WO2016169238A1 - 一种变电站停电事故快速应急处理方法及系统 - Google Patents

一种变电站停电事故快速应急处理方法及系统 Download PDF

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WO2016169238A1
WO2016169238A1 PCT/CN2015/092816 CN2015092816W WO2016169238A1 WO 2016169238 A1 WO2016169238 A1 WO 2016169238A1 CN 2015092816 W CN2015092816 W CN 2015092816W WO 2016169238 A1 WO2016169238 A1 WO 2016169238A1
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Prior art keywords
plan
distribution network
emergency
emergency accident
line
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PCT/CN2015/092816
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English (en)
French (fr)
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郑伟彦
阙波
钟晖
朱义勇
陈蕾
苏毅方
黄武浩
刘家齐
王凯
赵峥
袁喆
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国网浙江省电力公司杭州供电公司
国家电网公司
国网浙江省电力公司
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Publication of WO2016169238A1 publication Critical patent/WO2016169238A1/zh

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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
    • G06Q10/06Resources, workflows, human or project management; Enterprise or organisation planning; Enterprise or organisation modelling
    • 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 distribution network, and more particularly to a rapid emergency treatment method and system for power failure of a substation.
  • the emergency treatment technology for power outage accidents in substations based on distribution network has been feasible.
  • the existing substation power failure emergency treatment technology of the distribution network is to transfer the 10kv power outage line to the normal power supply line by separating the substation circuit breakers one by one, and then connecting the line communication switch, thereby realizing the power failure recovery.
  • the workload of manual customized emergency accident preparation is huge, and it takes a long time from accident to power failure recovery. .
  • the object of the present invention is to provide a rapid emergency treatment method and system for a power outage accident of a substation, which is used to shorten the power outage time of a power failure of a substation and reduce the workload of power failure treatment in a substation.
  • the present invention provides the following technical solutions:
  • the present invention provides a rapid emergency response method for a power outage accident in a substation, including:
  • an emergency accident preparation plan for the distribution network line includes an isolation plan and a recovery plan;
  • the isolation plan is executed to isolate the corresponding fault area; after isolating the fault area
  • the recovery plan is executed to recover the power supply in the power outage area.
  • the emergency accident preparation plan for obtaining the distribution network line includes:
  • the method further includes:
  • the heavy-duty line prompts the dispatcher to perform load transfer according to the heavy-duty line.
  • the operation mode of the power distribution network is restored to a default operation mode, and the default operation mode is that the distribution network line is faulty.
  • the determining whether the emergency accident preparation plan meets the first preset condition comprises:
  • the emergency accident preparation plan When the emergency accident preparation plan does not satisfy the operation mode of the distribution network, the emergency accident preparation plan is re-compiled.
  • the determining whether the emergency accident preparation plan meets the first preset condition further includes:
  • the emergency accident preparation plan When the emergency accident preparation plan is executed, the normal line reloading of the distribution network will be caused, and the emergency accident preparation plan will be re-compiled.
  • the determining whether the emergency accident preparation plan meets the first preset condition further includes include:
  • the emergency accident preparation plan When the emergency accident preparation plan is executed, it will not cause the normal line reloading of the distribution network, and it is judged whether the emergency accident preparation plan will cause the maintenance area to be charged after execution;
  • the present invention also provides a rapid emergency response system for a power outage accident of a substation, comprising:
  • the emergency plan preparation module is configured to obtain an emergency accident preparation plan for the distribution network line, and the emergency accident preparation plan includes an isolation plan and a recovery plan;
  • a periodic plan verification module configured to determine whether the emergency accident preparation plan satisfies a first preset condition
  • the accident plan execution module is configured to: when the emergency accident preparation plan satisfies the first preset condition, and when the distribution network line fails, perform the isolation plan to isolate the corresponding fault area; After isolating the fault area, the recovery plan is executed to restore power supply to the power outage area.
  • the emergency plan preparation module comprises:
  • a first acquiring unit configured to respectively acquire a distribution network model and a distribution network operation mode
  • a second obtaining unit configured to acquire a pre-plan of the distribution network line according to the distribution network model and the distribution network operation mode
  • a combination unit is configured to combine all the plans to obtain the emergency plan.
  • the system further comprises:
  • An abnormal state monitoring module configured to perform real-time monitoring on the result of the emergency accident preparation plan execution, to obtain a load rate change of the fault area of the distribution network line, and determine the power distribution according to the load rate change
  • the heavy-duty line in the fault area of the network line prompts the dispatcher to perform load transfer according to the heavy-duty line.
  • the system further comprises:
  • Operation mode recovery module for changing the load rate of the fault area of the distribution network line
  • the distribution network operation mode is restored to the default operation mode, and the default operation mode is the operation mode of the distribution network before the distribution network line fails.
  • the invention provides a rapid emergency treatment method and system for a power outage accident of a substation, firstly obtaining an emergency accident preparation plan for the distribution network line, and judging whether the emergency accident preparation plan satisfies the first preset condition, and when the emergency accident preparation plan satisfies the first a preset condition, and when the distribution network line fails, the isolation plan is executed to isolate the corresponding fault area; after isolating the fault area, the recovery plan is executed to restore the power supply of the fault area, and
  • the present invention provides a rapid emergency response system and method for power failure of a substation, which not only shortens the power outage time of the power failure of the substation, but also reduces the power failure of the substation. The amount of work.
