether there is a target operation ticket corresponding to the target line in the operation ticket link within the second preset time before the target change start time in the DCCS system, and obtain the second detection result.
[0087] Existing dispatch operation mode change orders typically include a "Change Start Time" field. The target change start time can be extracted from this field in the target dispatch operation mode change order. Similarly, the target line can be extracted from the line description field in the target dispatch operation mode change order.
[0088] It should be noted that this application does not limit the specific information extraction methods.
[0089] The second preset time can be set according to actual conditions. As one implementation, when the first preset time is set to 60 minutes, the second preset time is also set to 60 minutes.
[0090] As a specific implementation method, you can select "Item-by-Item Order" from the options under "Operation Ticket" in the DCCS system, and then select the "Pending Review / Under Review / Pending Execution / Execution" stage as the operation ticket stage. If an operation ticket related to the target line exists in this stage, it indicates that a target operation ticket exists. Taking the 110kVXX line as an example, if an operation ticket named "110kVXX line changed from operation to maintenance" is detected in this stage, the output result is a second detection result of "Yes"; if no operation ticket related to the 110kVXX line is detected in this stage, the output result is a second detection result of "No".
[0091] The above embodiments of the present invention realize intelligent verification of whether an operation ticket has been prepared during a power outage.
[0092] Step S3: When the second detection result is yes, determine the maintenance application form associated with the target dispatch operation mode change order, and check whether the corresponding operation order application is submitted within a third preset time before the target change start time based on the determined maintenance application form to obtain the third detection result; when the second detection result is no, issue the first warning information.
[0093] The third preset time can be set according to actual conditions. As one implementation, when the second preset time is set to 60 minutes, the third preset time is set to 30 minutes.
[0094] As one implementation method, keywords related to operation order applications can be set, and the analysis can be performed by keyword matching to determine whether a corresponding operation order application is submitted in the determined maintenance application form. If the keyword related to operation order applications is detected in the determined maintenance application form, it means that a corresponding operation order application has been submitted in the determined maintenance application form. If the keyword related to operation order applications is not detected in the determined maintenance application form, it means that a corresponding operation order application has not been submitted in the determined maintenance application form.
[0095] As another implementation method, the corresponding image of the determined maintenance request form can be extracted, and the feature area of the image related to the operation order application can be matched with the standard feature area. Based on the matching result, it can be determined whether the corresponding operation order application has been submitted in the determined maintenance request form.
[0096] The above embodiments of the present invention realize intelligent verification of power outage operation conditions.
[0097] Step S4: When the third detection result is yes, determine whether the target dispatch operation mode change order records a load control requirement. If a load control requirement is recorded, detect whether there is a telephone notification of dispatch load control behavior to obtain a fourth detection result. When the third detection result is no, issue a second early warning information.
[0098] In one feasible manner, determining whether the target dispatch operation mode change order records load control requirements includes:
[0099] Determine the first target area associated with the load control requirements in the target dispatch operation mode change order;
[0100] Keyword identification is performed on the first target region;
[0101] If a first target keyword corresponding to the load control requirement is identified, it is determined that the target dispatch operation mode change order records a load control requirement.
[0102] The first target keyword can be set according to the actual situation. As a specific implementation method, the first target keyword can include "number of users" and "MW".
[0103] As a specific implementation method, the dispatch operation mode change form usually has a "mode arrangement" column, and the area corresponding to the "control principles and requirements" item under this column can be used as the first target area.
[0104] As a specific implementation method, when detecting whether there is a telephone notification for load control when a load control requirement is recorded, the dispatcher terminal executing the load control can be sent a message to inquire whether there is a corresponding target line load control notification. The presence of a telephone notification for load control can be determined based on the feedback result. Alternatively, in conjunction with an existing telephone monitoring system, the presence of a corresponding target line load control notification can be determined by querying existing telephone records / telephone voice recognition information.
[0105] In the above embodiments of this application, intelligent monitoring of whether load control is implemented during power outages is achieved.
