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Optimal dynamic expansion planning of distribution systems considering non-renewable distributed generation using a new heuristic double-stage optimization solution approach

机译:使用新的启发式双阶段优化解决方案方法,考虑不可再生分布式发电的配电系统动态优化规划

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This paper presents a dynamic (i.e., time-based) model for distribution system expansion planning (DSEP) considering distributed generation. The proposed model optimizes both investment and operation costs of distribution system. It determines the optimal location and size of distributed generators as well as the reinforcement strategy for primary (i.e., medium voltage) distribution feeders along a specified planning horizon. Besides, the dynamic feature of this model enables it to determine the time of each investment. The investment costs consist of installation cost of distributed generators and reinforcement cost of primary distribution feeders. Similarly, the operation costs comprise the cost of energy losses, operation and maintenance cost of the equipment and cost of power purchased from upstream grid (i.e., sub-transmission or transmission grid). The introduced model is solved using a combination of two efficient heuristic methods of Modified Integer-coded Harmony Search (MIHS) to find the optimal expansion scheme and Enhanced Gravitational Search Algorithm (EGSA) to optimize the operation costs. Furthermore, the suggested solution approach also incorporates an efficient mechanism for coding the candidate solutions in MIHS algorithm. The effectiveness of the proposed method and coding mechanism is extensively demonstrated by testing on two radial distribution systems and comparing the obtained results with the results of several other solution techniques. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种考虑分布式发电的动态(即基于时间)的配电系统扩展计划(DSEP)模型。提出的模型优化了配电系统的投资和运营成本。它确定了分布式发电机的最佳位置和大小以及沿指定规划范围的一次(即中压)配电馈线的加固策略。此外,该模型的动态功能使它能够确定每次投资的时间。投资成本包括分布式发电机的安装成本和一次配电馈线的加固成本。类似地,运行成本包括能量损失成本,设备的运行和维护成本以及从上游电网(即子输电或输电电网)购买的电力成本。通过将两种有效的启发式方法结合使用改进的整数编码和声搜索(MIHS)来找到最佳扩展方案,并通过增强重力搜索算法(EGSA)来优化运营成本来解决引入的模型。此外,建议的解决方案方法还结合了一种有效的机制,用于在MIHS算法中编码候选解决方案。通过在两个径向分布系统上进行测试,并将获得的结果与其他几种求解技术的结果进行比较,充分证明了所提出的方法和编码机制的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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