WO2023087771A1 - 一种停电类型自动识别并生成停电检修计划方法 - Google Patents

一种停电类型自动识别并生成停电检修计划方法 Download PDF

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WO2023087771A1
WO2023087771A1 PCT/CN2022/108309 CN2022108309W WO2023087771A1 WO 2023087771 A1 WO2023087771 A1 WO 2023087771A1 CN 2022108309 W CN2022108309 W CN 2022108309W WO 2023087771 A1 WO2023087771 A1 WO 2023087771A1
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power outage
maintenance
outage maintenance
time
monitoring terminal
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PCT/CN2022/108309
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English (en)
French (fr)
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万义飞
耿杰
李俊慧
周迪贵
孟椿智
李沁蔓
古哲德
庞奇华
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广西电网有限责任公司
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
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    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • G06Q10/06316Sequencing of tasks or work
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
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    • G06Q10/0631Resource planning, allocation, distributing or scheduling for enterprises or organisations
    • G06Q10/06312Adjustment or analysis of established resource schedule, e.g. resource or task levelling, or dynamic rescheduling
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
    • G06Q50/06Energy or water supply

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  • the invention relates to the technical field of electric power information, in particular to a method for automatically identifying the type of power outage and generating a power outage maintenance plan.
  • the present invention provides a method for automatically identifying the type of power outage and generating a power outage maintenance plan, which realizes the reasonable arrangement of the power outage maintenance plan, and optimizes the arrangement results of the power outage maintenance plan to more effectively avoid power outages
  • the power outage for maintenance is too long.
  • the monitoring terminal acquires power outage maintenance data information
  • the monitoring terminal performs power outage maintenance time overlap identification and determination processing according to the power outage maintenance type, and generates a power outage maintenance time overlap identification and determination processing result;
  • the monitoring terminal arranges the outage maintenance plan according to the identification and judgment processing result, and generates an arrangement result
  • the monitoring terminal optimizes the outage maintenance plan for the arrangement results, and automatically generates a report
  • step S101 to step S105 the monitoring terminal arranges the outage maintenance plan, optimizes the result of the arrangement, and automatically generates a report on the outage maintenance plan.
  • the data information of power outage maintenance includes regional power outage maintenance, power outage maintenance type, power outage maintenance time and power outage maintenance times.
  • the type of outage maintenance includes planned outage maintenance and unplanned outage maintenance.
  • the type identification and determination processing of power outage maintenance includes: the monitoring terminal performs power outage maintenance type identification for regional power outage maintenance, and if the characteristic signal of identifying regional power outage maintenance is a planned feature, then the monitoring terminal determines that the regional power outage maintenance is a planned power outage maintenance; The type of power outage maintenance is identified for regional power outage maintenance. If the characteristic signal for identifying regional power outage maintenance is an unplanned feature, the monitoring terminal determines that the regional power outage maintenance is a planned power outage maintenance.
  • the identification and determination processing results of overlapped power outage maintenance time include: class I power outage maintenance, class II power outage maintenance, and class III power outage maintenance.
  • the optimization processing of the power outage maintenance plan includes: level I power outage maintenance optimization processing, level II power outage maintenance optimization processing, and level III power outage maintenance optimization processing.
  • the monitoring terminal If the monitoring terminal recognizes that the number of power outages in the areas of unplanned power outages and maintenance is different, the monitoring terminal generates a new power outage time based on the time of power outages in the area with the most occurrences, and updates the unplanned power outages. The power outage maintenance time for maintenance, and automatically generate reports.
  • the level II power outage maintenance optimization processing includes: if the monitoring terminal recognizes that the number of power outage maintenance in the unplanned power outage maintenance area is the same, the monitoring terminal performs power outage maintenance according to the power outage maintenance time of the unplanned power outage maintenance for optimization processing, if One of the unplanned power outage maintenance areas has a larger proportion of power outage maintenance overlap time than the other unplanned power outage maintenance area power outage maintenance, then the monitoring terminal will use one of the areas with a large proportion of power outage maintenance overlap time.