[0106] Step S5: When the fourth detection result is yes, the status and tagging action of the target line are detected to obtain the fifth detection result; when the status of the target operation ticket is in execution and the fourth detection result is no, a third warning message is issued.
[0107] In a specific implementation, existing tagging records can be accessed to query for tagging operations on the target line within the corresponding time period, thus determining whether a tagging action was taken on the target line. In other implementations, existing / established line cameras can be used to acquire images of the target line within the corresponding time period, and image recognition can be used to determine whether a tag has been placed on the target line, thereby confirming whether a tagging action was taken on the target line.
[0108] It should be noted that the status data of the line can be obtained from the existing line management system, and this embodiment does not limit this.
[0109] In the above embodiments of the present invention, intelligent monitoring of whether equipment is tagged during a power outage is achieved.
[0110] Step S6: When the fifth detection result indicates that the target line is under maintenance and a tagging action is detected, the target operation parameters of the target line are checked to see if they meet the preset verification conditions, and a sixth detection result is obtained; when the fifth detection result does not indicate that the target line is under maintenance and a tagging action is detected, a fourth warning message is issued.
[0111] In one feasible approach, the preset verification conditions include the following three target conditions:
[0112] (1) The target line is under maintenance and all maintenance orders started on the same day under the target dispatch operation mode change order are under maintenance.
[0113] (2) The start time of the power outage operation corresponding to the target line shall not be greater than the sum of the approved start time of the power outage operation and the first preset delay time;
[0114] (3) The work permit time for each maintenance order corresponding to the target line is not greater than the sum of the approved work start time and the second preset delay time;
[0115] The sixth detection result obtained by detecting whether the target operating parameters of the target line meet the preset verification conditions includes:
[0116] Obtain the target operation parameters of the target line; the target operation parameters include the status of the target line and the maintenance order started on the same day, the start time of the power outage operation, the start time of the approved power outage operation, the work permit time and the start time of the approved work.
[0117] Determine whether the three target conditions are met based on the target operation parameters;
[0118] If the three target conditions are met, the output result is the sixth detection result (yes); if any one of the three target conditions is not met, the output result is the sixth detection result (no).
[0119] The first preset delay time and the second preset delay time can be set according to actual conditions. In one feasible approach, the first preset delay time is set to 30 minutes, and the second preset delay time is set to 60 minutes.
[0120] In this embodiment, intelligent verification of power outage operation procedures is implemented.
[0121] Step S7: When the sixth detection result is yes, determine whether the target dispatch operation mode change order records risk control requirements. If risk control requirements are recorded, detect whether there is a target risk control behavior to obtain the seventh detection result. When the sixth detection result is no, issue the fifth early warning information.
[0122] In one feasible approach, determining whether the target location's operational mode change order records risk control requirements includes:
[0123] Determine the second target area that is associated with the risk control requirements in the target dispatch operation mode change order;
[0124] Keyword identification is performed on the second target region;
[0125] If a second target keyword corresponding to the risk control requirements is identified, it is determined that the target dispatch operation mode change order records risk control requirements.
[0126] As a specific implementation method, the dispatch operation mode change form usually has a "mode arrangement" column, and the area corresponding to the "control principles and requirements" item under this column can be used as the second target area.
[0127] The second target keyword can be set according to the actual situation. As a specific implementation, the second target keyword can include "risk level" and "transmission". For example, when "risk level" is identified in the second target area, it indicates that a risk exists, and it is determined that the target dispatch operation mode change order records risk control requirements. When "transmission" is identified in the second target area, it indicates that there may be requirements for strengthening transmission line inspection and maintenance, and it can also be determined that the target dispatch operation mode change order records risk control requirements.
[0128] Targeted risk control actions can be set according to actual conditions. As a specific implementation method, setting targeted risk control actions includes issuing risk SMS messages and telephone notifications for special inspections of transmission lines. For example, when a "risk level" is identified in the second target area, it is determined that the target dispatch operation mode change order contains risk control requirements. At this time, it is checked whether a risk SMS message has been issued. The presence of targeted risk control actions can be determined through interaction with the terminal receiving the risk SMS message.