  • FIG. 1 is a flow chart of a method for quickly responding to a power outage accident of a substation according to an embodiment of the present invention
  • FIG. 2 is another flow chart of a method for quickly responding to a power outage accident of a substation according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of a substation emergency accident preparation plan according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of an execution process of an emergency accident preparation plan for a single line according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of a process for executing a substation emergency accident preparation plan according to an embodiment of the present invention
  • FIG. 6 is a sub-flow chart of a substation power failure emergency rapid emergency response system according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a rapid emergency response system for a power failure of a substation according to an embodiment of the present invention.
  • FIG. 8 is a schematic diagram of a sub-structure of a rapid emergency response system for a power outage accident of a substation according to an embodiment of the present invention.
  • FIG. 9 is another schematic structural diagram of a rapid emergency response system for a power failure of a substation according to an embodiment of the present invention.
  • the embodiment of the invention provides a rapid emergency treatment method for a power outage accident of a substation.
  • FIG. 1 a flowchart of a rapid emergency treatment method for a power failure of a substation according to an embodiment of the present invention is provided, which may include the following steps. :
  • Step 101 Acquire an emergency accident preparation plan for the distribution network line.
  • the emergency preparedness plan includes the isolation plan and the recovery plan.
  • the emergency accident preparation plan in the embodiment of the present invention is relative to a plurality of lines, that is, when the emergency accident preparation plan is executed, the synchronous execution of multiple lines is directly realized.
  • the isolation plan may specifically isolate the fault area by the 10kV circuit breaker of the substation substation; the recovery plan may specifically restore the power supply of the power outage area after the substation fault area is isolated by the control line communication switch.
  • Step 102 Determine whether the emergency accident preparation plan satisfies the first preset condition.
  • the emergency accident preparation plan must meet the first pre-set conditions when it is implemented. Otherwise, if the emergency accident preparation plan fails to be implemented, the new emergency accident preparation plan will continue to be re-programmed. That is, in the embodiment of the present invention, the emergency accident preparation plan is first performed by the requirements of the first verification and the execution. In the test, the emergency accident preparation plan can be continued when the first preset condition is met.
  • Step 103 When the emergency accident preparation plan satisfies the first preset condition, and when the distribution network line fails, the isolation plan is executed to isolate the corresponding fault area; after the fault area is isolated, the recovery plan is executed to The power supply in the power outage area is restored.
  • the emergency accident preparation plan includes the isolation plan and the recovery plan. Therefore, when the emergency accident preparation plan is executed, the substation 10kV circuit breaker is sequentially controlled according to the order of the first control and the re-control, and after completion, Control the line contact switch to achieve isolation of the fault area and power restoration in the power outage area.
  • the invention provides a rapid emergency treatment method for a power outage accident of a substation, firstly obtaining an emergency accident preparation plan for the distribution network line, and judging whether the emergency accident preparation plan satisfies the first preset condition, and when the emergency accident preparation plan satisfies the first pre-plan Set conditions, and when the distribution network line fails, perform the isolation plan to isolate the corresponding fault area; after isolating the fault area, perform the recovery plan to recover the power supply in the fault area, and the prior art
  • the present invention provides a rapid emergency treatment method for power failure of a substation, which not only shortens the power failure time of the power failure of the substation, but also reduces the workload of the power failure of the substation.
  • FIG. 2 illustrates another flowchart of a method for quickly responding to a power outage accident of a substation according to an embodiment of the present invention, and may further include the following steps:
  • Step 201 Acquire an emergency accident preparation plan for the distribution network line.
  • the emergency preparedness plan includes the isolation plan and the recovery plan.
  • the emergency accident preparation plan may be obtained by the following method, which may specifically be:
  • the distribution network model and the distribution network operation mode are obtained according to the distribution system SCADA system (Supervisory Control And Data Acquisition, data acquisition and monitoring control system).
  • the distribution network model includes distribution network switch, distribution network feeder segment and distribution network load.
  • the distribution network operation mode refers to the switching state of the power grid switch.
  • the embodiment of the invention automatically acquires the model of the distribution network and the operation mode of the distribution network according to the SCADA system of the distribution network, and obtains the pre-plan of the distribution network line through topology search according to the model of the distribution network and the operation mode of the distribution network, and then By combining to form a load transfer preparation plan, that is, the acquisition of the emergency accident preparation plan in the present invention is automatically formed by the distribution network SCADA system, and is effectively reduced compared with the prior art method of manually customizing the emergency accident preparation plan.
  • the workload of substation power failure handling is described by the distribution network SCADA system, and is effectively reduced compared with the prior art method of manually customizing the emergency accident preparation plan.
  • the plan includes isolation (control) and recovery (control), that is, isolating the fault area in the distribution network line, restoring the power supply in the fault area of the distribution network line, and the fault in the isolated distribution line
  • the area is realized by the 10kV circuit breaker of the substation substation, and the power supply in the power outage area of the distribution network line is restored through the communication switch of the control distribution network line.
  • FIG. 3 is a schematic diagram showing a substation emergency accident preparation plan according to the 10 kV distribution network line of the Duantang substation provided in the embodiment of the present invention.
  • Step 202 Determine whether the emergency accident preparation plan satisfies the first preset condition.
  • Step 203 When the emergency accident preparation plan satisfies the first preset condition, and when the distribution network line fails, the isolation plan is executed to isolate the corresponding fault area; after the fault area is isolated, the recovery plan is executed, to The power supply in the power outage area is restored.
  • the emergency accident preparation plan provided by the embodiment of the present invention is based on the union of multiple line plan executions, and multiple executions are concurrently executed without affecting each other.
  • the execution process of the emergency accident preparation plan for a single line in multiple power outage lines is shown in Figure 4.
  • the pre-plans that have failed to be executed are excluded first, and then the emergency accident preparation plan to be executed is selected according to the priority of the emergency accident preparation plan.
