CN115360815A - 一种变电站直流系统失地应急处理方法 - Google Patents

一种变电站直流系统失地应急处理方法 Download PDF

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CN115360815A
CN115360815A CN202210954238.2A CN202210954238A CN115360815A CN 115360815 A CN115360815 A CN 115360815A CN 202210954238 A CN202210954238 A CN 202210954238A CN 115360815 A CN115360815 A CN 115360815A
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load
direct current
isolating
ground
fault
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吴勇海
王浩远
郑建芳
沈建林
祝秀波
简程
严国康
冯霖
康荣波
项宇锴
苏文远
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State Grid Fujian Electric Power Co Ltd
Longyan Power Supply Co of State Grid Fujian Electric Power Co Ltd
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State Grid Fujian Electric Power Co Ltd
Longyan Power Supply Co of State Grid Fujian Electric Power Co Ltd
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J11/00Circuit arrangements for providing service supply to auxiliaries of stations in which electric power is generated, distributed or converted
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/12Testing dielectric strength or breakdown voltage ; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing
    • G01R31/1227Testing dielectric strength or breakdown voltage ; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing of components, parts or materials
    • G01R31/1263Testing dielectric strength or breakdown voltage ; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing of components, parts or materials of solid or fluid materials, e.g. insulation films, bulk material; of semiconductors or LV electronic components or parts; of cable, line or wire insulation
    • G01R31/1272Testing dielectric strength or breakdown voltage ; Testing or monitoring effectiveness or level of insulation, e.g. of a cable or of an apparatus, for example using partial discharge measurements; Electrostatic testing of components, parts or materials of solid or fluid materials, e.g. insulation films, bulk material; of semiconductors or LV electronic components or parts; of cable, line or wire insulation of cable, line or wire insulation, e.g. using partial discharge measurements
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/50Testing of electric apparatus, lines, cables or components for short-circuits, continuity, leakage current or incorrect line connections
    • G01R31/52Testing for short-circuits, leakage current or ground faults
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/50Testing of electric apparatus, lines, cables or components for short-circuits, continuity, leakage current or incorrect line connections
    • G01R31/54Testing for continuity
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/26Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured
    • H02H7/266Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured involving switching on a spare supply
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/26Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured
    • H02H7/268Sectionalised protection of cable or line systems, e.g. for disconnecting a section on which a short-circuit, earth fault, or arc discharge has occured for dc systems
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J1/00Circuit arrangements for dc mains or dc distribution networks
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J9/00Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting
    • H02J9/04Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source
    • H02J9/06Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems
    • H02J9/061Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems for DC powered loads

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Emergency Protection Circuit Devices (AREA)

Abstract

本发明涉及一种变电站直流系统失地应急处理方法。通过直流负载的方式实现直流失地故障的查找,并在确定直流失地点后,若负载无法退出运行,可以直接暂时用DC‑AC‑DC隔离装置来为该负载供电并隔离该失地点,防止该直流系统发展成两点失地,造成设备的误动或拒动,待该设备允许停电时再进行处理。