  • Maintenance time Generate a new power outage maintenance time, update the power outage maintenance time of unplanned power outage maintenance and planned power outage maintenance, and automatically generate reports;
  • the monitoring terminal If the monitoring terminal recognizes that the number of power outages and maintenance in areas with unplanned power outages and maintenance is different, the monitoring terminal generates a new power outage and maintenance time based on the time of power outages and maintenance in the area with the most unplanned power outages and maintenance, and updates the unplanned power outages The power outage maintenance time of the regional power outage maintenance for maintenance and planned power outage maintenance, and automatically generate reports.
  • the monitoring terminal If the monitoring terminal recognizes that the number of power outage maintenance in the unplanned power outage maintenance area is different, the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the area with the most occurrences, and updates the planned power outage maintenance area power outage maintenance outage maintenance time, and automatically generate reports.
  • Beneficial effects of the present invention a method for automatically identifying the type of power outage and generating a power outage maintenance plan, the monitoring terminal acquires power outage maintenance data information; the monitoring terminal performs power outage maintenance type identification and judgment processing on the power outage maintenance data information; the monitoring terminal performs power outage according to the power outage maintenance type The maintenance time overlap identification and judgment processing, and the identification and judgment processing results are generated; the monitoring terminal arranges the outage maintenance plan according to the identification and judgment processing results, and generates the arrangement results; the monitoring terminal optimizes the outage maintenance plan for the arrangement results, and automatically generates reports; Realize the reasonable arrangement of the power outage maintenance plan, and optimize the arrangement results of the power outage maintenance plan to more effectively avoid the power outage time of the power outage maintenance being too long.
  • a method for automatically identifying and generating a power outage maintenance plan for a power outage type comprising the following steps:
  • the monitoring terminal performs power outage maintenance type identification and judgment processing on the power outage maintenance data information.
  • the power outage maintenance types include planned power outage maintenance and unplanned power outage maintenance;
  • the power outage maintenance type identification and judgment processing includes: the monitoring terminal performs power outage maintenance type identification for the first area power outage maintenance, If the characteristic signal for identifying the power outage maintenance in the first area is a planned feature, then the monitoring terminal determines that the power outage maintenance in the first area is a planned power outage maintenance; If the characteristic signal is an unplanned characteristic, then the monitoring terminal determines that the power outage maintenance in the second area is a planned power outage maintenance.
  • the monitoring terminal performs power outage maintenance time overlap identification and determination processing according to the power outage maintenance type, and generates a power outage maintenance time overlap identification and determination processing result;
  • the monitoring terminal performs power outage maintenance time overlap identification and judgment processing according to the power outage maintenance type.
  • the power outage maintenance type includes planned power outage maintenance and unplanned power outage maintenance; if the power outage maintenance type in the first area is planned power outage maintenance, the power outage maintenance in the second area The maintenance type is unplanned power outage maintenance, if the power outage maintenance type of the third area power outage maintenance is planned power outage maintenance, the power outage maintenance type of the fourth area power outage maintenance is unplanned power outage maintenance; if the maintenance time of the second area power outage maintenance is identified and the first The maintenance time of the power outage maintenance in the four areas overlaps with the power outage maintenance time, then the monitoring terminal determines that the power outage maintenance in the second area and the power outage maintenance in the fourth area are Class I power outage maintenance; If there is a power outage maintenance time overlap in the maintenance time of , the monitoring terminal determines that the power outage maintenance in the first area and the power outage maintenance in the second area are class II power outage
  • the monitoring terminal arranges and processes the power outage maintenance plan according to the identification and processing results, and the power outage maintenance plan is programmed and processed according to the priority of power outage maintenance, and generates the arrangement result;
  • the priority of power outage maintenance is: the priority of power outage maintenance for level I power outage maintenance is higher than that of II Level 2 power outage maintenance, and the priority of power outage maintenance for level II power outage maintenance is higher than that of level III power outage maintenance.
  • the monitoring terminal optimizes the outage maintenance plan for the arrangement results, and automatically generates a report
  • the monitoring terminal performs power outage maintenance plan optimization processing on the arrangement results, and automatically generates reports; power outage maintenance plan optimization processing includes: level I power outage maintenance optimization processing, level II power outage maintenance optimization processing, and level III power outage maintenance optimization processing.