  • the substation power failure emergency response system will automatically generate a temporary emergency accident preparation plan according to the current operation mode of the distribution network.
  • the implementation of the emergency accident preparation plan for a single line is realized according to the priority of the emergency accident preparation plan, and the selection principle of the execution order is as follows:
  • Threshold distribution network switch * 100 + post-load supply rate
  • the processing sequence of the emergency accident preparation plan is generally determined according to the threshold value.
  • the load rate after the transfer can be estimated based on the historical data in the distribution network.
  • the emergency accident preparation plan After determining the emergency accident preparation plan to be executed, it is judged whether the emergency accident preparation plan satisfies the first preset condition; when the emergency accident preparation plan satisfies the first preset condition, the substation 10kV circuit breaker is controlled, and if the substation is controlled to be 10kV If the circuit breaker fails, it indicates that the emergency accident preparation plan fails to execute, then return to the re-selection of the emergency accident preparation plan that can be executed. When the control substation 10kV circuit breaker is successful, the control line communication switch is controlled, and the control line communication switch is also controlled. If it fails, it will return to the re-selection of the emergency preparedness plan that can be executed. When the control line of the control line is successful, the emergency plan for the single line is successfully executed.
  • the emergency accident preparation plan can be divided into three categories, such as a preferred plan, an alternate plan, and a dynamic plan, wherein the preferred plan is an emergency to be determined according to the priority of the emergency plan.
  • Prepare the plan the standby plan is the emergency accident preparation plan in addition to the preferred plan
  • the dynamic plan is the emergency accident preparation plan that needs to be manually adjusted and re-acquired during the execution of the emergency plan.
  • the emergency accident preparation plan meets the first preset condition, the emergency accident preparation plan is executed, and the fault area is isolated and the power supply area is restored in accordance with the sequence. If the fault area is isolated and the power supply area is powered, the emergency accident preparation is described. The execution of the plan is successful.
  • the emergency plan is prepared manually to form a new emergency plan, that is, the dynamic plan.
  • the isolation of the fault area and the power supply of the power outage area can be realized by remote control, or can be implemented by other means.
  • Step 204 Perform real-time monitoring on the results of the emergency accident preparation plan execution to obtain the load rate change of the fault area of the distribution network line, and determine the heavy load line in the fault area of the distribution network line according to the change of the load rate, The dispatcher is promptly prompted to perform load transfer according to the heavy line.
  • Step 205 When the load rate change of the fault area of the distribution network line meets the second preset condition, the distribution network operation mode is restored to the default operation mode.
  • FIG. 5 is a schematic diagram showing the execution process of a substation emergency accident preparation plan according to the 10 kV power failure distribution network line of the Duantang substation provided in the embodiment of the present invention.
  • a rapid emergency treatment method for power failure of substation provided by embodiment of the present invention, substation
  • the implementation of the emergency accident preparation plan is the union of the preparation of multiple line emergency accident preparation plans.
  • the multiple lines are executed concurrently without affecting each other, thus greatly improving the execution speed of the plan and monitoring the distribution network failure in real time.
  • the change of the load rate of the area effectively prevents the accident from being overloaded by the line in the fault area, and records the recovery process of the stop line. After the accident is processed, the operation mode of the grid is intelligently completed.
  • FIG. 6 is a sub-flow diagram of a substation power failure emergency rapid emergency response system according to an embodiment of the present invention, which may include the following steps:
  • Step 301 Determine whether the emergency accident preparation plan meets the distribution network operation mode. If not, execute step 302; if yes, execute step 303.
  • Step 302 When the emergency accident preparation plan does not meet the operation mode of the distribution network, the emergency accident preparation plan is re-compiled.
  • Step 303 When the emergency accident preparation plan satisfies the operation mode of the distribution network, it is determined whether the emergency line preparation plan will cause the normal line reloading of the distribution network. If not, step 304 is performed; if yes, step 305 is performed.
  • Step 304 When the emergency accident preparation plan is executed, the normal line of the distribution network will be reloaded, and the emergency accident preparation plan is re-compiled.
  • Step 305 When the emergency accident preparation plan is executed, the normal line reloading of the distribution network will not be caused, and it is determined whether the emergency area preparation plan will cause the maintenance area to be charged. If not, step 306 is performed; if yes, the steps are performed. 307.
  • Step 306 When the emergency accident preparation plan is executed, the maintenance area will be electrified, and the emergency accident preparation plan is re-compiled.
  • Step 307 When the emergency accident preparation plan is executed, the maintenance area will not be electrified, and the emergency accident preparation plan is executed.
  • the first preset condition is the condition that needs to be met before the emergency accident preparation plan is executed, that is, the emergency accident preparation plan needs to be consistent with the current operation status of the distribution network, and the emergency accident preparation plan will not lead to the distribution network.
  • the normal line overload in the line will not cause the maintenance area to be charged after the emergency accident preparation plan is executed. It should be noted that, in the embodiment of the present invention, only When the emergency accident preparation plan meets the first preset condition, the emergency accident preparation plan can be continued.
  • the embodiment of the present invention further provides a rapid emergency response system for power failure of a substation.
  • a rapid emergency response system for power failure of a substation according to an embodiment of the present invention is shown.
  • a schematic diagram of the structure, the system may include: an emergency plan preparation module 11, a periodic plan verification module 12, and an accident plan execution module 13, wherein:
  • the emergency plan preparation module 11 is configured to obtain an emergency accident preparation plan for the distribution network line.
  • the emergency plan preparation module 11 may further include: a first acquisition unit 21, a second acquisition unit 22, and a combination unit 23.