Description

一种变电站直流系统失地应急处理方法
技术领域
本发明属于变电站直流系统故障检测领域,具体涉及一种变电站直流系统失地应急处理方法。
背景技术
目前变电站直流失地故障的处理通常采用拉路法,即通过直流绝缘监察装置选出某个支路,然后试断开该负载,查看绝缘监察装置失地信号是否消失,这时可能碰到该支路负载不能随意断电的,比如合并单元、重要测控装置、保护装置等,需做相关停电申请,因而造成直流失地故障无法及时得到隔离。
由于目前对于变电站直流失地故障采用断开负载的方式进行处理,通常要求只能断开负载时间在3秒以内,这样将一次设备失去保护装置,故障时扩大事故范围,并且只有3秒的时间,只能确定大致的范围,还需申请停用相关运行设备,找出直流失地点,并进行隔离处理。并且当出现多点失地或者环路时,则上述方法还无法找出接地点。
发明内容
本发明的目的在于提供一种变电站直流系统失地应急处理方法,通过DC-AC-DC装置隔离转接直流负载的方式实现直流失地故障的查找,并在确定直流失地点后,若负载无法退出运行,可以直接暂时用DC-AC-DC隔离装置来为该负载供电并隔离该失地点,防止该直流系统发展成两点失地,造成设备的误动或拒动,待该设备允许停电时再进行处理。
为实现上述目的,本发明的技术方案是:一种变电站直流系统失地应急处理方法,通过DC-AC-DC装置隔离转接直流负载的方式实现直流失地故障的查找,并在确定直流失地点后,若负载无法退出运行,直接用DC-AC-DC隔离装置来为该负载供电并隔离该失地点,防止直流系统发展成两点失地,造成设备的误动或拒动,待该负载允许停电时再进行处理。该方法具体实现如下:
提供一直流系统、一绝缘监察装置、多个DC-AC-DC隔离装置,所述直流系统包括母线、与母线分别通过空开1DK、2DK、……、nDK连接的n个支路,每一支路分别通过m个空开连接m个负载;所述绝缘监察装置用于检测相应支路是否存在直流失地故障;所述DC-AC-DC隔离装置用于为负载供电并隔离该失地点,所述DC-AC-DC隔离装置通过Boost电路进行升压,再通过移相全桥回路进行直流回路的隔离,输出与输入接近的稳定直流电压;
当绝缘监察装置选线告知1DK、2DK……nDK中的某一支路发生接地故障,若选出是第1支路有接地故障,则用DC-AC-DC隔离装置的输入端、输出端分别接至1DK的上端、下端,接入后断开1DK,如果此时绝缘监察装置失地信号复归,则说明接地故障在第1支路的负载;如果此时绝缘监察装置失地信号未复归,应该存在多点接地故障或环路接地故障,则继续采用同样的方法对第2至第n支路进行判别,直至绝缘监察装置失地信号复归;然后再将采用DC-AC-DC隔离装置隔离的支路一路一路的用相应的空开来带,恢复某一空开时,如果绝缘监察装置报失地故障,则说明该支路存在接地点,采用DC-AC-DC隔离装置隔离使接地信号复归;从而找出其他多点接地故障或环路的接地故障;
然后在第1支路的负载下进行接地故障查找,则同样的在第1支路的空开1-1DK、1-2DK、……、1-m DK的上端、下端并入DC-AC-DC隔离装置的输入端、输出端,然后将断开1-2DK、……、1-m DK,此时合上1DK,并退出DC-AC-DC隔离装置,如果此时绝缘监测装置又告失地故障,则接地点在1DK至1-1DK、1-2DK、……、1-m DK的控缆上,随即再将用DC-AC-DC隔离装置的输入端、输出端分别接至1DK的上端、下端,断开1DK,合上1-1DK、1-2DK、……、1-mDK,并退出1-1DK、1-2DK、……、1-m DK的DC-AC-DC隔离装置,待停用相关设备再进行处理;如果此时绝缘监测装置未告失地故障,则失地故障应在1-1DK、1-2DK、……、1-m DK负载上;合上1-1DK,并退出1-1DK上的DC-AC-DC隔离装置,如果此时绝缘监察装置告失地故障,则失地故障在1-1DK负载上,即再将用DC-AC-DC隔离装置的输入端、输出端分别接至1-1DK的上端、下端,并断开空开;如果此时绝缘监察装置未告失地故障,则失地点不在1-1DK负载上,该负载仍采用1-1DK空开来带;1-2DK、……、1-m DK也采取与1-1DK同样的操作,从而缩小隔离失地点的范围。
相较于现有技术,本发明具有以下有益效果:本发明可以通过DC-AC-DC装置隔离转接直流负载的方式实现直流失地故障的查找,并在确定直流失地点后,若负载无法退出运行,可以直接暂时用DC-AC-DC隔离装置来为该负载供电并隔离该失地点,防止该直流系统发展成两点失地,造成设备的误动或拒动,待该设备允许停电时再进行处理。
附图说明
图1为直流系统空开配置图。
图2为DC-AC-DC电路拓扑图。
图3为DC-AC-DC投入使用时现场接线图。
具体实施方式
下面结合附图,对本发明的技术方案进行具体说明。
本发明一种变电站直流系统失地应急处理方法,通过DC-AC-DC装置隔离转接直流负载的方式实现直流失地故障的查找,并在确定直流失地点后,若负载无法退出运行,直接用DC-AC-DC隔离装置来为该负载供电并隔离该失地点,防止直流系统发展成两点失地,造成设备的误动或拒动,待该负载允许停电时再进行处理。
本发明具体实现如下:
如图1,为直流系统空开配置图,当该直流系统上的绝缘监察装置报直流失地故障时,正常可以选线告知1DK、2DK……nDK中的某一支路发生接地故障,如果选出是1DK支路有接地故障,则用DC-AC-DC装置的输入端、输出端分别接至1DK空开的上端、下端,接入后断开空开1DK,如果此时绝缘监察装置失地信号复归,则说明接地故障在1DK这一支路负载这;如果此时绝缘监察装置失地信号未复归,应该存在多点接地故障或环路接地故障,则继续采样同样的方法对2DK、3DK……nDK,直至绝缘监察装置失地信号复归。然后再将采用DC-AC-DC装置隔离的支路一路一路的用相应的空开来带,恢复某一空开时,如果绝缘监察装置报失地故障,则说明该支路存在接地点,采用DC-AC-DC装置隔离使接地信号复归。通过该种方法从而找出其他多点或环路的接地故障。
然后在1DK这一支路负载下进行接地故障查找,则同样的在1DK后端的空开1-1DK、1-2DK空开的上端、下端并入DC-AC-DC装置的输入端、输出端,然后将断开1-1DK、1-2DK空开,如图1所示,此时合上1DK,并退出DC-AC-DC装置,如果此时绝缘监测装置又告失地故障,则接地点在1DK至1-1DK、1-2DK这根控缆上,随即再将用DC-AC-DC装置的输入端、输出端分别接至1DK空开的上端、下端,并断开空开,并合上1-1DK、1-2DK空开,并退出1-1DK、1-2DK空开的DC-AC-DC装置,待停用相关设备再进行处理;如果此时绝缘监测装置未告失地故障,则失地故障应在1-1DK、1-2DK负载上。合上1-1DK,并退出1-1DK上的DC-AC-DC装置,如果此时绝缘监察装置告失地故障,则失地故障在1-1DK负载上,即再将用DC-AC-DC装置的输入端、输出端分别接至1-1DK空开的上端、下端,并断开空开;如果此时绝缘监察装置未告失地故障,则失地点不在1-1DK空开负载上,该负载仍采用1-1DK空开来带。1-2DK也采取与1-1DK同样的操作,从而缩小隔离失地点的范围。
如图2,DC-AC-DC装置首先通过Boost电路进行升压,再通过移相全桥回路进行直流回路的隔离,输出与输入接近的稳定直流电压。
如图3,DC-AC-DC装置的在并接直流空开的接线图,当需要隔离某一支路空开所带负载时,则空开上下两端的端子排处并上DC-AC-DC装置,然后断开空开,则可通过DC-AC-DC装置来带原来的负载,并实现与直流系统的隔离。
以上是本发明的较佳实施例,凡依本发明技术方案所作的改变,所产生的功能作用未超出本发明技术方案的范围时,均属于本发明的保护范围。

