Low-voltage power grid first-aid repair, operation and maintenance management method and system combining real-time power failure and power restoration information

文档序号:1964721 发布日期:2021-12-14 浏览:21次 中文

阅读说明:本技术 结合实时停电复电信息的低压电网抢修运维管理方法及系统 (Low-voltage power grid first-aid repair, operation and maintenance management method and system combining real-time power failure and power restoration information ) 是由 骆晨 冯玉 吴凯 吴少雷 戚振彪 徐飞 赵成 王明 孙立成 冯乔 郭小东 吴琼 于 2021-09-22 设计创作,主要内容包括:本发明公开一种结合实时停电复电信息的低压电网抢修运维管理方法,结合实时停电复电的研判结果,实时感知停电复电事件的发生,结合实时停电复电事件的区域,利用运营商GPS或网络设备基站接入定位对应区域的实际人员,精确感知停电事件影响人员,并结合抢修人员的进度反馈、复电事件的核实,实时将抢修情况推送给实际受影响用户,做到消息的精准化、人性化推送,提高服务品质,减少投诉事件的发生。(The invention discloses a low-voltage power grid emergency maintenance operation and maintenance management method combining real-time power failure and power restoration information, which is characterized in that the occurrence of a power failure and power restoration event is sensed in real time by combining a real-time power failure and power restoration research and judgment result, the actual personnel in the corresponding area are positioned by utilizing an operator GPS or a network equipment base station to accurately sense the personnel affected by the power failure event, the progress feedback of emergency maintenance personnel and the verification of the power restoration event are combined, the emergency maintenance condition is pushed to the actual affected user in real time, the accurate and humanized pushing of information is realized, the service quality is improved, and the occurrence of complaint events is reduced.)

1. The low-voltage power grid first-aid repair, operation and maintenance management method combining real-time power failure and recovery information is characterized by comprising the following steps of:

acquiring power failure and power restoration data of network equipment in real time, and studying and judging whether a power failure and power restoration event occurs according to the power failure and power restoration data;

step two, if no power failure and power restoration event occurs, the research and judgment are finished; if a power failure and power restoration event occurs, processing in the third step is carried out;

analyzing event information according to the power failure recovery data, wherein the event information at least comprises an event type, an event area, a power failure account number and occurrence time;

step four, judging whether the event is power failure or power restoration according to the event information, and if the event is a power failure event, simultaneously performing the processing of the step five and the step eight; if the power restoration event occurs, processing in the ninth step is carried out;

fifthly, judging the influence range according to the event area, the power failure house number and the power failure time information aiming at the power failure event;

step six, acquiring the mobile phone number of the actually affected person and the mobile phone number of the householder according to the influence range;

step seven, pushing real-time power failure information to actually affected personnel and householders;

and step eight, acquiring a rush-repair team group corresponding to the event region according to the event region, and pushing a rush-repair task to the rush-repair team group.

And step nine, aiming at the power restoration event, pushing power restoration information to actual affected personnel and householders.

2. The method for the emergency repair, operation and maintenance management of the low-voltage power grid combined with the real-time power failure and restoration information as claimed in claim 1, wherein,

the specific judgment method of the influence range in the fifth step is as follows:

5.1 judging that the power failure occurs in a large range when the distance does not exceed a set threshold value by combining the geographical position coordinates during the power failure within the set close time; overlapping the areas of the power failure events to be used as the influence range of the large-scale power failure event;

5.2 if only a single power failure event occurs in the close time or the close position, analyzing the building information corresponding to the power failure users according to the power failure user number, and if the power failure users are distributed in multiple buildings, judging that the power failure occurs in the community;

and 5.3, if the power failure users are distributed in a single building, continuously analyzing the distribution floors of the power failure users, and if the power failure users are distributed on all the floors, judging that the building has power failure, otherwise, judging that the floors have power failure.

