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Identification of non-technical losses in distribution systems via state estimation and geometric tests

机译:通过状态估计和几何测试识别分配系统中的非技术损失

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The incidence of non-technical losses in distribution networks is a well-known detrimental factor to the whole economic chain related to the electric energy distribution process. It is thus important to equip distribution system operators with adequate tools to localize and quantify such losses, in order to subsequently take appropriate measures to curb undue consumer practices. This paper proposes a methodology based on state estimation and geometrically-based hypothesis testing capable of not only identifying the occurrence of non-technical losses, but also to estimate their magnitude. For that purpose, a three-phase state estimator is employed which processes available real-time measurements and load forecast values. Once the state estimates are available, hypotheses made by the operator about the load at selected nodes of the network are either confirmed or rejected by the accessory geometric procedure. In the latter case, the load mismatch corresponds to non-technical losses at that node and can be readily estimated. Two IEEE test feeders are used to illustrate the applicability and to assess the performance of the proposed approach.
机译:分销网络中非技术损失的发病率是与电能分配过程相关的全经经济链的众所周知的不利因素。因此,有足够的工具装备分配系统运营商来定位和量化这种损失,以便随后采取适当措施来抑制过度消费者的实践。本文提出了一种基于国家估计和基于几何假设检测的方法,不仅能识别非技术损失的发生,而且还提出了非技术损失的发生,而且还提出了估计其幅度。为此目的,采用三相状态估计器,其处理可用的实时测量和负载预测值。一旦状态估计可用,操作员就可以通过附件几何过程确认或拒绝网络中所选节点的负载的假设。在后一种情况下,负载不匹配对应于该节点处的非技术损失,并且可以容易地估计。两个IEEE测试馈线用于说明适用性并评估所提出的方法的性能。

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