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A Technique to Utilize Smart Meter Load Information for Adapting Overcurrent Protection for Radial Distribution Systems with Distributed Generations

机译:利用智能电表负荷信息来适应分布式发电径向配电系统的过电流保护的技术

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摘要

Smart radial distribution grids will include advanced metering infrastructure (AMI) and significant distributed generators (DGs) connected close to loads. DGs in these radial distribution systems (RDS) introduce bidirectional power flows (BPFs) and contribute to fault current. These BPFs may cause unwanted tripping of existing overcurrent (OC) protection devices and result in permanent outages for a large number of customers. This thesis presents a protection approach that modified an existing overcurrent protection scheme to reduce the number of customers affected by faults in RDS with DGs. Further, a technique is presented that utilizes customers loading information from smart meters in AMI to improve the sensitivity of substation OC relays by adaptively changing the pickup settings. The modified protection approach involves predefining zones in RDS with DGs and installing directional OC relays and circuit breakers at the zonal boundaries. Zonal boundary relays determine faulted zones by sharing information on the direction of detected faults current using binary state signals over a communication medium. The technique to adapt the substation relay pickup settings uses the demand measurements from smart meters for two 12-hour intervals from the previous day to determine the maximum diversified demand at the relay?s location. The pickup settings of the substation relay for the two 12-hour intervals during the following day for the zone supplied by the substation are adaptively set based on the current that corresponds to the maximum diversified demand from the previous day. The techniques were validated through simulations in EMTP/PSCAD using an expanded IEEE 34 node radial test feeder that included DGs and a secondary distribution level. By decentralizing the control of the zonal boundary breakers, the single point of failure was eliminated in the modified protection approach. The cases studied showed that the modified protection approach allows for selective identification and isolation of the faulted zones. Also, the sensitivity of the substation OC relay was improved by at least 24% by using the pickup settings for the two 12-hour intervals from the smart meter demand measurements compared to the pickup settings computed using the conventional methodology based on the maximum loading of the zone.
机译:智能径向配电网将包括先进的计量基础设施(AMI)和靠近负载的大量分布式发电机(DG)。这些径向配电系统(RDS)中的DG引入了双向潮流(BPF),并导致故障电流。这些BPF可能会导致现有的过电流(OC)保护设备意外跳闸,并导致大量客户永久停机。本文提出了一种保护方法,该方法修改了现有的过流保护方案,以减少受DG的RDS故障所影响的客户数量。此外,提出了一种技术,该技术利用客户从AMI中的智能电表加载信息来通过自适应地更改拾音器设置来提高变电站OC继电器的灵敏度。改进的保护方法包括在RDS中使用DG预先定义区域,并在区域边界安装定向OC继电器和断路器。区域边界继电器通过使用通信介质上的二进制状态信号共享有关检测到的故障电流方向的信息来确定故障区域。适应变电站继电保护设置的技术使用智能电表的需求量测量,从前一天开始的两个12小时间隔中,以确定中继位置的最大多样化需求。根据与前一天最大多样化需求相对应的电流,在第二天为变电站提供的区域设置两个十二小时间隔的变电站继电器的启动设置。通过使用扩展的IEEE 34节点径向测试馈线(包括DG和二级分布级别),通过EMTP / PSCAD中的仿真对技术进行了验证。通过分散控制区域边界断路器,在改进的保护方法中消除了单点故障。研究的案例表明,改进的保护方法可以选择性地识别和隔离断层带。此外,与使用传统方法基于最大负载的计算得出的启动设置相比,通过使用智能电表需求测量中两个12小时间隔的启动设置,变电站OC继电器的灵敏度至少提高了24%。该区域。

著录项

  • 作者

    Ituzaro Fred Agyekum;

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