3. The method for managing the emergency repair, operation and maintenance of the low-voltage power grid in combination with the real-time power failure and restoration information according to claim 1, wherein in the sixth step, if the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected person specifically comprises the following steps:

the method 1, according to longitude and latitude information of a power failure event geographic position, combining received GPS positioning data of a user mobile phone to determine a mobile phone identification code of an affected person, combining an operator account with the mobile phone identification code to obtain user information, and determining a mobile phone number of the affected person;

the method 2 further determines the affected personnel according to the information of the base station accessed by the mobile phone of the user and the historical data of the GPS data:

the method 2.1 utilizes the historical data of the information of the access base station of the mobile phone of the user, screens the access base station with high frequency according to the access frequency and duration, and determines the geographic range and time of the resident user by combining the geographic position and the coverage range of the base station;

the method 2.2 obtains the action track of the user according to the GPS positioning function of the mobile phone of the user; determining a commonly used action track of the user according to data generated by superposition by superposing historical action tracks of the user;

the method 2.3 combines the user resident geographic range and the action track, further superposes the geographic information data, and the user resident area and the appearance time are accurate;

the method 2.4 is used for screening matched users according to the occurrence time of the power failure event and the longitude and latitude information of the geographic position and by combining the user resident area and the occurrence time obtained by analyzing in the method 2.3, and obtaining the mobile phone numbers of the users;

in the method 1 or the method 2, one of them is selected.

4. The method for rush-repair, operation and maintenance of the low-voltage power grid by combining the real-time power failure and restoration information according to claim 3, wherein if the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected person can be further as follows:

and 3, summarizing the mobile phone numbers of the affected personnel obtained by the methods 1 and 2.4, removing repeated data, and determining the mobile phone numbers of the affected personnel finally.

5. The method for rush-repair, operation and maintenance of the pipeline of the low-voltage power grid combined with the real-time power failure and power restoration information according to claim 1, wherein in the sixth step, if the power failure event is floor power failure, the SN number of the network equipment and the mobile phone identification code of the connecting equipment installed on the corresponding floor in the power failure area are obtained through an operator account, and the mobile phone number of the affected personnel is determined by obtaining user information according to the mobile phone identification code combined with the operator account.

6. Low-voltage power grid that combines real-time power failure to recover electric information salvagees fortune dimension pipe-line system, its characterized in that includes:

the data acquisition module acquires power failure and power restoration data of the network equipment in real time and studies and judges whether a power failure and power restoration event occurs or not according to the power failure and power restoration data;

the real-time power failure and power restoration studying and judging module is used for finishing studying and judging if no power failure and power restoration event occurs; if a power failure and power restoration event occurs, analyzing event information according to power failure and power restoration data, wherein the event information at least comprises an event type, an event area, a power failure account number and occurrence time;

the management module judges whether the event is power failure or power restoration according to the event information, and if the event is the power failure event, the management module executes the influence judging module and the emergency repair operation function module simultaneously; if the power restoration event happens, the power restoration message is pushed to the affected personnel and the householder;

the influence judging module is used for judging the influence range according to the event area, the power failure house number and the power failure time information aiming at the power failure event;

the personnel information acquisition module is used for acquiring the mobile phone number of the actually influenced personnel and the mobile phone number of the householder according to the influence range;

and the emergency repair operation functional module acquires a corresponding area emergency repair team according to the event area and pushes an emergency repair task to the emergency repair team.

7. The low-voltage power grid emergency repair, operation and maintenance management system combining real-time power failure and power restoration information according to claim 6, characterized in that,

the specific judgment method of the influence range in the influence judgment module is as follows:

5.1 judging that the power failure occurs in a large range when the distance does not exceed a set threshold value by combining the geographical position coordinates during the power failure within the set close time; overlapping the areas of the power failure events to be used as the influence range of the large-scale power failure event;

5.2 if only a single power failure event occurs in the close time or the close position, analyzing the building information corresponding to the power failure users according to the power failure user number, and if the power failure users are distributed in multiple buildings, judging that the power failure occurs in the community;

and 5.3, if the power failure users are distributed in a single building, continuously analyzing the distribution floors of the power failure users, and if the power failure users are distributed on all the floors, judging that the building has power failure, otherwise, judging that the floors have power failure.