[0129] In the above embodiments of the present invention, intelligent monitoring of whether risk control is implemented during a power outage is achieved.
[0130] Step S8: When the seventh detection result is yes, query the DCCS system to see if there is a power outage log corresponding to the target line to obtain the eighth detection result; when the seventh detection result is no, issue the sixth warning information.
[0131] As a specific implementation method, in the DCCS system's scheduling log area, the "Equipment Status" item can be selected, and under the "Line" item of "Equipment Status," the "Non-Operating Equipment" option can be selected to obtain the query area for power outage logs. Then, in this query area, it can be checked whether a power outage log corresponding to the target line exists. Taking the target line as 110kVXX line as an example, if a power outage log for 110kVXX line is found in the area under "Non-Operating Equipment," the output result is the eighth detection result.
[0132] In this embodiment, intelligent verification of whether relevant logs were recorded during the power outage is implemented.
[0133] Step S9: When the eighth detection result is yes, perform a preset end operation to indicate the end of the full-process monitoring of the power outage of the target line; when the eighth detection result is no, issue a seventh warning message.
[0134] The preset end operation can be set according to the actual situation, but this embodiment does not limit it.
[0135] In the above embodiments of the present invention, by issuing a first warning message, a second warning message, a third warning message, a fourth warning message, a fifth warning message, and a sixth warning message, intelligent warnings are achieved for each detection node when any abnormality occurs.
[0136] In one feasible manner, the first warning information, the second warning information, the third warning information, the fourth warning information, the fifth warning information and / or the sixth warning information are issued by a preset voice playback device.
[0137] In this embodiment, voice prompts can effectively remind dispatchers to carry out various power outage operations, ensuring that risks are controllable and improving work efficiency.
[0138] It should be noted that, as another possible method, the aforementioned warning information can also be disseminated through display screens or other reliable notification methods.
[0139] The present invention also provides an intelligent monitoring device for the entire process of power outage, which can be used to execute the intelligent monitoring method for the entire process of power outage described in any of the above embodiments of the present invention.
[0140] Please see Figure 2 , Figure 2 The diagram shows a structural connection block diagram of an intelligent monitoring device for the entire process of power outages provided in an embodiment of the present invention.
[0141] This invention provides an intelligent monitoring device for the entire process of a power outage, comprising:
[0142] The first detection module 1 is used to detect whether there is a target dispatch operation mode change order in the OMS system and obtain a first detection result; the target dispatch operation mode change order is a dispatch operation mode change order that is in the pending start state and whose change start time is within a first preset time before the current time.
[0143] The second detection module 2 is used to obtain the target change start time and the corresponding target line in the target dispatch operation mode change order when the first detection result is yes, and to detect whether there is a target operation ticket corresponding to the target line in the operation ticket link within the second preset time before the target change start time in the DCCS system, and to obtain the second detection result.
[0144] The third detection module 3 is used to determine the maintenance application form associated with the target dispatch operation mode change order when the second detection result is yes, and to detect whether the corresponding operation order application has been submitted within a third preset time before the target change start time based on the determined maintenance application form, and to obtain the third detection result; the early warning module is used to issue the first early warning information when the second detection result is no.
[0145] The fourth detection module 4 is used to determine whether the target dispatch operation mode change order records a load control requirement when the third detection result is yes, and to detect whether there is a telephone notification of dispatch load control when a load control requirement is recorded, thereby obtaining the fourth detection result; the early warning module is also used to issue a second early warning information when the third detection result is no.
[0146] The fifth detection module 5 is used to detect the status and tagging action of the target line when the fourth detection result is yes, and obtain the fifth detection result; the early warning module is also used to issue a third early warning message when the status of the target operation ticket is in execution and the fourth detection result is no.
[0147] The sixth detection module 6 is used to detect whether the target operation parameters of the target line meet the preset verification conditions when the fifth detection result indicates that the target line is under maintenance and a tagging action is detected, and to obtain the sixth detection result; the early warning module is also used to issue a fourth early warning message when the fifth detection result does not indicate that the target line is under maintenance and a tagging action is detected.