  • the present invention provides a quick emergency treatment for a power outage accident of a substation according to an embodiment of the present invention.
  • a substructure diagram of the system where:
  • the first obtaining unit 21 is configured to separately acquire a distribution network model and a distribution network operation mode.
  • the second obtaining unit 22 is configured to obtain a pre-plan of the distribution network line according to the distribution network model and the distribution network operation mode.
  • the combination unit 23 is configured to combine all the plans to obtain an emergency accident preparation plan.
  • the emergency plan preparation module 11 obtains the distribution network model and the distribution network operation mode according to the distribution network SCADA system. It can be understood that the emergency accident preparation plan is formed by combining the distribution network module and the distribution network operation mode. By traversing all 10kV distribution network lines in the substation, the topology search is used to obtain the distribution network line plan, and then All the combination of the plan obtained the substation emergency accident preparation plan.
  • the regular plan verification module 12 is configured to determine whether the emergency accident preparation plan satisfies the first preset condition.
  • the regular plan verification module 12 periodically traverses all 10kV lines in the substation. If the emergency accident preparation plan does not match the current distribution network operation status, it is considered that the emergency accident preparation plan is invalid, and the user is prompted to re-compile the line emergency accident preparation plan.
  • the emergency accident preparation plan does not match the current operating status of the distribution network.
  • the current operation status of the control switch in the emergency accident preparation plan is already divided, or the current running state of the control switch is already closed.
  • the accident plan execution module 13 is configured to: when the emergency accident preparation plan satisfies the first preset condition, and when the distribution network line fails, perform the isolation plan to isolate the corresponding fault area; after isolating the fault area, perform Restore the plan to restore power to the power outage area.
  • the embodiment of the invention provides a rapid emergency response system for a power outage accident of a substation, firstly obtaining an emergency accident preparation plan for the distribution network line, and judging whether the emergency accident preparation plan satisfies the first preset condition, and when the emergency accident preparation plan satisfies the first a preset condition, and when the distribution network line fails, the isolation plan is executed to isolate the corresponding fault area; after the fault area is isolated, the recovery plan is executed to recover the power supply of the fault area, and the existing Compared with the system in which the power failure recovery is realized step by step in line by line, the rapid emergency response system for power failure of the substation provided by the invention not only shortens the power failure time of the power failure of the substation, but also reduces the workload of the power failure of the substation. .
