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Distributed Outage Detection in Power Distribution Networks

机译:配电网络中的分布式中断检测

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Real time topology knowledge is essential for situational awareness of power distribution networks. Line outages change the topology of a distribution network. Hence, outage detection is an important task. Most of the existing outage detection algorithms are centralized, in which sensors communicate their data to a control center which performs outage detection using the received data. However, with the increasing size of the distribution network and with different areas of the network being monitored by different operators, communication is a bottleneck and scalability is a major concern. To address these issues, we propose a novel outage detection algorithm using a divide and conquer approach. First, we divide a distribution network into sub-networks, such that outage detection can be run in parallel in each sub-network independently ensuring scalability to large networks. Further, to reduce the latency, bandwidth and attenuation challenges associated with communications in a large network, we divide each sub-network into multiple control areas which communicate only with their neighbors. We employ a distributed iterative load estimation across the control areas of each sub-network and then use the load estimate for local outage detection in each control area. The performance of our algorithm is evaluated for multiple feeder models and compared against traditional centralized outage detection algorithms.
机译:实时拓扑知识对于配电网络的情境意识至关重要。线路中断更改分销网络的拓扑。因此,中断检测是一个重要任务。大多数现有中断检测算法是集中的,其中传感器将其数据传送到使用接收的数据执行中断检测的控制中心。然而,随着分销网络的越来越大并且通过不同的运营商监测网络的不同区域,通信是瓶颈,可扩展性是一个主要问题。为了解决这些问题,我们提出了一种使用鸿沟和征服方法的新型中断检测算法。首先,我们将分发网络划分为子网,使得中断检测可以在每个子网络中独立地确保大型网络的可扩展性。此外,为了减少与大型网络中的通信相关联的延迟,带宽和衰减挑战,我们将每个子网划分为仅与其邻居交流的多个控制区域。我们在每个子网的控制区域上使用分布式迭代负载估计,然后使用每个控制区域中的本地中断检测的负载估计。对多种进料器模型进行评估的性能,并与传统的集中中断检测算法进行比较。

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