8. The system for managing emergency repair, operation and maintenance of the low-voltage power grid combined with real-time power failure and power restoration information according to claim 6, wherein in the personnel information acquisition module, if the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected personnel specifically comprises the following steps:

the method 1, according to longitude and latitude information of a power failure event geographic position, combining received GPS positioning data of a user mobile phone to determine a mobile phone identification code of an affected person, combining an operator account with the mobile phone identification code to obtain user information, and determining a mobile phone number of the affected person;

the method 2 further determines the affected personnel according to the information of the base station accessed by the mobile phone of the user and the historical data of the GPS data:

the method 2.1 utilizes the historical data of the information of the access base station of the mobile phone of the user, screens the access base station with high frequency according to the access frequency and duration, and determines the geographic range and time of the resident user by combining the geographic position and the coverage range of the base station;

the method 2.2 obtains the action track of the user according to the GPS positioning function of the mobile phone of the user; determining a commonly used action track of the user according to data generated by superposition by superposing historical action tracks of the user;

the method 2.3 combines the user resident geographic range and the action track, further superposes the geographic information data, and the user resident area and the appearance time are accurate;

the method 2.4 is used for screening matched users according to the occurrence time of the power failure event and the longitude and latitude information of the geographic position and by combining the user resident area and the occurrence time obtained by analyzing in the method 2.3, and obtaining the mobile phone numbers of the users;

in the method 1 or the method 2, one of them is selected.

9. The low-voltage power grid rush-repair operation and maintenance pipeline system combining the real-time power failure and restoration information according to claim 8, wherein if the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected person can further comprise the following steps:

and 3, summarizing the mobile phone numbers of the affected personnel obtained by the methods 1 and 2.4, removing repeated data, and determining the mobile phone numbers of the affected personnel finally.

10. The low-voltage power grid rush-repair operation and maintenance pipeline system combining real-time power failure and power restoration information as claimed in claim 6, wherein in the personnel information acquisition module, if the power failure event is floor power failure, the SN number of the network equipment and the mobile phone identification code of the connecting equipment installed on the corresponding floor in the power failure area are acquired through an operator account, and the mobile phone number of the affected personnel is determined by acquiring the user information according to the mobile phone identification code in combination with the operator account.

Technical Field

The invention relates to the technical field of data analysis, in particular to a low-voltage power grid first-aid repair, operation and maintenance management method and system based on real-time power failure and power restoration information.

Background

At present, when a power failure fault occurs in a low voltage of a transformer area, a user can only call 95598 to report and repair, operating personnel need to be arranged to check one by one on site, the time for repairing and recovering the power is long, and complaints are easily caused. In addition, along with the continuous improvement of the population mobility of urban residents, when a user has power failure, the power failure information sent by a company at the first time can only be sent to a house owner and is not a resident user, and the user who is really affected by the power failure can not receive the power failure information in time to cause the power failure complaint of the user.

For example, a power outage information cooperative management method, device and system disclosed in CN201810322027.0, the method includes: the power supply service command platform receives power failure information of each information system through an interface, analyzes the power failure information according to the established association relationship of station-line-transformer-box-table-user aiming at different types of the power failure information, issues an analysis result to a power utilization user, and respectively pushes the analysis result to corresponding managers in a classified manner; the power supply service command platform receives the power failure event of the gateway of the area and/or the power failure event of the user which are actively reported, or receives the power failure event of the user which is reported and repaired and analyzes the user address, actively calls and detects the power failure state of the gateway of the area and/or the power failure state of the user, and carries out power failure fault auxiliary study and judgment; and performing power failure information cooperative management by combining the power failure information analysis result and the power failure fault auxiliary study and judgment result. The method carries out power failure analysis through the established station-line-transformer-box-table-user association relation, and the analysis result is sent to a user. Obviously, the user is the owner of the power failure address, and the actual user cannot acquire power failure and power restoration information in time.