  • FIG. 9 is another schematic structural diagram of a rapid emergency response system for a power failure of a substation according to an embodiment of the present invention.
  • the abnormal state monitoring module 14 and the operation mode may be further included.
  • the abnormal state monitoring module 14 is configured to perform real-time monitoring on the results of the emergency accident preparation plan execution, to obtain the load rate change of the fault area of the distribution network line, and determine the fault area of the distribution network line according to the load rate change.
  • the heavy-duty line prompts the dispatcher to perform load transfer according to the heavy-duty line.
  • abnormal power supply line refers to the current power supply of the power outage line in the distribution network after the accident occurs in the substation.
  • the operation mode recovery module 15 is configured to restore the distribution network operation mode to the default operation mode when the load rate change of the fault area of the distribution network line satisfies the second preset condition.
  • the default operation mode is the operation mode of the distribution network before the distribution network line fails.
  • the utility model provides a rapid emergency response system for power failure of a substation, and the execution of a substation emergency accident preparation plan is a union of multiple line emergency accident preparation plans, and multiple lines are executed concurrently without mutual influence, thereby greatly increasing Improve the execution speed of the plan, and By monitoring the load rate change in the fault area of the distribution network in real time, it effectively prevents the accident from being overloaded by the line in the fault area, and records the recovery process of the line stop line. After the accident processing is completed, the grid operation mode is intelligently completed.

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Abstract

一种变电站停电事故快速应急处理方法及系统,所述方法包括:获取配电网线路的应急事故编制预案,应急事故编制预案包括隔离预案和恢复预案;判断应急事故编制预案是否满足第一预设条件;当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离故障区域后,执行恢复预案,以对故障区域的供电进行恢复。本发明提供的一种变电站停电事故快速应急处理系统及方法不仅缩短了变电站停电事故的停电时间,还减轻了变电站停电事故处理的工作量。

Description

一种变电站停电事故快速应急处理方法及系统
本申请要求2015年04月22日提交中国专利局、申请号为201510193775.X、发明名称为“一种变电站停电事故快速应急处理方法及系统”的发明专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及配电网技术领域,更具体地说,涉及一种变电站停电事故快速应急处理方法及系统。
背景技术
自然灾害(冰灾、雪灾及地震等)外力破坏造成输电线路倒塔或输电线路故障灯会导致变电站停电,引起配电网多条供电线路停止工作,大面积负荷失去供电。失电负荷必须等待变电站停电事故处理结束后才能给恢复供电,且在其过程中停电时间长,严重影响了配电网供电的可靠性。
随着我国配电网自动化水平的显著提升,基于配电网的变电站停电事故应急处理技术已具备可行性。其中,现有的配电网的变电站停电事故应急处理技术是将10kv停电线路逐点逐条按照顺序通过分开变电站断路器,合上线路联络开关的方法转移到正常供电线路,进而实现停电恢复的。但是基于配电网的变电站停电事故应急处理技术在处理过程中还仍存在些不足之处,如人工定制应急事故编制预案的工作量巨大,且事故发生至停电恢复的过程中的耗时较长。
综上所述,如何提供一种缩短变电站停电事故的停电时间,减轻变电站停电事故处理的工作量,是目前本领域技术人员亟待解决的问题。
发明内容
有鉴于此,本发明的目的是提供一种变电站停电事故快速应急处理方法及系统,用以缩短变电站停电事故的停电时间,减轻变电站停电事故处理的工作量。