[0148] The seventh detection module 7 is used to determine whether the target dispatch operation mode change order records risk control requirements when the sixth detection result is yes, and to detect whether there are target risk control behaviors when risk control requirements are recorded, and to obtain the seventh detection result; the early warning module is also used to issue a fifth early warning information when the sixth detection result is no.
[0149] The eighth detection module 8 is used to query the DCCS system for a power outage log corresponding to the target line when the seventh detection result is yes, and obtain the eighth detection result; the early warning module is also used to issue a sixth early warning message when the seventh detection result is no.
[0150] The termination module 9 is used to perform a preset termination operation to indicate the end of the full-process monitoring of the power outage of the target line when the eighth detection result is yes; the early warning module is also used to issue a seventh early warning message when the eighth detection result is no.
[0151] In one feasible implementation, the fourth detection module 4 includes:
[0152] The first determining unit is used to determine the first target area associated with the load control requirements in the target dispatch operation mode change order;
[0153] The first identification unit is used to identify keywords in the first target region;
[0154] The second determining unit is used to determine that the target dispatch operation mode change order records load control requirements if a first target keyword corresponding to the load control requirements is identified.
[0155] In one feasible approach, the preset verification conditions include the following three target conditions:
[0156] (1) The target line is under maintenance and all maintenance orders started on the same day under the target dispatch operation mode change order are under maintenance.
[0157] (2) The start time of the power outage operation corresponding to the target line shall not be greater than the sum of the approved start time of the power outage operation and the first preset delay time;
[0158] (3) The work permit time for each maintenance order corresponding to the target line is not greater than the sum of the approved work start time and the second preset delay time;
[0159] The sixth detection module 6 includes:
[0160] The acquisition unit is used to acquire the target operation parameters of the target line; the target operation parameters include the status of the target line and the maintenance order started on the same day, the start time of the power outage operation, the start time of the approved power outage operation, the work permit time, and the start time of the approved work.
[0161] The judgment unit is used to determine whether the three target conditions are met based on the target operation parameters.
[0162] The result output unit is used to output a sixth detection result if the three target conditions are met, and to output a sixth detection result if any one of the three target conditions is not met.
[0163] In one feasible manner, the first preset delay time is 30 minutes;
[0164] The second preset delay time is 60 minutes.
[0165] In one feasible implementation, the seventh detection module 7 includes:
[0166] The third determining unit is used to determine the second target area associated with the risk control requirements in the target dispatch operation mode change order;
[0167] The second identification unit is used to identify keywords in the second target region;
[0168] The fourth determining unit is used to determine that the target dispatch operation mode change order records risk control requirements if a second target keyword corresponding to the risk control requirements is identified.
[0169] In one feasible approach, the first preset time is 60 minutes;
[0170] The second preset time is 60 minutes; the third preset time is 30 minutes.
[0171] In one feasible manner, the first warning information, the second warning information, the third warning information, the fourth warning information, the fifth warning information and / or the sixth warning information are issued by a preset voice playback device.
[0172] This invention also provides an intelligent monitoring device for the entire process of a power outage, comprising:
[0173] A memory is used to store instructions; wherein the instructions are used to implement the intelligent monitoring method for the entire process of power outage as described in any of the above embodiments;
[0174] A processor for executing instructions in the memory.
[0175] The present invention also provides a computer-readable storage medium storing a computer program, which, when executed by a processor, implements the intelligent monitoring method for the entire process of power outage as described in any of the above embodiments.
[0176] In the above embodiments of the present invention, when a target dispatch operation mode change order is detected in the OMS system, intelligent monitoring of the entire power outage process of the target line is initiated. During this process, the entire power outage process of the target line is divided into several detection nodes: operation ticket verification, operation condition verification, load control implementation, equipment tagging implementation, standard verification, risk control implementation, and log record verification. By periodically scanning and collecting relevant information about the power outage of the target line, each of the above detection nodes is detected sequentially. If any abnormal behavior or information is found, an early warning is issued, thereby realizing intelligent monitoring of the entire power outage process, ensuring that risks are controllable and improving work efficiency.