Disclosure of Invention

The technical problem to be solved by the invention is how to provide a data acquisition and transmission method with strong real-time performance, large transmission capacity and multivariate data association.

The invention solves the technical problems through the following technical means:

the low-voltage power grid first-aid repair, operation and maintenance management method combining real-time power failure and recovery information comprises the following steps:

acquiring power failure and power restoration data of network equipment in real time, and studying and judging whether a power failure and power restoration event occurs according to the power failure and power restoration data;

step two, if no power failure and power restoration event occurs, the research and judgment are finished; if a power failure and power restoration event occurs, processing in the third step is carried out;

analyzing event information according to the power failure recovery data, wherein the event information at least comprises an event type, an event area, a power failure account number and occurrence time;

step four, judging whether the event is power failure or power restoration according to the event information, and if the event is a power failure event, simultaneously performing the processing of the step five and the step eight; if the power restoration event occurs, processing in the ninth step is carried out;

fifthly, judging the influence range according to the event area, the power failure house number and the power failure time information aiming at the power failure event;

step six, acquiring the mobile phone number of the actually affected person and the mobile phone number of the householder according to the influence range;

step seven, pushing real-time power failure information to actually affected personnel and householders;

and step eight, acquiring a rush-repair team group corresponding to the event region according to the event region, and pushing a rush-repair task to the rush-repair team group.

And step nine, aiming at the power restoration event, pushing power restoration information to actual affected personnel and householders.

The invention combines the research and judgment result of the real-time power failure and power restoration, senses the occurrence of the power failure and power restoration events in real time, utilizes the operator GPS or the network equipment base station to access and position actual personnel in the corresponding area, accurately senses the personnel influenced by the power failure events, combines the progress feedback of the emergency repair personnel and the verification of the power restoration events, pushes the emergency repair condition to the actual influenced users in real time, realizes the accurate and humanized pushing of the information, improves the service quality and reduces the occurrence of complaint events.

Further, the specific method for determining the influence range in the fifth step is as follows:

5.1 judging that the power failure occurs in a large range when the distance does not exceed a set threshold value by combining the geographical position coordinates during the power failure within the set close time; overlapping the areas of the power failure events to be used as the influence range of the large-scale power failure event;

5.2 if only a single power failure event occurs in the close time or the close position, analyzing the building information corresponding to the power failure users according to the power failure user number, and if the power failure users are distributed in multiple buildings, judging that the power failure occurs in the community;

and 5.3, if the power failure users are distributed in a single building, continuously analyzing the distribution floors of the power failure users, and if the power failure users are distributed on all the floors, judging that the building has power failure, otherwise, judging that the floors have power failure.

Further, in the sixth step, if the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected person specifically includes:

the method 1, according to longitude and latitude information of a power failure event geographic position, combining received GPS positioning data of a user mobile phone to determine a mobile phone identification code of an affected person, combining an operator account with the mobile phone identification code to obtain user information, and determining a mobile phone number of the affected person;

the method 2 further determines the affected personnel according to the information of the base station accessed by the mobile phone of the user and the historical data of the GPS data:

the method 2.1 utilizes the historical data of the information of the access base station of the mobile phone of the user, screens the access base station with high frequency according to the access frequency and duration, and determines the geographic range and time of the resident user by combining the geographic position and the coverage range of the base station;

the method 2.2 obtains the action track of the user according to the GPS positioning function of the mobile phone of the user; determining a commonly used action track of the user according to data generated by superposition by superposing historical action tracks of the user;

the method 2.3 combines the user resident geographic range and the action track, further superposes the geographic information data, and the user resident area and the appearance time are accurate;

the method 2.4 is used for screening matched users according to the occurrence time of the power failure event and the longitude and latitude information of the geographic position and by combining the user resident area and the occurrence time obtained by analyzing in the method 2.3, and obtaining the mobile phone numbers of the users;

in the method 1 or the method 2, one of them is selected.