为了实现上述目的,本发明提供如下技术方案:
一方面,本发明提供了一种变电站停电事故快速应急处理方法,包括:
获取配电网线路的应急事故编制预案,所述应急事故编制预案包括隔离预案和恢复预案;
判断所述应急事故编制预案是否满足第一预设条件;
当所述应急事故编制预案满足所述第一预设条件,并且当所述配电网线路出现故障时,执行所述隔离预案,以对相应的故障区域进行隔离;当隔离所述故障区域后,执行所述恢复预案,以对停电区域的供电进行恢复。
优选的,所述获取配电网线路的应急事故编制预案包括:
分别获取配电网模型及配电网运行方式;
依据所述配电网模型及所述配电网运行方式获取所述配电网线路的预案;
将所有所述预案进行组合,以获取所述应急事故编制预案。
优选的,所述方法还包括:
对所述应急事故编制预案执行后的结果进行实时监测,以获取所述配电网线路的故障区域的负载率变化,并依据所述负载率变化确定所述配电网线路的故障区域中的重载线路,以及时提示调度人员依据所述重载线路进行负载转移。
当所述配电网线路的故障区域的负载率变化满足第二预设条件时,将所述配电网运行方式还原为默认运行方式,所述默认运行方式为所述配电网线路发生故障前所述配电网的运行方式。
优选的,所述判断所述应急事故编制预案是否满足第一预设条件包括:
判断所述应急事故编制预案是否满足所述配电网运行方式;
当所述应急事故编制预案不满足所述配电网运行方式时,则重新编制所述应急事故编制预案。
优选的,所述判断所述应急事故编制预案是否满足第一预设条件还包括:
当所述应急事故编制预案满足所述配电网运行方式时,判断所述应急事故编制预案执行后是否会导致配电网正常线路重载;
当所述应急事故编制预案执行后会导致配电网正常线路重载,则重新编制所述应急事故编制预案。
优选的,所述判断所述应急事故编制预案是否满足第一预设条件还包 括:
当所述应急事故编制预案执行后不会导致配电网正常线路重载,则判断所述应急事故编制预案执行后是否会导致检修区域带电;
当所述应急事故编制预案执行后会导致所述检修区域带电,则重新编制所述应急事故编制预案;
当所述应急事故编制预案执行后不会导致所述检修区域带电,则执行所述应急事故编制预案。
另一方面,本发明还提供了一种变电站停电事故快速应急处理系统,包括:
应急预案编制模块,用于获取配电网线路的应急事故编制预案,所述应急事故编制预案包括隔离预案和恢复预案;
定期预案校验模块,用于判断所述应急事故编制预案是否满足第一预设条件;
事故预案执行模块,用于当所述应急事故编制预案满足所述第一预设条件,并且当所述配电网线路出现故障时,执行所述隔离预案,以对相应的故障区域进行隔离;当隔离所述故障区域后,执行所述恢复预案,以对所述停电区域的供电进行恢复。
优选的,所述应急预案编制模块包括:
第一获取单元,用于分别获取配电网模型及配电网运行方式;
第二获取单元,用于依据所述配电网模型及所述配电网运行方式获取所述配电网线路的预案;
组合单元,用于将所有所述预案进行组合,以获取所述应急事故编制预案。
优选的,所述系统还包括:
异常状态监视模块,用于对所述应急事故编制预案执行后的结果进行实时监测,以获取所述配电网线路的故障区域的负载率变化,并依据所述负载率变化确定所述配电网线路的故障区域中的重载线路,以及时提示调度人员依据所述重载线路进行负载转移。
优选的,所述系统还包括:
运行方式恢复模块,用于当所述配电网线路的故障区域的负载率变化 满足第二预设条件时,将所述配电网运行方式还原为默认运行方式,所述默认运行方式为所述配电网线路发生故障前所述配电网的运行方式。
与现有技术相比,本发明的优点如下:
本发明提供了一种变电站停电事故快速应急处理方法及系统,首先通过获取配电网线路的应急事故编制预案,并判断应急事故编制预案是否满足第一预设条件,当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离所述故障区域后,执行恢复预案,以对故障区域的供电进行恢复,与现有技术中逐点逐线按顺序实现停电恢复的系统相比,本发明提供的一种变电站停电事故快速应急处理系统及方法不仅缩短了变电站停电事故的停电时间,还减轻了变电站停电事故处理的工作量。
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,显而易见地,下面描述中的附图仅仅是本发明的实施例,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,还可以根据提供的附图获得其他的附图。
图1为本发明实施例提供的一种变电站停电事故快速应急处理方法的一种流程图;
图2为本发明实施例提供的一种变电站停电事故快速应急处理方法的另一种流程图;
图3为本发明实施例提供的一种变电站应急事故编制预案的示意图;
图4为本发明实施例提供的单条线路的应急事故编制预案执行过程示意图;
图5为本发明实施例提供的一种变电站应急事故编制预案执行过程示意图;
图6为本发明实施例提供的一种变电站停电应急快速应急处理系统的一种子流程图;
图7为本发明实施例提供的一种变电站停电事故快速应急处理系统的一种结构示意图;
图8为本发明实施例提供的一种变电站停电事故快速应急处理系统的一种子结构示意图;
图9为本发明实施例提供的一种变电站停电事故快速应急处理系统的另一种结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例提供了一种变电站停电事故快速应急处理方法,请参考图1,其示出了本发明实施例提供的一种变电站停电事故快速应急处理方法的一种流程图,可以包括以下步骤:
步骤101:获取配电网线路的应急事故编制预案。
其中,应急事故编制预案包括隔离预案和恢复预案。
需要说明的是,本发明实施例中的应急事故编制预案是相对于多条线路而言的,即在执行应急事故编制预案时,便直接实现了多条线路的同步执行。
可以理解的是,隔离预案具体可以为通过控分变电站10kV断路器隔离故障区域;恢复预案具体可以为通过控合线路联络开关恢复变电站故障区域隔离后,恢复停电区域的供电。
步骤102:判断应急事故编制预案是否满足第一预设条件。
应急事故编制预案在执行时必须满足第一预设条件,否则直接认为应急事故编制预案执行失败,则继续重新编制新的应急事故编制预案。即在本发明实施例中,通过先校验后执行的要求先对应急事故编制预案进行校 验,当满足第一预设条件时,才能继续执行该应急事故编制预案。
步骤103:当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离故障区域后,执行恢复预案,以对停电区域的供电进行恢复。
在本发明实施例中,应急事故编制预案中包括隔离预案和恢复预案,所以在执行应急事故编制预案时,则按照先控分再控合的顺序依次控分变电站10kV断路器,完成后,再控合线路联络开关,以实现故障区域的隔离以及停电区域的供电恢复。
本发明提供了一种变电站停电事故快速应急处理方法,首先通过获取配电网线路的应急事故编制预案,并判断应急事故编制预案是否满足第一预设条件,当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离故障区域后,执行恢复预案,以对故障区域的供电进行恢复,与现有技术中逐点逐线按顺序实现停电恢复的方法相比,本发明提供的一种变电站停电事故快速应急处理方法,不仅缩短了变电站停电事故的停电时间,还减轻了变电站停电事故处理的工作量。
请参考图2,其示出了本发明实施例提供的一种变电站停电事故快速应急处理方法的另一种流程图,还可以包括以下步骤:
