CN113657626B - Distribution network power outage overhaul data checking method and device, electronic equipment and storage medium - Google Patents
Distribution network power outage overhaul data checking method and device, electronic equipment and storage medium Download PDFInfo
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Abstract
The invention discloses a distribution network power outage overhaul data checking method, a device, electronic equipment and a storage medium, wherein the method comprises the steps of obtaining a distribution network power outage overhaul data table, wherein each piece of data of the data table comprises a plurality of fields with the numerical value type of time; judging the numerical value size relation of associated fields, wherein the associated fields are fields with time sequence relation; if the size relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the association field has a problem; and recording the piece of data and the corresponding problem in a new table. The distribution network power failure overhaul data checking method, the distribution network power failure overhaul data checking device, the electronic equipment and the storage medium can automatically acquire data, judge whether the data has problems in batches and record the problem data in batches, and remarkably improve the data checking efficiency and solve the misjudgment problem caused by manual checking.
Description
Technical Field
The invention belongs to the technical field of distribution networks, and particularly relates to a distribution network power outage overhaul data checking method, a distribution network power outage overhaul data checking device, electronic equipment and a storage medium.
Background
When analyzing and counting the power failure overhaul data, the distribution network dispatcher needs to screen out the data with problems and process and count the data with problems. Through the OMS ERP (enterprise management information system) of the distribution network, a corresponding data table can be derived according to the numerical value of a field (such as overhaul category). When checking data, the data in the data table needs to be manually judged one by one to judge whether the problem of non-standardization exists. The data with the nonstandard problem needs to record the data in the newly built worksheet as the problem record, and if a piece of data has a plurality of nonstandard problems, a plurality of problem records need to be recorded in the newly built worksheet. Because the data volume is huge, the data is judged by one in a manual mode, so that the data checking efficiency is low, and the problem of misjudgment is easy to occur.
Disclosure of Invention
The invention aims to provide a distribution network power failure overhaul data checking method, a distribution network power failure overhaul data checking device, electronic equipment and a storage medium, so that data checking efficiency is improved, and the problem of misjudgment caused by manual checking is solved.
To achieve the purpose, the invention adopts the following technical scheme:
in a first aspect, a method for checking power outage overhaul data of a distribution network is provided, including:
acquiring a data table for power outage overhaul of a distribution network, wherein each piece of data of the data table comprises a plurality of fields with the numerical value type of time;
Judging the numerical value size relation of associated fields, wherein the associated fields are fields with time sequence relation; if the size relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the association field has a problem;
and recording the piece of data and the corresponding problem in a new table.
Optionally, the fields of the plurality of value types being time of day include: the power outage start time, the approval work end time, the power outage operation start time, the power outage operation end time, the power restoration operation start time, the line permission time, the line termination time, the post-delay work end time, the station permission time and the station termination time are approved.
Optionally, the judging and associating the numerical value magnitude relation of the fields, wherein the associating fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the approved blackout start time is greater than the value of the blackout operation start time, the piece of data has an early blackout problem.
Optionally, the judging and associating the numerical value magnitude relation of the fields, wherein the associating fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the power outage operation ending time is larger than the value of the line permission time, or if the value of the power outage operation ending time is larger than the value of the station permission time, the data has the problem of early permission.
Optionally, the judging and associating the numerical value magnitude relation of the fields, wherein the associating fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the complex power operation starting time is smaller than the value of the line ending time or the value of the complex power operation starting time is smaller than the value of the station ending time, the data has the problem of early power transmission.
Optionally, the judging and associating the numerical value magnitude relation of the fields, wherein the associating fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
if the value of the line permitted time is greater than or equal to the value of the line termination time, or the value of the station permitted time is greater than or equal to the value of the station termination time, the data has the problem of early termination.
Optionally, the judging and associating the numerical value magnitude relation of the fields, wherein the associating fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the working ending time after the delay is not null, the value of the working ending time after the delay is smaller than the value of the line ending time or the value of the working ending time after the delay is smaller than the value of the station ending time, and then the delay error problem exists in the data.
In a second aspect, a power outage overhaul data checking device for a distribution network is provided, including:
The acquisition module is used for acquiring a data table for power outage overhaul of the distribution network, wherein each piece of data of the data table comprises a plurality of fields with the numerical value type of time;
The judging module is used for judging the numerical value magnitude relation of the associated fields, wherein the associated fields are fields with time sequence relation; if the size relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the association field has a problem;
and the recording module is used for recording the data and the corresponding problems in a new table.
In a third aspect, an electronic device is provided, comprising:
A memory for storing a computer program;
and the processor is used for realizing the steps of the distribution network power failure overhaul data checking method when executing the computer program.
In a fourth aspect, a computer readable storage medium is provided, on which a computer program is stored, which when executed by a processor implements the steps of a distribution network outage overhaul data checking method as described above.