  • Level I power outage maintenance optimization processing includes: if the monitoring terminal recognizes that the number of power outage maintenance in the unplanned power outage maintenance area is the same, the monitoring terminal performs power outage maintenance optimization according to the proportion of power outage maintenance overlap time. If the proportion of overlapping time of outage maintenance in one area is larger than that in another area, the monitoring terminal will generate a new outage maintenance time according to the outage maintenance time of one of the areas with a large proportion of outage maintenance overlap time, and update the unplanned outage maintenance time. Power outage maintenance time for regional power outage maintenance, and automatically generate reports;
  • the monitoring terminal If the monitoring terminal recognizes that the number of power outages in the areas of unplanned power outages and maintenance is different, the monitoring terminal generates a new power outage time based on the time of power outages in the area with the most occurrences, and updates the unplanned power outages. The power outage maintenance time for maintenance, and automatically generate reports.
  • the monitoring terminal will optimize the power outage maintenance according to the proportion of the power outage maintenance overlap time. If the power outage maintenance overlap time in the second area If the proportion is larger than that of the fourth area’s power outage maintenance, the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the second area, updates the power outage maintenance time of the second area power outage maintenance and the fourth area power outage maintenance, and automatically Generate a report; if the overlapping time of power outage maintenance in the fourth area is larger than that in the second area, the monitoring terminal will generate a new power outage maintenance time according to the power outage maintenance time in the fourth area, and update the power outage time in the second area The outage maintenance time of maintenance and the fourth area power outage maintenance, and automatically generate reports.
  • the monitoring terminal identifies the second area power outage maintenance occurrences the most, regardless of the second area power outage maintenance and The overlapping time of power outage maintenance in the fourth area is the same as or different from that of the second area power outage maintenance and the sixth area.
  • the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time in the second area, and updates the second The power outage maintenance time of the area power outage maintenance, the fourth area power outage maintenance and the sixth area power outage maintenance, and the report is automatically generated.
  • Level II power outage maintenance optimization processing includes: if the monitoring terminal recognizes that the number of power outage maintenance in the unplanned power outage maintenance area is the same, the monitoring terminal performs power outage maintenance according to the power outage maintenance time of the unplanned power outage maintenance. If the overlapping time of power outage maintenance in the planned power outage maintenance area is larger than the power outage maintenance in the other unplanned power outage maintenance area, the monitoring terminal will generate according to the power outage maintenance time of one of the areas with a large proportion of power outage maintenance overlap time New power outage maintenance time, update the power outage maintenance time of unplanned power outage maintenance and planned power outage maintenance, and automatically generate reports;
  • the monitoring terminal will optimize the power outage maintenance time according to the power outage maintenance time of the unplanned power outage maintenance; if the first area power outage maintenance is a planned power outage Maintenance, the second area power outage maintenance is an unplanned power outage maintenance, then the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the second area, and updates the power outage maintenance time of the first area power outage maintenance and the second area power outage maintenance, And automatically generate reports.
  • the power outage maintenance in the first area and the power outage maintenance in the second area, the power outage maintenance in the first area and the power outage maintenance in the fourth area are class II power outage maintenance, the power outage maintenance in the first area is a planned outage maintenance, and the power outage maintenance in the second area and the power outage in the fourth area
  • the maintenance is an unplanned power outage maintenance; the monitoring terminal optimizes the power outage maintenance according to the proportion of the power outage maintenance overlap time of the unplanned power outage maintenance.
  • the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the second area power outage maintenance, updates the power outage maintenance time of the second area power outage maintenance and the fourth area power outage maintenance, and automatically generates a report; If the proportion of maintenance overlapping time is larger than that of the second area power outage maintenance, the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the fourth area, and updates the power outage maintenance time of the second area power outage maintenance and the fourth area power outage maintenance , and the report is automatically generated.
  • the regional power outage maintenance is a planned power outage maintenance, the second area power outage maintenance and the fourth area power outage maintenance are unplanned power outage maintenance; the monitoring terminal performs optimization processing according to the occurrence of the unplanned power outage maintenance in the area with the largest number of power outage maintenance, and the monitoring terminal identifies the second area
  • the power outage maintenance occurs most frequently, and the monitoring terminal generates a new power outage maintenance time according to the second area power outage maintenance, and updates the power outage maintenance time of the first area power outage maintenance, the second area power outage maintenance, the third area power outage maintenance and the fourth area power outage maintenance, And automatically generate reports.