步骤201:获取配电网线路的应急事故编制预案。
其中,应急事故编制预案包括隔离预案和恢复预案。
在本发明实施例中,可以通过以下方式获取应急事故编制预案,其具体可以为:
分别获取配电网模型及配电网运行方式;依据配电网模型及配电网运行方式获取配电网线路的预案,并将所有预案进行组合,以获取应急事故编制预案。
需要说明的是,需要说明的是,配电网模型及配电网运行方式的获取是依据配电网SCADA系统(Supervisory Control And Data Acquisition,数据采集与监视控制系统)获得的。其中,配电网模型包括配电网开关、配电网馈线段和配电网负荷。配电网运行方式指配电网开关的分合状态。
本发明实施例通过依据配电网SCADA系统自动获取配电网的模型及配电网运行方式,并根据配电网的模型及配电网运行方式通过拓扑搜索获取配电网线路的预案,然后通过组合形成负荷转移编制预案,即本发明中应急事故编制预案的获取是通过配电网SCADA系统自动形成的,与现有技术中通过人工定制应急事故编制预案的方式相比,有效的减轻了变电站停电事故处理的工作量。
需要说明的是,预案包括隔离(控分)和恢复(控合),即隔离配电网线路中的故障区域,恢复配电网线路中故障区域的供电,其中隔离配电网线路中的故障区域通过控分变电站10kV断路器实现的,恢复配电网线路中停电区域的供电通过控合配电网线路的联络开关实现的。其中,图3中示出了本发明实施例中提供的依据段塘变电站10kV配电网线路的一种变电站应急事故编制预案的示意图。
步骤202:判断应急事故编制预案是否满足第一预设条件。
步骤203:当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离故障区域后,执行恢复预案,以对停电区域的供电进行恢复。
需要说明的是,本发明实施例提供的应急事故编制预案是基于多条线路预案执行的并集,且多条先去之间是并发执行,互不影响的。在基于多条停电线路同时进行供电恢复的基础上,多条停电线路中的单条线路的应急事故编制预案执行过程如图4所示。
当单条线路具有多条预案时,则先排除已经执行失败的预案,再按照应急事故编制预案的优先级选择待执行的应急事故编制预案。当单条线路内所有的应急事故编制预案均执行失败或者当前的单条线路不存在应急事故编制预案时,则变电站停电事故应急处理系统将根据配电网当前运行方式自动生成临时应急事故编制预案。
其中,对于单条线路的应急事故编制预案的执行是依据应急事故编制预案的优先级来实现的,其执行顺序的选择原则如下:
阈值=配电网开关*100+转供后负载率;
需要说明的是,当阈值越大,则应急事故编制预案优先级越低,故一般根据阈值的大小来确定应急事故编制预案的处理顺序。
其中,转供后负载率可以根据配电网中的历史数据进行估算获得的。
当确定待执行的应急事故编制预案后,判断应急事故编制预案是否满足第一预设条件;当应急事故编制预案满足第一预设条件时,则控分变电站10kV断路器,若控分变电站10kV断路器失败,则表明该应急事故编制预案执行失败,则返回重新选择可以执行的应急事故编制预案,当控分变电站10kV断路器成功后,则控合线路联络开关,同时当控合线路联络开关失败,则返回重新选择可以执行的应急事故编制预案,当控分线路联络开关成功后,则单条线路的应急事故编制预案执行成功。
需要说明的是,在图4中,应急事故编制预案可以分为3类,如优选预案、备用预案和动态预案,其中,优选预案为按照应急事故编制预案的优先级确定的待执行的应急事故编制预案,备用预案为除了优选预案之外的应急事故编制预案,动态预案为在应急事故编制预案执行过程中需要人工进行调整重新获得的应急事故编制预案。在应急事故编制预案满足第一预设条件时,执行应急事故编制预案,按照先后顺序,隔离故障区域和恢复停电区域供电,若均实现了故障区域的隔离以及停电区域的供电则说明应急事故编制预案执行成功,否则,则执行失败,则通过人工调整应急事故编制预案,以形成新的应急事故编制预案,即动态预案。其中,在本发明实施例中可以通过遥控实现故障区域的隔离以及停电区域的供电,也可以通过其他方式实现。
步骤204:对应急事故编制预案执行后的结果进行实时监测,以获取配电网线路的故障区域的负载率变化,并依据负载率变化确定配电网线路的故障区域中的重载线路,以及时提示调度人员依据重载线路进行负载转移。
步骤205:当配电网线路的故障区域的负载率变化满足第二预设条件时,将配电网运行方式还原为默认运行方式。
需要说明的是,第二预设条件为应急事故编制预案执行成功。默认运行方式为配电网线路发生故障前配电网的运行方式。其中图5示出了本发明实施例中提供的一种依据段塘变电站10kV停电配电网线路的一种变电站应急事故编制预案执行过程示意图。
本发明实施例提供的一种变电站停电事故快速应急处理方法,变电站 应急事故编制预案的执行为多条线路应急事故编制预案执行的并集,多条线路之间并发执行,互不影响,从而大幅度的提高了预案的执行速度,并通过实时监视配电网故障区域的负载率变化,有效的防止了故障区域线路重载运行导致事故扩大,同时记录停电网线路的恢复过程,且在事故处理结束后,智能完成电网运行方式恢复。
请参考图6,其示出了本发明实施例提供的一种变电站停电应急快速应急处理系统的一种子流程图,可以包括以下步骤:
步骤301:判断应急事故编制预案是否满足配电网运行方式,如果否,则执行步骤302;如果是,则执行步骤303。
步骤302:当应急事故编制预案不满足配电网运行方式时,则重新编制应急事故编制预案。
步骤303:当应急事故编制预案满足配电网运行方式时,判断应急事故编制预案执行后是否会导致配电网正常线路重载,如果否,则执行步骤304;如果是,则执行步骤305。
步骤304:当应急事故编制预案执行后会导致配电网正常线路重载,则重新编制应急事故编制预案。
步骤305:当应急事故编制预案执行后不会导致配电网正常线路重载,则判断应急事故编制预案执行后是否会导致检修区域带电,如果否,则执行步骤306;如果是,则执行步骤307。
步骤306:当应急事故编制预案执行后会导致检修区域带电,则重新编制应急事故编制预案。
步骤307:当应急事故编制预案执行后不会导致检修区域带电,则执行应急事故编制预案。
需要说明的是,在变电站工作时,在变电站中还存在对其设备进行检修的检修区域。
其中,第一预设条件即为应急事故编制预案执行前需要满足的条件,即:应急事故编制预案需要与配电网当前运行的状态相符合,应急事故编制预案执行后不会导致配电网线路中的正常线路重载,应急事故编制预案执行后不会导致检修区域带电。需要说明的是,在本发明实施例中,只有 当应急事故编制预案满足第一预设条件时,才可以继续执行该应急事故编制预案。
与上述方法的实施例相对应,本发明实施例还提供了一种变电站停电事故快速应急处理系统,请参考图7,其示出了本发明实施例提供的一种变电站停电事故快速应急处理系统的一种结构示意图,所述系统可以包括:应急预案编制模块11、定期预案校验模块12和事故预案执行模块13,其中:
应急预案编制模块11,用于获取配电网线路的应急事故编制预案。
其中,应急预案编制模块11还可以包括:第一获取单元21、第二获取单元22和组合单元23,请参考图8,其示出了本发明实施例提供的一种变电站停电事故快速应急处理系统的一种子结构示意图,其中:
第一获取单元21,用于分别获取配电网模型及配电网运行方式。
第二获取单元22,用于依据配电网模型及配电网运行方式获取配电网线路的预案。