Further, if the power outage time is non-floor power outage, the method for acquiring the mobile phone number of the actually affected person may further be:

and 3, summarizing the mobile phone numbers of the affected personnel obtained by the methods 1 and 2.4, removing repeated data, and determining the mobile phone numbers of the affected personnel finally.

Further, in the sixth step, if the power failure event is a floor power failure, the SN number of the network device installed on the corresponding floor in the power failure area and the mobile phone identification code of the connection device thereof are acquired through the operator account, the user information is acquired according to the mobile phone identification code and the operator account, and the mobile phone number of the affected person is determined.

Corresponding to the method, the invention also provides a low-voltage power grid rush-repair operation and maintenance pipeline system combining real-time power failure and recovery information, which comprises the following steps:

the data acquisition module acquires power failure and power restoration data of the network equipment in real time and studies and judges whether a power failure and power restoration event occurs or not according to the power failure and power restoration data;

the real-time power failure and power restoration studying and judging module is used for finishing studying and judging if no power failure and power restoration event occurs; if a power failure and power restoration event occurs, analyzing event information according to power failure and power restoration data, wherein the event information at least comprises an event type, an event area, a power failure account number and occurrence time;

the management module judges whether the event is power failure or power restoration according to the event information, and if the event is the power failure event, the management module executes the influence judging module and the emergency repair operation function module simultaneously; if the power restoration event happens, the power restoration message is pushed to the affected personnel and the householder;

the influence judging module is used for judging the influence range according to the event area, the power failure house number and the power failure time information aiming at the power failure event;

the personnel information acquisition module is used for acquiring the mobile phone number of the actually influenced personnel and the mobile phone number of the householder according to the influence range;

and the emergency repair operation functional module acquires a corresponding area emergency repair team according to the event area and pushes an emergency repair task to the emergency repair team.

Further, the specific method for determining the influence range in the influence determination module is as follows:

5.1 judging that the power failure occurs in a large range when the distance does not exceed a set threshold value by combining the geographical position coordinates during the power failure within the set close time; overlapping the areas of the power failure events to be used as the influence range of the large-scale power failure event;

5.2 if only a single power failure event occurs in the close time or the close position, analyzing the building information corresponding to the power failure users according to the power failure user number, and if the power failure users are distributed in multiple buildings, judging that the power failure occurs in the community;

and 5.3, if the power failure users are distributed in a single building, continuously analyzing the distribution floors of the power failure users, and if the power failure users are distributed on all the floors, judging that the building has power failure, otherwise, judging that the floors have power failure.

Further, in the staff information obtaining module, if the power failure time is non-floor power failure, the method for obtaining the mobile phone number of the actually affected staff specifically comprises the following steps:

the method 1, according to longitude and latitude information of a power failure event geographic position, combining received GPS positioning data of a user mobile phone to determine a mobile phone identification code of an affected person, combining an operator account with the mobile phone identification code to obtain user information, and determining a mobile phone number of the affected person;

the method 2 further determines the affected personnel according to the information of the base station accessed by the mobile phone of the user and the historical data of the GPS data:

the method 2.1 utilizes the historical data of the information of the access base station of the mobile phone of the user, screens the access base station with high frequency according to the access frequency and duration, and determines the geographic range and time of the resident user by combining the geographic position and the coverage range of the base station;

the method 2.2 obtains the action track of the user according to the GPS positioning function of the mobile phone of the user; determining a commonly used action track of the user according to data generated by superposition by superposing historical action tracks of the user;

the method 2.3 combines the user resident geographic range and the action track, further superposes the geographic information data, and the user resident area and the appearance time are accurate;

the method 2.4 is used for screening matched users according to the occurrence time of the power failure event and the longitude and latitude information of the geographic position and by combining the user resident area and the occurrence time obtained by analyzing in the method 2.3, and obtaining the mobile phone numbers of the users;

in the method 1 or the method 2, one of them is selected.

Further, if the power outage time is non-floor power outage, the method for acquiring the mobile phone number of the actually affected person may further be:

and 3, summarizing the mobile phone numbers of the affected personnel obtained by the methods 1 and 2.4, removing repeated data, and determining the mobile phone numbers of the affected personnel finally.