Compared with the prior art, the embodiment of the invention has the following beneficial effects:
According to the method, the device, the electronic equipment and the storage medium for checking the distribution network power outage overhaul data, the distribution network power outage overhaul data table can be automatically acquired, and then whether the data has problems or not is judged according to the numerical value size relation (the relation of the actually filled data table reaction) of the associated fields and the time sequence relation (the relation existing in logic) of the associated fields, and the data with the problems and the problems corresponding to the data are recorded in the new table. The method, the device, the electronic equipment and the storage medium for checking the distribution network power outage overhaul data can automatically acquire the data, judge whether the data has problems in batches and record the problem data in batches, and remarkably improve the data checking efficiency and solve the misjudgment problem caused by manual checking.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the invention, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
The structures, proportions, sizes, etc. shown in the present specification are shown only for the purposes of illustration and description, and are not intended to limit the scope of the invention, which is defined by the claims, so that any structural modifications, changes in proportions, or adjustments of sizes, which do not affect the efficacy or the achievement of the present invention, should fall within the scope of the invention.
Fig. 1 is a flowchart of a method for checking power outage overhaul data of a distribution network according to an embodiment of the present invention;
fig. 2 is a block diagram of a power outage overhaul data checking device for a distribution network according to an embodiment of the present invention.
Detailed Description
In order to make the objects, features and advantages of the present invention more obvious and understandable, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is apparent that the embodiments described below are only some embodiments of the present invention, not all embodiments of the present invention. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Please refer to fig. 1.
The embodiment provides a distribution network power failure overhaul data checking method, which can automatically acquire data, judge whether the data has problems in batches and record the problem data in batches, remarkably improve the data checking efficiency and solve the misjudgment problem caused by manual checking, and specifically comprises the following steps:
s101, acquiring a data table for power outage overhaul of a distribution network, wherein each piece of data of the data table comprises a plurality of fields with the numerical value type of time;
S102, judging the numerical value size relation of associated fields, wherein the associated fields are fields with time sequence relation; if the magnitude relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the associated field has a problem;
S103, recording the piece of data and the corresponding problem in a new table.
In step S101, a data table may be derived from the distribution network OMS ERP (enterprise management information system). The data table is generally composed of one piece of data. And a piece of data typically has a plurality of fields. The fields are classified according to their numeric type, and may have a time of day field, a numeric field, a text field, and so forth.
For example, the time field may have a field for approving a blackout start time, approving a work end time, a blackout operation start time, a blackout operation end time, a double-power operation start time, a line permission time, a line termination time, a post-delay work end time, a station permission time, and a station termination time.
For example, the text field may have an overhaul category field, with numerical options for the overhaul category: scheduled maintenance, fault maintenance, emergency maintenance, and other maintenance.
Therefore, when the data table is exported, the data to be analyzed and checked may be selected by screening according to the inspection type.
For any piece of data in the exported data table, whether the values of the fields are in compliance or not can be judged through time sequence, so that whether the piece of data has a problem or not is judged. Specifically, a time field has a time sequence relationship among some fields, and the relationship accords with logic and natural rules. However, since the data contents of the derived data table are imported during the power outage maintenance, there is a possibility that the logic is not satisfied.
Specifically, in step S102, the magnitude relation of the values of the associated fields is determined, where the associated fields are fields having a time sequence relation with each other; if the magnitude relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the associated field has a problem.
As a specific application scenario of step 102, if the value of the approved power outage start time is greater than the value of the power outage operation start time, the corresponding piece of data has an early power outage problem.
As a specific application scenario of step 102, if the value of the end time of the outage operation is greater than the value of the line allowable time (if the value of the line allowable time is empty, the judgment is ignored), or if the value of the end time of the outage operation is greater than the value of the station allowable time (if the value of the station allowable time is empty, the judgment is ignored), the corresponding piece of data has an early permission problem.
As a specific application scenario of step 102, if the value of the complex power operation start time is smaller than the value of the line termination time (if the value of the line termination time is null, the judgment is ignored), or if the value of the complex power operation start time is smaller than the value of the station termination time (if the value of the station termination time is null, the judgment is ignored), the corresponding piece of data has the early power transmission problem.
As a specific application scenario of step 102, if the value of the line allowable time is greater than or equal to the value of the line termination time (if the value of the line termination time is null, the judgment is ignored), or if the value of the station allowable time is greater than or equal to the value of the station termination time (if the value of the station termination time is null, the judgment is ignored), the corresponding piece of data has an early termination problem.
As a specific application scenario of step 102, if the value of the working end time after the delay is not null, the value of the working end time after the delay is smaller than the value of the line end time (if the value of the line end time is null, the judgment is omitted), or the value of the working end time after the delay is smaller than the value of the station end time (if the value of the station end time is null, the judgment is omitted), the corresponding piece of data has a delay error problem.
If the value of the working end time after the delay is null, the value of the approval working end time is smaller than the value of the line end time or the value of the approval working end time is smaller than the value of the station end time, and the corresponding piece of data does not have the delay.
In step S103, the piece of data having the problem and the corresponding problem thereof are recorded in a new table (new data table).