[0177] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the devices, modules, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and the specific beneficial effects of the devices, modules, and units described above can be referred to the corresponding beneficial effects in the foregoing method embodiments, and will not be repeated here.
[0178] In the several embodiments provided in this application, it should be understood that the disclosed apparatus and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of modules is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple modules or components may be combined or integrated into another device, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some interfaces; the indirect coupling or communication connection between devices or modules may be electrical, mechanical, or other forms.
[0179] The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs.
[0180] Furthermore, the functional modules in the various embodiments of the present invention can be integrated into one processing module, or each module can exist physically separately, or two or more modules can be integrated into one module. The integrated modules described above can be implemented in hardware or as software functional modules.
[0181] If the integrated module is implemented as a software functional module and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0182] The above-described embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for intelligent monitoring of the entire process of a power outage, characterized in that, include: The first detection result is obtained by checking whether there is a change order for the operation mode of the target location in the OMS system. The target dispatch operation mode change order is a dispatch operation mode change order that is in the pending start state and whose change start time is within the first preset time before the current time; When the first detection result is yes, the target change start time and the corresponding target line in the target dispatch operation mode change order are obtained, and the operation ticket link in the DCCS system within the second preset time before the target change start time is checked to see if there is a target operation ticket corresponding to the target line, and the second detection result is obtained. If the second detection result is yes, determine the maintenance application form associated with the target dispatch operation mode change order, and check whether the corresponding operation order application has been submitted within a third preset time before the target change start time based on the determined maintenance application form to obtain the third detection result; if the second detection result is no, issue the first warning information; If the third detection result is yes, determine whether the target dispatch operation mode change order records a load control requirement. If a load control requirement is recorded, check whether there is a telephone notification of dispatch load control to obtain a fourth detection result. If the third detection result is no, issue a second early warning message. When the fourth detection result is yes, the status and tagging action of the target line are detected to obtain the fifth detection result; when the status of the target operation ticket is in execution and the fourth detection result is no, a third warning message is issued. When the fifth detection result indicates that the target line is under maintenance and a tagging action is detected, the target operation parameters of the target line are checked to see if they meet the preset verification conditions, and a sixth detection result is obtained. When the fifth detection result does not indicate that the target line is under maintenance and a tagging action is detected, a fourth warning message is issued. When the sixth detection result is yes, determine whether the target dispatch operation mode change order records risk control requirements. If risk control requirements are recorded, detect whether there are target risk control behaviors to obtain the seventh detection result. If the sixth detection result is negative, a fifth warning message will be issued. When the seventh detection result is yes, the DCCS system is queried to see if there is a power outage log corresponding to the target line, and the eighth detection result is obtained; A sixth warning message will be issued if the seventh detection result is negative. If the eighth detection result is yes, a preset termination operation is performed to indicate the end of the full-process monitoring of the power outage of the target line; if the eighth detection result is no, a seventh warning message is issued.
2. The intelligent monitoring method for the entire process of power outage according to claim 1, characterized in that, Determining whether the target dispatch operation mode change order records load control requirements includes: Determine the first target area associated with the load control requirements in the target dispatch operation mode change order; Keyword identification is performed on the first target region; If a first target keyword corresponding to the load control requirement is identified, it is determined that the target dispatch operation mode change order records a load control requirement.
3. The intelligent monitoring method for the entire process of power outage according to claim 1, characterized in that, The preset verification conditions include the following three target conditions: (1) The target line is under maintenance and all maintenance orders started on the same day under the target dispatch operation mode change order are under maintenance. (2) The start time of the power outage operation corresponding to the target line shall not be greater than the sum of the approved start time of the power outage operation and the first preset delay time; (3) The work permit time for each maintenance order corresponding to the target line is not greater than the sum of the approved work start time and the second preset delay time; The sixth detection result obtained by detecting whether the target operating parameters of the target line meet the preset verification conditions includes: Obtain the target operation parameters of the target line; the target operation parameters include the status of the target line and the maintenance order started on the same day, the start time of the power outage operation, the start time of the approved power outage operation, the work permit time and the start time of the approved work. Determine whether the three target conditions are met based on the target operation parameters; If the three target conditions are met, the output result is the sixth detection result (yes); if any one of the three target conditions is not met, the output result is the sixth detection result (no).