Further, in the staff information acquisition module, if the power failure event is floor power failure, the SN number of the network device installed on the corresponding floor in the power failure area and the mobile phone identification code of the connection device thereof are acquired through the operator account, and according to the mobile phone identification code, the user information is acquired by combining the operator account, and the mobile phone number of the affected staff is determined.

The invention has the advantages that:

the invention combines the research and judgment result of the real-time power failure and power restoration, senses the occurrence of the power failure and power restoration events in real time, utilizes the operator GPS or the network equipment base station to access and position actual personnel in the corresponding area, accurately senses the personnel influenced by the power failure events, combines the progress feedback of the emergency repair personnel and the verification of the power restoration events, pushes the emergency repair condition to the actual influenced users in real time, realizes the accurate and humanized pushing of the information, improves the service quality and reduces the occurrence of complaint events.

Drawings

Fig. 1 is a flow chart of a low-voltage power grid emergency maintenance operation and maintenance management method in combination with real-time power failure and restoration information in the embodiment of the present invention.

Detailed Description

In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are some embodiments of the present invention, but not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

The embodiment discloses a low-voltage power grid first-aid repair, operation and maintenance management method combining real-time power failure and power restoration information, which comprises the following steps:

acquiring power failure and power restoration data of network equipment in real time, and studying and judging whether a power failure and power restoration event occurs according to the power failure and power restoration data;

step two, if no power failure and power restoration event occurs, the research and judgment are finished; if a power failure and power restoration event occurs, processing in the third step is carried out;

analyzing event information according to the power failure recovery data, wherein the event information at least comprises an event type, an event area, a power failure account number and occurrence time;

step four, judging whether the event is power failure or power restoration according to the event information, and if the event is a power failure event, simultaneously performing the processing of the step five and the step eight; if the power restoration event occurs, processing in the ninth step is carried out;

fifthly, judging the influence range according to the event area, the power failure house number and the power failure time information aiming at the power failure event;

the specific judgment method comprises the following steps:

5.1 when each power failure occurs within a set close time (such as 1 minute), and the distance does not exceed a set threshold (such as 2 kilometers) by combining the geographic position coordinates, determining a large-range power failure event; overlapping the areas of the power failure events to be used as the influence range of the large-scale power failure event;

5.2 if only a single power failure event occurs in the close time or the close position, analyzing the building information corresponding to the power failure users according to the power failure user number, and if the power failure users are distributed in multiple buildings, judging that the power failure occurs in the community;

and 5.3, if the power failure users are distributed in a single building, continuously analyzing the distribution floors of the power failure users, and if the power failure users are distributed on all the floors, judging that the building has power failure, otherwise, judging that the floors have power failure.

Step six, acquiring the mobile phone number of the actually affected person and the mobile phone number of the householder according to the influence range; the method specifically comprises the following steps:

case 1

If the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected person specifically comprises the following steps:

the method 1, according to longitude and latitude information of a power failure event geographic position, combining received GPS positioning data of a user mobile phone to determine a mobile phone identification code of an affected person, combining an operator account with the mobile phone identification code to obtain user information, and determining a mobile phone number of the affected person;

the method 2 further determines the affected personnel according to the information of the base station accessed by the mobile phone of the user and the historical data of the GPS data:

the method 2.1 utilizes the historical data of the information of the access base station of the mobile phone of the user, screens the access base station with high frequency according to the access frequency and duration, and determines the geographic range and time of the resident user by combining the geographic position and the coverage range of the base station;

the method 2.2 obtains the action track of the user according to the GPS positioning function of the mobile phone of the user; determining a commonly used action track of the user according to data generated by superposition by superposing historical action tracks of the user;

the method 2.3 combines the user resident geographic range and the action track, further superposes the geographic information data, and the user resident area and the appearance time are accurate;

the method 2.4 is used for screening matched users according to the occurrence time of the power failure event and the longitude and latitude information of the geographic position and by combining the user resident area and the occurrence time obtained by analyzing in the method 2.3, and obtaining the mobile phone numbers of the users;

and 3, summarizing the mobile phone numbers of the affected personnel obtained by the methods 1 and 2.4, removing repeated data, and determining the mobile phone numbers of the affected personnel finally.