组合单元23,用于将所有预案进行组合,以获取应急事故编制预案。
应急预案编制模块11依据配电网SCADA系统获取配电网模型及配电网运行方式。可以理解的是,应急事故编制预案是结合配电网模块及配电网运行方式形成的,其通过遍历变电站内所有10kV的配电网线路,利用拓扑搜索获取配电网线路的预案,再将所有的预案组合,便获得了变电站应急事故编制预案。
定期预案校验模块12,用于判断应急事故编制预案是否满足第一预设条件。
定期预案校验模块12定期遍历变电站内所有10kV线路,若应急事故编制预案与当前配电网的运行状态不符,则认为该应急事故编制预案无效,则提示用户重新编制线路的应急事故编制预案。
需要说明的是,应急事故编制预案与配电网当前运行状态不符指应急事故编制预案中控分开关当前运行状态已为分,或者控合开关当前运行状态为已为合。
事故预案执行模块13,用于当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离故障区域后,执行恢复预案,以对停电区域的供电进行恢复。
本发明实施例提供了一种变电站停电事故快速应急处理系统,首先通过获取配电网线路的应急事故编制预案,并判断应急事故编制预案是否满足第一预设条件,当应急事故编制预案满足第一预设条件,并且当配电网线路出现故障时,执行隔离预案,以对相应的故障区域进行隔离;当隔离故障区域后,执行恢复预案,以对故障区域的供电进行恢复,与现有技术中逐点逐线按顺序实现停电恢复的系统相比,本发明提供的一种变电站停电事故快速应急处理系统,不仅缩短了变电站停电事故的停电时间,还减轻了变电站停电事故处理的工作量。
请参考图9,其示出了本发明实施例提供的一种变电站停电事故快速应急处理系统的另一种结构示意图,在图7的基础上,还可以包括:异常状态监视模块14和运行方式恢复模块15,其中:
异常状态监视模块14,用于对应急事故编制预案执行后的结果进行实时监测,以获取配电网线路的故障区域的负载率变化,并依据负载率变化确定配电网线路的故障区域中的重载线路,以及时提示调度人员依据重载线路进行负载转移。
可以理解的是,在执行完应急事故编制预案后,还需要对执行后的效果进行实时监控,以及时发现配电网异常供电线路中负载率的变化,进而及时发现重载线路。
需要说明的是,异常供电线路指变电站发生事故后配电网中停电线路的当前的供电电源。
运行方式恢复模块15,用于当配电网线路的故障区域的负载率变化满足第二预设条件时,将配电网运行方式还原为默认运行方式。
默认运行方式为配电网线路发生故障前配电网的运行方式。
本发明实施例提供的一种变电站停电事故快速应急处理系统,变电站应急事故编制预案的执行为多条线路应急事故编制预案执行的并集,多条线路之前并发执行,互不影响,从而大幅度的提高了预案的执行速度,并 通过实时监视配电网故障区域的负载率变化,有效的防止了故障区域线路重载运行导致事故扩大,同时记录停电网线路的恢复过程,且在事故处理结束后,智能完成电网运行方式恢复。
最后,还需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
对所公开的实施例的上述说明,使本领域技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (10)

  1. 一种变电站停电事故快速应急处理方法,其特征在于,包括:
    获取配电网线路的应急事故编制预案,所述应急事故编制预案包括隔离预案和恢复预案;
    判断所述应急事故编制预案是否满足第一预设条件;
    当所述应急事故编制预案满足所述第一预设条件,并且当所述配电网线路出现故障时,执行所述隔离预案,以对相应的故障区域进行隔离;当隔离所述故障区域后,执行所述恢复预案,以对停电区域的供电进行恢复。
  2. 根据权利要求1所述的方法,其特征在于,所述获取配电网线路的应急事故编制预案包括:
    分别获取配电网模型及配电网运行方式;
    依据所述配电网模型及所述配电网运行方式获取所述配电网线路的预案;
    将所有所述预案进行组合,以获取所述应急事故编制预案。
  3. 根据权利要求1或2所述的方法,其特征在于,所述方法还包括:
    对所述应急事故编制预案执行后的结果进行实时监测,以获取所述配电网线路的故障区域的负载率变化,并依据所述负载率变化确定所述配电网线路的故障区域中的重载线路,以及时提示调度人员依据所述重载线路进行负载转移。
    当所述配电网线路的故障区域的负载率变化满足第二预设条件时,将所述配电网运行方式还原为默认运行方式,所述默认运行方式为所述配电网线路发生故障前所述配电网的运行方式。
  4. 根据权利要求1所述的方法,其特征在于,所述判断所述应急事故编制预案是否满足第一预设条件包括:
    判断所述应急事故编制预案是否满足所述配电网运行方式;
    当所述应急事故编制预案不满足所述配电网运行方式时,则重新编制所述应急事故编制预案。
  5. 根据权利要求4所述的方法,其特征在于,所述判断所述应急事故编制预案是否满足第一预设条件还包括:
    当所述应急事故编制预案满足所述配电网运行方式时,判断所述应急 事故编制预案执行后是否会导致配电网正常线路重载;
    当所述应急事故编制预案执行后会导致配电网正常线路重载,则重新编制所述应急事故编制预案。
  6. 根据权利要求5所述的方法,其特征在于,所述判断所述应急事故编制预案是否满足第一预设条件还包括:
    当所述应急事故编制预案执行后不会导致配电网正常线路重载,则判断所述应急事故编制预案执行后是否会导致检修区域带电;
    当所述应急事故编制预案执行后会导致所述检修区域带电,则重新编制所述应急事故编制预案;
    当所述应急事故编制预案执行后不会导致所述检修区域带电,则执行所述应急事故编制预案。
  7. 一种变电站停电事故快速应急处理系统,其特征在于,包括:
    应急预案编制模块,用于获取配电网线路的应急事故编制预案,所述应急事故编制预案包括隔离预案和恢复预案;
    定期预案校验模块,用于判断所述应急事故编制预案是否满足第一预设条件;
    事故预案执行模块,用于当所述应急事故编制预案满足所述第一预设条件,并且当所述配电网线路出现故障时,执行所述隔离预案,以对相应的故障区域进行隔离;当隔离所述故障区域后,执行所述恢复预案,以对停电区域的供电进行恢复。
  8. 根据权利要求7所述的系统,其特征在于,所述应急预案编制模块包括:
    第一获取单元,用于分别获取配电网模型及配电网运行方式;
    第二获取单元,用于依据所述配电网模型及所述配电网运行方式获取所述配电网线路的预案;
    组合单元,用于将所有所述预案进行组合,以获取所述应急事故编制预案。
  9. 根据权利要求7或8所述的系统,其特征在于,所述系统还包括:
    异常状态监视模块,用于对所述应急事故编制预案执行后的结果进行实时监测,以获取所述配电网线路的故障区域的负载率变化,并依据所述 负载率变化确定所述配电网线路的故障区域中的重载线路,以及时提示调度人员依据所述重载线路进行负载转移。
  10. 根据权利要求9所述的系统,其特征在于,所述系统还包括:
    运行方式恢复模块,用于当所述配电网线路的故障区域的负载率变化满足第二预设条件时,将所述配电网运行方式还原为默认运行方式,所述默认运行方式为所述配电网线路发生故障前所述配电网的运行方式。
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