首页> 外文会议>IEEE PES/IAS PowerAfrica Conference >Investigation Into the Issues Associated with Closing an Automated Normally Open (N/O) Point on Three Medium Voltage (MV) Networks Where Fault Location, Isolation and Service Restoration (FLISR) is Planned
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Investigation Into the Issues Associated with Closing an Automated Normally Open (N/O) Point on Three Medium Voltage (MV) Networks Where Fault Location, Isolation and Service Restoration (FLISR) is Planned

机译:调查与计划计划故障定位,隔离和服务恢复(FLISR)的三个中压(MV)网络上的自动常开(N / O)点相关的问题

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The design of Medium Voltage (MV) Overhead Lines (OHL) is often radial in nature which makes back-feeding difficult and these networks are often long which increases their exposure to faults. This has resulted in poor network reliability. Customers are mainly affected by faults on the MV network, to which particular attention has to be paid. Permanent faults (involving equipment damage) have negative impact on customers since they experience outages or interruptions while the equipment is repaired or replaced. The impact on customers increases when these outages are long. Customers continue to demand higher levels of uninterrupted supply from the distribution network; therefore it is necessary to implement self-healing Smart Grid technologies. One such technique is Fault Location, Isolation and Service Restoration (FLISR). The main drive towards implementing FLISR is to improve Eskom's network performance, increase electricity sales, improve flexibility and reduce the impact on the economy of outages. This paper discusses various ways to implement FLISR and will also focus on case studies on real distribution networks and look at the issues associated with closing a remotely controlled or automatically operated Normally Open (N/O) point for back-feeding. This paper aims to show how automated service restoration can reduce switching and restoration time from hours to minutes.
机译:中压(MV)架空线路(OHL)的设计通常是放射状的,这使得回馈变得困难,并且这些网络通常很长,这增加了它们承受故障的风险。这导致网络可靠性差。客户主要受MV网络故障的影响,必须特别注意。永久性故障(涉及设备损坏)会对客户造成负面影响,因为客户在维修或更换设备时会遇到断电或中断的情况。这些中断时间较长时,对客户的影响会增加。客户继续要求分销网络提供更高水平的不间断供应;因此有必要实施自我修复的智能电网技术。一种这样的技术是故障定位,隔离和服务还原(FLISR)。实施FLISR的主要动力是改善Eskom的网络性能,增加电力销售,提高灵活性并减少对停电经济的影响。本文讨论了实施FLISR的各种方法,还将重点关注实际配电网络上的案例研究,并探讨与关闭远程控制或自动操作的常开(N / O)点进行后馈相关的问题。本文旨在说明自动服务还原如何将切换和还原时间从数小时缩短至数分钟。

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