In this embodiment, the method 1, the method 2, or the method 3 may be selected alternatively, where the method 3 is optimal, so as to avoid missing resident information.

Case 2

And if the power failure event is floor power failure, acquiring the SN number of the network equipment installed on the corresponding floor of the power failure area and the mobile phone identification code of the connecting equipment thereof through the operator account, acquiring user information according to the mobile phone identification code and the operator account, and determining the mobile phone number of the affected personnel.

Step seven, pushing real-time power failure information to actually affected personnel and householders;

step eight, according to the event region, acquiring a corresponding region rush-repair team group, and pushing a rush-repair task to the rush-repair team group, specifically:

firstly, calling a basic ledger according to an event area, acquiring a responsible person and an emergency repair team of a corresponding area, automatically appointing an emergency repair plan according to task arrangement of each emergency repair team, assigning the emergency repair team, and sending a power failure event and emergency repair task information to the responsible person and a person responsible for the emergency repair team; and checking the detailed plan and the task arrangement by related personnel of the emergency repair team, timely arriving at the site for emergency repair, and performing site verification, emergency repair progress and emergency repair result feedback to a responsible person in real time.

And step nine, after the first-aid repair work is finished, the power restoration information is pushed to actual affected personnel and householders.

Corresponding to the method, the invention also discloses a low-voltage power grid rush-repair operation and maintenance pipeline system combining real-time power failure and recovery information, which comprises the following steps:

the data acquisition module collects data through an upstream acquisition system when the network equipment is powered off or power restored, and forwards the data to the real-time power-off and power-restoration studying and judging module;

the real-time power failure and power restoration studying and judging module is used for studying, judging and analyzing the received power failure and power restoration data of the network equipment and judging whether a power failure and power restoration event occurs or not; if no power failure and power restoration event occurs, the research and judgment are finished, and no subsequent treatment is carried out; if a power failure and power restoration event occurs, analyzing the power failure and power restoration data to obtain event information such as at least an event type, an event area, a power failure account number, occurrence time and the like, and pushing all the event information to a management module;

the management module receives all event information, and if the event is a power failure event, the management module executes the influence judgment module and the emergency repair operation function module simultaneously; if the power restoration event happens, the management module pushes the power restoration event information and the contact mode of related personnel to the message notification module according to the task arrangement corresponding to the power failure event, and pushes the power restoration event information to the emergency repair operation function module; after receiving the data, the message notification module sends the power restoration event information to relevant personnel of the emergency repair work in a contact mode such as a mobile phone mailbox and informs the relevant personnel of the emergency repair work to verify the power restoration event; after receiving the verification information, the emergency repair worker performs verification operation through the emergency repair work function module and pushes data to the management module; the management module receives the verification information, and if the power supply is not recovered in the field verification, the result of the double-television study is ignored; if the power supply is recovered through field verification, the power failure event state is modified into the recovered power supply state, meanwhile, the recovered power supply information is pushed to a message notification module in combination with data of affected personnel and the number of the householder mobile phone, the power restoration event information is sent to a specified object, and notification of the recovered power supply information is carried out.

The influence judging module is used for collecting information such as the occurrence time, the power failure area, the power failure number and the like corresponding to each power failure event aiming at the power failure event, and judging the influence range of the event according to the occurrence time of each power failure time and the geographical position corresponding to the power failure area; the specific judgment logic is as follows:

when the distance does not exceed a set threshold (such as 2 kilometers) by combining the geographic position coordinates, the power failure in a large range is judged. And overlapping the areas of the power failure events to be used as the influence range of the large-range power failure event.