The method for checking the power outage overhaul data of the distribution network provided by the embodiment uses the RPA technology to replace the traditional manual mode, and performs program design according to manual working steps and operation scenes so as to achieve the same working effect as the manual mode, and uses the program to replace the manual mode to work, so that the working efficiency is improved. The accuracy of the data can be improved in a program mode, the accuracy is embodied in that the program judges the condition of each piece of data on the data table, so that the data to be recorded is generated, and the inaccuracy of the data caused by partial omission due to a manual screening mode is avoided.
Please refer to fig. 2.
In another embodiment of the present application, a power outage overhaul data checking device for a distribution network is provided, which may be used to implement the steps of the power outage overhaul data checking method for a distribution network provided in the foregoing embodiment, and specifically includes:
The acquisition module 101 is configured to acquire a data table for power outage maintenance of the distribution network, where each piece of data of the data table includes a plurality of fields with a value type of time;
The judging module 102 is configured to judge a value magnitude relation of associated fields, where the associated fields are fields having a time sequence relation with each other; if the magnitude relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the associated field has a problem;
a recording module 103, configured to record the piece of data and the corresponding problem in a new table.
Further, the present embodiment also provides an electronic device, including:
A memory for storing a computer program;
and the processor is used for realizing the steps of the distribution network power failure overhaul data checking method when executing the computer program.
Further, the embodiment also provides a computer readable storage medium, and a computer program is stored on the computer readable storage medium, and when the computer program is executed by a processor, the steps of the distribution network power outage overhaul data checking method are realized.
Since the specific steps and principles of the method for checking the outage overhaul data of the distribution network have been specifically described in the previous embodiment, the details are not repeated here.
According to the distribution network power outage overhaul data checking device, the electronic equipment and the storage medium, the distribution network power outage overhaul data table can be automatically obtained, and then whether the data has problems or not is judged according to the numerical value size relation (the relation of the actually filled data table reaction) of the associated fields and the time sequence relation (the relation existing logically) of the associated fields, and the data with the problems and the problems corresponding to the data are recorded in the new table. The data checking process can remarkably improve the data checking efficiency and solve the misjudgment problem caused by manual checking.
The above embodiments are only for illustrating the technical solution of the present invention, and not for limiting the same; although the invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims (4)
1. The power failure overhaul data checking method for the distribution network is characterized by comprising the following steps of:
acquiring a data table for power outage overhaul of a distribution network, wherein each piece of data of the data table comprises a plurality of fields with the numerical value type of time;
Judging the numerical value size relation of associated fields, wherein the associated fields are fields with time sequence relation; if the size relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the association field has a problem;
Recording the data and the corresponding problems in a new table;
The fields of the plurality of value types being time of day include: approving the power outage starting time, approving the work ending time, starting the power outage operation, ending the power outage operation, starting the power restoration operation, allowing the line to be in time, ending the line, ending the work after delay, allowing the station to be in time and ending the station;
The value size relation of the associated fields is judged, and the associated fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the approved power outage starting time is larger than the value of the power outage operation starting time, the piece of data has the problem of early power outage;
The value size relation of the associated fields is judged, and the associated fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the power outage operation ending time is larger than the value of the line permission time, or if the value of the power outage operation ending time is larger than the value of the station permission time, the data has an early permission problem;
The value size relation of the associated fields is judged, and the associated fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
if the value of the complex power operation starting time is smaller than the value of the line ending time or the value of the complex power operation starting time is smaller than the value of the station ending time, the data has the problem of early power transmission;
The value size relation of the associated fields is judged, and the associated fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
if the value of the line permission time is greater than or equal to the value of the line termination time or the value of the station permission time is greater than or equal to the value of the station termination time, the data has the early termination problem;
The value size relation of the associated fields is judged, and the associated fields are fields with time sequence relation; if the size relationship is opposite to the time sequence relationship, the piece of data corresponding to the numerical value of the association field has a problem, including:
If the value of the working ending time after the delay is not null, the value of the working ending time after the delay is smaller than the value of the line ending time or the value of the working ending time after the delay is smaller than the value of the station ending time, and then the delay error problem exists in the data.
2. The distribution network power outage overhaul data checking device is characterized by being used for realizing the distribution network power outage overhaul data checking method according to claim 1, and comprises the following steps:
The acquisition module is used for acquiring a data table for power outage overhaul of the distribution network, wherein each piece of data of the data table comprises a plurality of fields with the numerical value type of time;
The judging module is used for judging the numerical value magnitude relation of the associated fields, wherein the associated fields are fields with time sequence relation; if the size relation is opposite to the time sequence relation, the piece of data corresponding to the numerical value of the association field has a problem;
and the recording module is used for recording the data and the corresponding problems in a new table.
3. An electronic device, comprising:
A memory for storing a computer program;
a processor, configured to implement the steps of the distribution network outage overhaul data checking method according to claim 1 when executing the computer program.
4. The computer-readable storage medium, wherein the computer-readable storage medium has a computer program stored thereon, the computer program when executed by a processor implementing the steps of the distribution network outage overhaul data checking method of claim.
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CN113077144B (en) * | 2021-03-31 | 2022-12-23 | 广东电网有限责任公司佛山供电局 | Intelligent statistical method and device for number of users affected by distribution network fault |
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