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An Investigation of the Utilization of Smart Meter Data to Adapt Overcurrent Protection for Radial Distribution Systems with a High Penetration of Distributed Generation

机译:利用智能电表数据来适应高分布式发电的径向配电系统的过电流保护的研究

摘要

The future of electric power distribution systems (DSs) is one that incorporates extensive amounts of advanced metering, distribution automation, and distributed generation technologies. Most DSs were designed to be radial systems and the major philosophies of their protection, namely, selectivity and sensitivity, were easily achieved. Settings for overcurrent protective devices (OCPDs) were static and based on the maximum load downstream of its location, with little concern of major configuration changes. However, the integration of distribution generators (DGs) in radial distributions systems (RDSs) causes bidirectional power flows and varying short circuit currents to be sensed by protective devices, thereby affecting these established protection principles.Several researchers have investigated methods to preserve the selectivity of overcurrent protection coordination in RDSs with DGs, but at the expense of protective device sensitivity due to an inherent change in system configuration. This thesis presents an investigation to adapt the pickup settings of the substation relay, based on configuration changes in a DS with DGs, using smart meter data from the prior year. An existing protection scheme causes the faulted areas of DSs with DGs to revert to a radial configuration, thereby allowing conventional OCPDs to isolate faults. Based on the location of the fault, the created radial segments are known and vary in length. The proposed methodology involves using demand information available via smart metering, to determine the seasonal maximum diversified demands in each of the radial segments that are formed. These seasonal maximum diversified demands are used to yield several pickup settings for the substation overcurrent relay of the DS. The existing protection approach enables the selectivity of radial overcurrent protection coordination to be maintained; the sensitivity of the substation relay is improved by adapting its pickup settings based on seasonal demand and system configuration changes. The results of the studies are reported through simulation in EMTP? /PSCAD? using a multi-feeder test system that includes DGs and smart meters located at the secondary distribution load level. The results show that using seasonal settings for the substation relay based on configuration changes in a DS with DGs can improve the sensitivity of the substation relay.
机译:配电系统(DSs)的未来将结合大量先进的计量,配电自动化和分布式发电技术。大多数DS被设计为放射状系统,并且很容易实现其保护的主要理念,即选择性和敏感性。过流保护设备(OCPD)的设置是静态的,并且基于其位置下游的最大负载,而无需担心主要配置的变化。但是,在径向配电系统(RDSs)中集成配电发电机(DGs)会导致双向潮流和保护设备感应到变化的短路电流,从而影响这些既定的保护原理。 RDS与DG的过流保护协调,但由于系统配置的固有变化而牺牲了保护设备的灵敏度。本文基于前一年的智能电表数据,基于带有DG的DS中的配置更改,提出了一种适应变电站继电器的启动设置的调查。现有的保护方案会使带有DG的DS的故障区域恢复为放射状配置,从而允许传统的OCPD隔离故障。根据断层的位置,创建的径向段是已知的,并且长度会有所不同。所提出的方法涉及使用可通过智能计量获得的需求信息来确定所形成的每个径向分段中的季节性最大多样化需求。这些季节性最大的多样化需求用于为DS的变电站过电流继电器提供几种启动设置。现有的保护方法可以保持径向过流保护协调的选择性。通过根据季节需求和系统配置变化调整其接力设置,可以提高变电站继电器的灵敏度。研究结果通过EMTP中的模拟报告。 / PSCAD?使用多馈线测试系统,该系统包括位于二级配电负荷水平的DG和智能电表。结果表明,基于带DG的DS中基于配置更改的变电站继电器的季节性设置可以提高变电站继电器的灵敏度。

著录项

  • 作者

    Douglin Richard Henry;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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