If only a single power failure event exists in the close time or the close position, analyzing the building information corresponding to the power failure users according to the power failure user number, and if the power failure users are distributed in multiple buildings, judging that the power failure occurs in the community;

if the power failure users are distributed in a single building, continuously analyzing the power failure user distribution floors, if the power failure users are distributed on all the floors, judging that the building has power failure, and if not, judging that the floors have power failure;

the personnel information acquisition module, influence judge the module and send the time of occurrence, influence scope and the positional information of power failure incident to operator's user orientation module, operator's user orientation module is according to the classification of positional information and incident influence scope, obtains influenced personnel's cell-phone number, and the concrete method is as follows:

case 1

If the power failure time is non-floor power failure, the method for acquiring the mobile phone number of the actually affected person specifically comprises the following steps:

the method 1, according to longitude and latitude information of a power failure event geographic position, combining received GPS positioning data of a user mobile phone to determine a mobile phone identification code of an affected person, combining an operator account with the mobile phone identification code to obtain user information, and determining a mobile phone number of the affected person;

the method 2 further determines the affected personnel according to the information of the base station accessed by the mobile phone of the user and the historical data of the GPS data:

the method 2.1 utilizes the historical data of the information of the access base station of the mobile phone of the user, screens the access base station with high frequency according to the access frequency and duration, and determines the geographic range and time of the resident user by combining the geographic position and the coverage range of the base station;

the method 2.2 obtains the action track of the user according to the GPS positioning function of the mobile phone of the user; determining a commonly used action track of the user according to data generated by superposition by superposing historical action tracks of the user;

the method 2.3 combines the user resident geographic range and the action track, further superposes the geographic information data, and the user resident area and the appearance time are accurate;

the method 2.4 is used for screening matched users according to the occurrence time of the power failure event and the longitude and latitude information of the geographic position and by combining the user resident area and the occurrence time obtained by analyzing in the method 2.3, and obtaining the mobile phone numbers of the users;

and 3, summarizing the mobile phone numbers of the affected personnel obtained by the methods 1 and 2.4, removing repeated data, and determining the mobile phone numbers of the affected personnel finally.

In this embodiment, the method 1, the method 2, or the method 3 may be selected alternatively, where the method 3 is optimal, so as to avoid missing resident information.

Case 2

And if the power failure event is floor power failure, acquiring the SN number of the network equipment installed on the corresponding floor of the power failure area and the mobile phone identification code of the connecting equipment thereof through the operator account, acquiring user information according to the mobile phone identification code and the operator account, and determining the mobile phone number of the affected personnel. And then sending the final phone number of the affected person to a management module.

The management module calls the basic standing book information module, acquires the phone number of the householder according to the power-off user number, collects the phone number of the affected person, and pushes the push message data and the phone number of the sending object to the message notification module; in this embodiment, the basic standing book information module at least includes a user address and a phone of a user owner. After receiving the data, the message notification module sends a message to a designated object through a short message of a mobile phone, and sends a message notification of a real-time power failure and power restoration event to personnel and a householder directly affected by the power failure and power restoration event;

the emergency repair work function module calls a basic ledger information module according to information such as an event area and the like aiming at a power failure event, acquires a responsible person and an emergency repair team group in a corresponding area, automatically specifies an emergency repair plan according to task arrangement of each emergency repair team group, assigns the emergency repair team group, pushes the power failure event, task information and a contact mode of related personnel to the message notification module, and after receiving data, the message notification module sends the emergency repair plan and the task information to the related responsible person through the contact mode such as a mobile phone mailbox and the like, notifies the related personnel of the occurrence of the power failure event and carries out emergency repair work; the related personnel of the emergency repair operation can check the detailed plan and the task arrangement through the emergency repair operation module, perform field verification, emergency repair progress and treatment result feedback in real time, and push data to the management module; and after receiving the information such as verification, progress, result and the like, the management module combines the data of the affected personnel and the number of the householder mobile phone, pushes the data to the message notification module, sends the information such as real-time progress and the like to a specified object, and performs message notification of real-time emergency repair conditions.

The above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present 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 solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.

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