  • Level III power outage maintenance optimization processing includes: if the monitoring terminal recognizes that the number of power outage maintenance in the planned power outage maintenance area is the same, the monitoring terminal performs power outage maintenance optimization processing according to the proportion of power outage maintenance overlap time, if one of the areas is out of power for maintenance If the proportion of power outage maintenance overlapping time is larger than that of other areas, the monitoring terminal will generate a new power outage maintenance time according to the power outage maintenance time of one of the areas with a large proportion of power outage maintenance overlap time, and update the power outage in the planned power outage maintenance area The power outage maintenance time for maintenance, and automatically generate reports;
  • the monitoring terminal If the monitoring terminal recognizes that the number of power outage maintenance in the unplanned power outage maintenance area is different, the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the area with the most occurrences, and updates the planned power outage maintenance area power outage maintenance outage maintenance time, and automatically generate reports.
  • the monitoring terminal will optimize the power outage maintenance according to the proportion of power outage maintenance overlap time. If the power outage maintenance overlap time of the first area If the proportion is larger than that of the third area’s power outage maintenance, the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time of the first area, updates the power outage maintenance time of the first area power outage maintenance and the third area power outage maintenance, and automatically Generate a report; if the proportion of the overlapping time of power outage maintenance in the third area is larger than that in the first area, the monitoring terminal will generate a new power outage maintenance time according to the power outage maintenance time in the third area, and update the power outage in the first area The outage maintenance time of maintenance and third area power outage maintenance, and automatically generate reports.
  • the monitoring terminal recognizes that the third area has the most occurrences of power outage maintenance, regardless of the first area power outage maintenance and The overlapping time of power outage maintenance in the third area is the same as or different from that of the third area power outage maintenance and the fifth area power outage maintenance.
