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Optimal capacity planning of substation transformers by demand response combined with network automation

机译:通过需求响应和网络自动化相结合的变电站变压器最优容量规划

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摘要

The inclusion of smart grid features such as demand response (DR) and network automation for capacity planning of substation transformers may provide substantial monetary savings. This paper proposes an optimization model for quantification of the savings in capacity management of substation transformers over long-run. The proposed model incorporates the DR as a resource to decrease the outage cost during contingencies while considering existing switching types for load transfer between substations. The model provides optimal selection and scheduling of multistage transformer installations and their refurbishments by considering all the costs associated with them including investment, losses, maintenance, reliability, and the salvage value. For a realistic study, numerical value of the savings in transformers' cost is calculated for a typical Finnish two-transformer primary distribution substation planning over a period of forty years. Case studies are performed based on situations encountered by utilities and type of load transfer switching (manual and remote) between substations. A sensitivity analysis based on DR penetration and load curtailment (LC) cost is also performed. The results indicate that substantial monetary benefits can be obtained in substation transformers' cost by utilities through employing DR. The benefit of DR is superior for cases where it is used in combination with remote switching of load transfer between neighbouring substations (NSS). (C) 2016 Elsevier B.V. All rights reserved.
机译:将智能电网功能(如需求响应(DR)和网络自动化)包含在变电站变压器的容量规划中可以节省大量金钱。本文提出了一种用于量化变电站变压器长期容量管理节省量的优化模型。所提出的模型将DR作为一种资源,以减少突发事件期间的停电成本,同时考虑现有的切换类型以在变电站之间进行负载转移。该模型通过考虑与之相关的所有成本(包括投资,损失,维护,可靠性和残值),提供了多级变压器安装及其翻新的最佳选择和计划。为了进行现实的研究,计算了一个典型的芬兰两变压器一次配电变电站规划为期40年的变压器成本节省的数值。根据公用事业遇到的情况和变电站之间的负载转移切换类型(手动和远程)进行案例研究。还进行了基于DR穿透和削减负载(LC)成本的敏感性分析。结果表明,公用事业公司通过采用灾难恢复可以在变电站变压器的成本中获得可观的金钱收益。如果将DR与相邻变电站(NSS)之间的负载转移的远程切换结合使用,则DR的优势更为明显。 (C)2016 Elsevier B.V.保留所有权利。

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