4. The intelligent monitoring method for the entire process of power outage according to claim 3, characterized in that, The first preset delay time is 30 minutes; The second preset delay time is 60 minutes.
5. The intelligent monitoring method for the entire process of power outage according to claim 1, characterized in that, The process of determining whether the target location dispatch operation mode change order records risk control requirements includes: Determine the second target area that is associated with the risk control requirements in the target dispatch operation mode change order; Keyword identification is performed on the second target region; If a second target keyword corresponding to the risk control requirements is identified, it is determined that the target dispatch operation mode change order records risk control requirements.
6. The intelligent monitoring method for the entire process of power outage according to claim 1, characterized in that, The first preset time is 60 minutes; The second preset time is 60 minutes; the third preset time is 30 minutes.
7. The intelligent monitoring method for the entire process of power outage according to claim 1, characterized in that, The first warning message, the second warning message, the third warning message, the fourth warning message, the fifth warning message and / or the sixth warning message are issued by a preset voice playback device.
8. A fully intelligent monitoring device for the entire process of a power outage, characterized in that, include: The first detection module is used to detect whether there is a target location dispatch operation mode change order in the OMS system and obtain the first detection result; The target dispatch operation mode change order is a dispatch operation mode change order that is in the pending start state and whose change start time is within the first preset time before the current time; The second detection module is used to obtain the target change start time and the corresponding target line in the target dispatch operation mode change order when the first detection result is yes, and to detect whether there is a target operation ticket corresponding to the target line in the operation ticket link within the second preset time before the target change start time in the DCCS system, and to obtain the second detection result. The third detection module is used to determine the maintenance application form associated with the target dispatch operation mode change order when the second detection result is yes, and to detect whether the corresponding operation order application has been submitted within a third preset time before the target change start time based on the determined maintenance application form, and to obtain the third detection result. The early warning module is used to issue a first early warning message when the second detection result is negative; The fourth detection module is used to determine whether the target dispatch operation mode change order records a load control requirement when the third detection result is yes, and to detect whether there is a telephone notification of dispatch load control when a load control requirement is recorded, thereby obtaining the fourth detection result; the early warning module is also used to issue a second early warning message when the third detection result is no. The fifth detection module is used to detect the status and tagging action of the target line when the fourth detection result is yes, and obtain the fifth detection result; the early warning module is also used to issue a third early warning message when the status of the target operation ticket is in execution and the fourth detection result is no. The sixth detection module is used to detect whether the target operation parameters of the target line meet the preset verification conditions when the fifth detection result indicates that the target line is under maintenance and a tagging action is detected, and to obtain the sixth detection result; the early warning module is also used to issue a fourth early warning message when the fifth detection result does not indicate that the target line is under maintenance and a tagging action is detected. The seventh detection module is used to determine whether the target dispatch operation mode change order records risk control requirements when the sixth detection result is yes, and to detect whether there are target risk control behaviors when risk control requirements are recorded, and to obtain the seventh detection result; the early warning module is also used to issue a fifth early warning message when the sixth detection result is no. The eighth detection module is used to query the DCCS system to see if there is a power outage log corresponding to the target line when the seventh detection result is yes, and to obtain the eighth detection result. The early warning module is also used to issue a sixth early warning message when the seventh detection result is negative; The termination module is used to perform a preset termination operation to indicate the end of the full-process monitoring of the power outage of the target line when the eighth detection result is yes; the early warning module is also used to issue a seventh early warning message when the eighth detection result is no.
9. A fully intelligent monitoring device for the entire process of a power outage, characterized in that, include: A memory for storing instructions; wherein the instructions are used to implement the intelligent monitoring method for the entire process of power outage as described in any one of claims 1-7; A processor for executing instructions in the memory.
10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program, which, when executed by a processor, implements the intelligent monitoring method for the entire process of power outages as described in any one of claims 1-7.
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