  • the monitoring terminal generates a new power outage maintenance time according to the power outage maintenance time in the third area, and updates the first The power outage maintenance time of the area power outage maintenance, the third area power outage maintenance and the fifth area power outage maintenance, and the report is automatically generated.

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Abstract

本发明公开了一种停电类型自动识别并生成停电检修计划方法,包括以下步骤:监测终端获取停电检修数据信息(S101);监测终端对停电检修数据信息进行停电检修类型识别判定处理(S102);监测终端根据停电检修类型进行停电检修时间重叠识别判定处理,并生成停电检修时间重叠识别判定处理结果(S103);监测终端根据识别判定处理结果进行停电检修计划编排处理,并生成编排结果(S104);监测终端对编排结果进行停电检修计划优化处理,并自动生成报告(S105);实现了对停电检修计划进行合理编排,通过对停电检修计划编排结果进行优化处理,更加有效避免停电检修的停电时间过长。

Description

一种停电类型自动识别并生成停电检修计划方法 技术领域
本发明涉及电力信息技术领域,尤其涉及一种停电类型自动识别并生成停电检修计划方法。
背景技术
目前,电力设备及线路的停电检修计划大多数采用传统的人工分析和工作经验来进行判断。由于未对计划停电检修和非计划停电检修进行停电检修的合理安排,有些电力设备及线路出现异常状态需要进行停电检修时,由于缺少非计划停电检修和计划停电检修的合理编排,出现多次反复停电,导致因停电检修的停电时间过长,影响区域用户正常用电。
发明内容
为了克服现有技术的不足,本发明提供了一种停电类型自动识别并生成停电检修计划方法,实现了对停电检修计划进行合理编排,通过对停电检修计划编排结果进行优化处理,更加有效避免停电检修的停电时间过长。
为了实现上述发明目的,本发明采用以下技术方案:
S101、监测终端获取停电检修数据信息;
S102、监测终端对停电检修数据信息进行停电检修类型识别判定处理;
S103、监测终端根据停电检修类型进行停电检修时间重叠识别判定处理,并生成停电检修时间重叠识别判定处理结果;
S104、监测终端根据识别判定处理结果进行停电检修计划编排处理,并生成编排结果;
S105、监测终端对编排结果进行停电检修计划优化处理,并自动生成报告;
步骤S101至步骤S105,监测终端对停电检修计划进行编排处理,并对编排处理 结果进行优化处理,自动停电检修计划生成报告。
进一步的,停电检修数据信息包括区域停电检修、停电检修类型、停电检修时间和停电检修次数。
进一步的,停电检修类型包括计划停电检修和非计划停电检修。
进一步的,停电检修类型识别判定处理包括:监测终端对区域停电检修进行停电检修类型识别,若识别区域停电检修的特征信号为计划特征,则监测终端判定区域停电检修为计划停电检修;监测终端对区域停电检修进行停电检修类型识别,若识别区域停电检修的特征信号为非计划特征,则监测终端判定区域停电检修为计划停电检修。
进一步的,停电检修时间重叠识别判定处理结果包括:Ⅰ级停电检修、Ⅱ级停电检修和Ⅲ级停电检修。
进一步的,停电检修时间重叠识别判定处理包括:若识别非计划停电检修的区域停电检修的检修时间与非计划停电检修的区域停电检修的检修时间存在停电检修时间重叠,则监测终端判定为Ⅰ级停电检修;若识别计划停电检修的区域停电检修的检修时间与非计划停电检修的区域停电检修的检修时间存在停电检修时间重叠,则监测终端判定为Ⅱ级停电检修;若识别计划停电检修的区域停电检修的检修时间与计划停电检修的区域停电检修的检修时间存在停电检修时间重叠,则监测终端判定为Ⅲ级停电检修。
进一步的,停电检修计划编排处理包括:停电检修计划编排按照停电检修优先级进行编排处理,停电检修的优先级为:Ⅰ级停电检修的停电检修优先级优于Ⅱ级停电检修,Ⅱ级停电检修的停电检修优先级优于Ⅲ级停电检修。
进一步的,停电检修计划优化处理包括:Ⅰ级停电检修优化处理、Ⅱ级停电检修优化处理和Ⅲ级停电检修优化处理。
进一步的,Ⅰ级停电检修优化处理包括:若监测终端识别出非计划停电检修的区域停电检修出现的次数是相同的,监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若其中一个区域停电检修的停电检修重叠时间占比重比其他一个区域停电检修的大,则监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
若监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,监测终端根据出现次数最多的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
进一步的,Ⅱ级停电检修优化处理包括:若监测终端识别出非计划停电检修的区域停电检修出现的次数是相同的,监测终端根据非计划停电检修的停电检修时间进行停电检修进行优化处理,若其中一个非计划停电检修的区域停电检修的停电检修重叠时间占比重比其他一个非计划停电检修的区域停电检修的大,则监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修和计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