Claims (2)

1.一种变电站直流系统失地应急处理方法,其特征在于,通过DC-AC-DC装置隔离转接直流负载的方式实现直流失地故障的查找,并在确定直流失地点后,若负载无法退出运行,直接用DC-AC-DC隔离装置来为该负载供电并隔离该失地点,防止直流系统发展成两点失地,造成设备的误动或拒动,待该负载允许停电时再进行处理。
2.根据权利要求1所述的一种变电站直流系统失地应急处理方法,其特征在于,该方法具体实现如下:
提供一直流系统、一绝缘监察装置、多个DC-AC-DC隔离装置,所述直流系统包括母线、与母线分别通过空开1DK、2DK、……、nDK连接的n个支路,每一支路分别通过m个空开连接m个负载;所述绝缘监察装置用于检测相应支路是否存在直流失地故障;所述DC-AC-DC隔离装置用于为负载供电并隔离该失地点,所述DC-AC-DC隔离装置通过Boost电路进行升压,再通过移相全桥回路进行直流回路的隔离,输出与输入接近的稳定直流电压;
当绝缘监察装置选线告知1DK、2DK……nDK中的某一支路发生接地故障,若选出是第1支路有接地故障,则用DC-AC-DC隔离装置的输入端、输出端分别接至1DK的上端、下端,接入后断开1DK,如果此时绝缘监察装置失地信号复归,则说明接地故障在第1支路的负载;如果此时绝缘监察装置失地信号未复归,应该存在多点接地故障或环路接地故障,则继续采用同样的方法对第2至第n支路进行判别,直至绝缘监察装置失地信号复归;然后再将采用DC-AC-DC隔离装置隔离的支路一路一路的用相应的空开来带,恢复某一空开时,如果绝缘监察装置报失地故障,则说明该支路存在接地点,采用DC-AC-DC隔离装置隔离使接地信号复归;从而找出其他多点接地故障或环路的接地故障;
然后在第1支路的负载下进行接地故障查找,则同样的在第1支路的空开1-1DK、1-2DK、……、1-m DK的上端、下端并入DC-AC-DC隔离装置的输入端、输出端,然后将断开1-2DK、……、1-m DK,此时合上1DK,并退出DC-AC-DC隔离装置,如果此时绝缘监测装置又告失地故障,则接地点在1DK至1-1DK、1-2DK、……、1-m DK的控缆上,随即再将用DC-AC-DC隔离装置的输入端、输出端分别接至1DK的上端、下端,断开1DK,合上1-1DK、1-2DK、……、1-mDK,并退出1-1DK、1-2DK、……、1-m DK的DC-AC-DC隔离装置,待停用相关设备再进行处理;如果此时绝缘监测装置未告失地故障,则失地故障应在1-1DK、1-2DK、……、1-m DK负载上;合上1-1DK,并退出1-1DK上的DC-AC-DC隔离装置,如果此时绝缘监察装置告失地故障,则失地故障在1-1DK负载上,即再将用DC-AC-DC隔离装置的输入端、输出端分别接至1-1DK的上端、下端,并断开空开;如果此时绝缘监察装置未告失地故障,则失地点不在1-1DK负载上,该负载仍采用1-1DK空开来带;1-2DK、……、1-m DK也采取与1-1DK同样的操作,从而缩小隔离失地点的范围。
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