若监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,监测终端根据出现次数最多非计划停电检修的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修和计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
进一步的,Ⅲ级停电检修优化处理包括:若监测终端识别出计划停电检修的区域停电检修出现的次数是相同的,监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若其中一个区域停电检修的停电检修重叠时间占比重比其他一 个区域停电检修的大,则监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
若监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,监测终端根据出现次数最多的区域停电检修的停电检修时间生成新的停电检修时间,更新计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
本发明的有益效果:一种停电类型自动识别并生成停电检修计划方法,监测终端获取停电检修数据信息;监测终端对停电检修数据信息进行停电检修类型识别判定处理;监测终端根据停电检修类型进行停电检修时间重叠识别判定处理,并生成识别判定处理结果;监测终端根据识别判定处理结果进行停电检修计划编排处理,并生成编排结果;监测终端对编排结果进行停电检修计划优化处理,并自动生成报告;实现了对停电检修计划进行合理编排,通过对停电检修计划编排结果进行优化处理,更加有效避免停电检修的停电时间过长。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见的,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其它的附图。
图1是本发明一种停电类型自动识别并生成停电检修计划方法的步骤示意图。
具体实施方式
下面结合附图对本公开实施例进行详细描述。
以下通过特定的具体实例说明本公开的实施方式,本领域技术人员可由本说明书所揭露的内容轻易地了解本公开的其他优点与功效。显然,所描述的实施例仅仅 是本公开一部分实施例,而不是全部的实施例。本公开还可以通过另外不同的具体实施方式加以实施或应用,本说明书中的各项细节也可以基于不同观点与应用,在没有背离本公开的精神下进行各种修饰或改变。需说明的是,在不冲突的情况下,以下实施例及实施例中的特征可以相互组合。基于本公开中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
实施例一:
一种停电类型自动识别并生成停电检修计划方法,包括以下步骤:
S101、监测终端获取停电检修数据信息;
监测终端获取停电检修数据信息,停电检修数据信息包括区域停电检修、停电检修类型、停电检修时间和停电检修次数;区域停电检修包括第一区域停电检修、第二区域停电检修、第三区域停电检修……第N区域停电检修。
S102、监测终端对停电检修数据信息进行停电检修类型识别判定处理;
监测终端对停电检修数据信息进行停电检修类型识别判定处理,停电检修类型包括计划停电检修和非计划停电检修;停电检修类型识别判定处理包括:监测终端对第一区域停电检修进行停电检修类型识别,若识别第一区域停电检修的特征信号为计划特征,则监测终端判定第一区域停电检修为计划停电检修;监测终端对第二区域停电检修进行停电检修类型识别,若识别第二区域停电检修的特征信号为非计划特征,则监测终端判定第二区域停电检修为计划停电检修。
S103、监测终端根据停电检修类型进行停电检修时间重叠识别判定处理,并生成停电检修时间重叠识别判定处理结果;
监测终端根据停电检修类型进行停电检修时间重叠识别判定处理,停电检修类型包括计划停电检修和非计划停电检修;若第一区域停电检修的停电检修类型为计划停电检修,第二区域停电检修的停电检修类型为非计划停电检修,若第三区域停电检修的停电检修类型为计划停电检修,第四区域停电检修的停电检修类型为非计划停电检修;若识别第二区域停电检修的检修时间与第四区域停电检修的检修时间 存在停电检修时间重叠,则监测终端判定第二区域停电检修和第四区域停电检修为Ⅰ级停电检修;若识别第一区域停电检修的检修时间与第二区域停电检修的检修时间存在停电检修时间重叠,则监测终端判定第一区域停电检修和第二区域停电检修为Ⅱ级停电检修;若识别第一区域停电检修的检修时间与第三区域停电检修的检修时间存在停电检修时间重叠,则监测终端判定第一区域停电检修和第三区域停电检修为Ⅲ级停电检修。
S104、监测终端根据识别判定处理结果进行停电检修计划编排处理,并生成编排结果;
监测终端根据识别处理结果进行停电检修计划编排处理,停电检修计划编排按照停电检修优先级进行编排处理,并生成编排结果;停电检修的优先级为:Ⅰ级停电检修的停电检修优先级优于Ⅱ级停电检修,Ⅱ级停电检修的停电检修优先级优于Ⅲ级停电检修。
S105、监测终端对编排结果进行停电检修计划优化处理,并自动生成报告;
监测终端对编排结果进行停电检修计划优化处理,并自动生成报告;停电检修计划优化处理包括:Ⅰ级停电检修优化处理、Ⅱ级停电检修优化处理和Ⅲ级停电检修优化处理。
Ⅰ级停电检修优化处理包括:若监测终端识别出非计划停电检修的区域停电检修出现的次数是相同的,监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若其中一个区域停电检修的停电检修重叠时间占比重比其他一个区域停电检修的大,则监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
若监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,监测终端根据出现次数最多的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
若Ⅰ级停电检修只有第二区域停电检修和第四区域停电检修存在停电检修时间 重叠,监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若第二区域停电检修的停电检修重叠时间占比重比第四区域停电检修的大,则监测终端根据第二区域停电检修的停电检修时间生成新的停电检修时间,更新第二区域停电检修和第四区域停电检修的停电检修时间,并自动生成报告;若第四区域停电检修的停电检修重叠时间占比重比第二区域停电检修的大,则监测终端根据第四区域停电检修的停电检修时间生成新的停电检修时间,更新第二区域停电检修和第四区域停电检修的停电检修时间,并自动生成报告。
若第二区域停电检修和第四区域停电检修、第二区域停电检修和第六区域停电检修为Ⅰ级停电检修,监测终端识别出第二区域停电检修出现次数最多,无论第二区域停电检修和第四区域停电检修的停电检修重叠时间与第二区域停电检修和第六区域停电检修的相同或不相同,监测终端根据第二区域停电检修的停电检修时间生成新的停电检修时间,更新第二区域停电检修、第四区域停电检修和第六区域停电检修的停电检修时间,并自动生成报告。
Ⅱ级停电检修优化处理包括:若监测终端识别出非计划停电检修的区域停电检修出现的次数是相同的,监测终端根据非计划停电检修的停电检修时间进行停电检修进行优化处理,若其中一个非计划停电检修的区域停电检修的停电检修重叠时间占比重比其他一个非计划停电检修的区域停电检修的大,则监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修和计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
若监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,监测终端根据出现次数最多非计划停电检修的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修和计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
若Ⅱ级停电检修只有第一区域停电检修和第二区域停电检修存在停电检修时间重叠,监测终端根据非计划停电检修的停电检修时间进行停电检修进行优化处理; 若第一区域停电检修为计划停电检修,第二区域停电检修为非计划停电检修,则监测终端根据第二区域停电检修的停电检修时间生成新的停电检修时间,更新第一区域停电检修和第二区域停电检修的停电检修时间,并自动生成报告。
若第一区域停电检修和第二区域停电检修、第一区域停电检修和第四区域停电检修为Ⅱ级停电检修,第一区域停电检修为计划停电检修,第二区域停电检修和第四区域停电检修为非计划停电检修;监测终端根据非计划停电检修的停电检修重叠时间占比重进行停电检修进行优化处理,若第二区域停电检修的停电检修重叠时间占比重比第四区域停电检修的大,则监测终端根据第二区域停电检修的停电检修时间生成新的停电检修时间,更新第二区域停电检修和第四区域停电检修的停电检修时间,并自动生成报告;若第四区域停电检修的停电检修重叠时间占比重比第二区域停电检修的大,则监测终端根据第四区域停电检修的停电检修时间生成新的停电检修时间,更新第二区域停电检修和第四区域停电检修的停电检修时间,并自动生成报告。
若第一区域停电检修和第二区域停电检修、第二区域停电检修和第三区域停电检修、第一区域停电检修和第四区域停电检修为Ⅱ级停电检修,第一区域停电检修和第三区域停电检修为计划停电检修,第二区域停电检修和第四区域停电检修为非计划停电检修;监测终端根据非计划停电检修的区域停电检修出现次数最多进行优化处理,监测终端识别出第二区域停电检修出现次数最多,监测终端根据第二区域停电检修生成新的停电检修时间,更新第一区域停电检修、第二区域停电检修、第三区域停电检修和第四区域停电检修的停电检修时间,并自动生成报告。
Ⅲ级停电检修优化处理包括:若监测终端识别出计划停电检修的区域停电检修出现的次数是相同的,监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若其中一个区域停电检修的停电检修重叠时间占比重比其他一个区域停电检修的大,则监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
若监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,监测终端根据出现次数最多的区域停电检修的停电检修时间生成新的停电检修时间,更新计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
若Ⅲ级停电检修只有第一区域停电检修和第三区域停电检修存在停电检修时间重叠,监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若第一区域停电检修的停电检修重叠时间占比重比第三区域停电检修的大,则监测终端根据第一区域停电检修的停电检修时间生成新的停电检修时间,更新第一区域停电检修和第三区域停电检修的停电检修时间,并自动生成报告;若第三区域停电检修的停电检修重叠时间占比重比第一区域停电检修的大,则监测终端根据第三区域停电检修的停电检修时间生成新的停电检修时间,更新第一区域停电检修和第三区域停电检修的停电检修时间,并自动生成报告。
若第一区域停电检修和第三区域停电检修、第三区域停电检修和第五区域停电检修为Ⅲ级停电检修,监测终端识别出第三区域停电检修出现次数最多,无论第一区域停电检修和第三区域停电检修的停电检修重叠时间与第三区域停电检修和第五区域停电检修的相同或不相同,监测终端根据第三区域停电检修的停电检修时间生成新的停电检修时间,更新第一区域停电检修、第三区域停电检修和第五区域停电检修的停电检修时间,并自动生成报告。
在本发明的描述中,需要说明的是,术语“第一”、“第二”、“第三”、“第四”、“第五”和“第六”仅用于区分描述,而不能理解为指示或暗示相对重要性。
以上仅为说明本发明的实施方式,并不用于限制本发明,对于本领域的技术人员来说,凡在本发明的精神和原则之内,不经过创造性劳动所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种停电类型自动识别并生成停电检修计划方法,其特征在于,包括以下步骤:
    S101、监测终端获取停电检修数据信息;
    S102、所述监测终端对停电检修数据信息进行停电检修类型识别判定处理;
    S103、所述监测终端根据停电检修类型进行停电检修时间重叠识别判定处理,并生成停电检修时间重叠识别判定处理结果;
    S104、所述监测终端根据识别判定处理结果进行停电检修计划编排处理,并生成编排结果;
    S105、所述监测终端对编排结果进行停电检修计划优化处理,并自动生成报告。
  2. 根据权利要求1所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述停电检修类型包括计划停电检修和非计划停电检修。
  3. 根据权利要求1所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述停电检修类型识别判定处理包括:所述监测终端对区域停电检修进行停电检修类型识别,若识别区域停电检修的特征信号为计划特征,则所述监测终端判定区域停电检修为计划停电检修;所述监测终端对区域停电检修进行停电检修类型识别,若识别区域停电检修的特征信号为非计划特征,则所述监测终端判定区域停电检修为计划停电检修。
  4. 根据权利要求1所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述停电检修时间重叠识别判定处理结果包括:Ⅰ级停电检修、Ⅱ级停电检修和Ⅲ级停电检修。
  5. 根据权利要求1所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述停电检修时间重叠识别判定处理包括:若识别非计划停电检修的区域停电检修的检修时间与非计划停电检修的区域停电检修的检修时间存在 停电检修时间重叠,则所述监测终端判定为Ⅰ级停电检修;若识别计划停电检修的区域停电检修的检修时间与非计划停电检修的区域停电检修的检修时间存在停电检修时间重叠,则所述监测终端判定为Ⅱ级停电检修;若识别计划停电检修的区域停电检修的检修时间与计划停电检修的区域停电检修的检修时间存在停电检修时间重叠,则所述监测终端判定为Ⅲ级停电检修。
  6. 根据权利要求1所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述停电检修计划编排处理包括:停电检修计划编排按照停电检修优先级进行编排处理,停电检修的优先级为:Ⅰ级停电检修的停电检修优先级优于Ⅱ级停电检修,Ⅱ级停电检修的停电检修优先级优于Ⅲ级停电检修。
  7. 根据权利要求1所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述停电检修计划优化处理包括:Ⅰ级停电检修优化处理、Ⅱ级停电检修优化处理和Ⅲ级停电检修优化处理。
  8. 根据权利要求7所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述Ⅰ级停电检修优化处理包括:若所述监测终端识别出非计划停电检修的区域停电检修出现的次数是相同的,所述监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若其中一个区域停电检修的停电检修重叠时间占比重比其他一个区域停电检修的大,则所述监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
    若所述监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,所述监测终端根据出现次数最多的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
  9. 根据权利要求7所述的停电类型自动识别并生成停电检修计划方法,其 特征在于,所述Ⅱ级停电检修优化处理包括:若所述监测终端识别出非计划停电检修的区域停电检修出现的次数是相同的,所述监测终端根据非计划停电检修的停电检修时间进行停电检修进行优化处理,若其中一个非计划停电检修的区域停电检修的停电检修重叠时间占比重比其他一个非计划停电检修的区域停电检修的大,则所述监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修和计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
    若所述监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,所述监测终端根据出现次数最多非计划停电检修的区域停电检修的停电检修时间生成新的停电检修时间,更新非计划停电检修和计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
  10. 根据权利要求7所述的停电类型自动识别并生成停电检修计划方法,其特征在于,所述所述Ⅲ级停电检修优化处理包括:若所述监测终端识别出计划停电检修的区域停电检修出现的次数是相同的,所述监测终端根据停电检修重叠时间占比重进行停电检修进行优化处理,若其中一个区域停电检修的停电检修重叠时间占比重比其他一个区域停电检修的大,则所述监测终端根据其中一个停电检修重叠时间占比重大的区域停电检修的停电检修时间生成新的停电检修时间,更新计划停电检修的区域停电检修的停电检修时间,并自动生成报告;
    若所述监测终端识别出非计划停电检修的区域停电检修出现的次数是不相同的,所述监测终端根据出现次数最多的区域停电检修的停电检修时间生成新的停电检修时间,更新计划停电检修的区域停电检修的停电检修时间,并自动生成报告。
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