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引用次数: 6

摘要

分布式发电机(dg)是直接连接到配电网的小型发电机组。随着配电网与输电网的互联,这些dg对提高整个系统可靠性的影响是可以观察到的。系统的可负荷性、系统的总功率损耗和系统的总成本是规划全网dg的重要方面。在这项工作中,使用混合整数非线性规划(MINLP)方法确定了dg的最佳放置位置。最优站点是与输电系统相连的不同配电网。同时考虑了dg的尺寸,从系统的可负载性、系统的总功耗和系统的总成本等方面提高了可靠性。该方法包括三种最优潮流(OPF)问题的表述,在功率平衡方程、每条传输线的潮流限制、每条母线的电压限制的约束下,目标是使系统的可负荷性最大化,使系统的总功率损耗和总成本最小化。在这些问题公式中,引入了一个二进制向量,表示DG在各个负载服务节点上的位置。结果在标准5总线测试系统和IEEE 24总线可靠性测试系统(RTS)上进行了说明。
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Optimal placement of DGs using MINLP in deregulated electricity market
Distributed generators (DGs) are small generating units connected directly to the distribution networks. As distribution networks are interconnected with the transmission networks, the impact of these DGs to enhance the reliability of the whole system can be observed. System loadability, total power loss in the system and total cost of the system are some of the important aspects in planning the DGs throughout the network. In this work, optimal sites for placement of DGs have been identified by using mixed integer nonlinear programming (MINLP) approach. The optimal sites are the different distribution networks connected to the transmission system under consideration. Also, the sizing of the DGs is taken into consideration, while enhancing the reliability in terms of system loadability, total power loss in the system and total cost of the system. The approach includes three optimal power flow (OPF) problem formulations, in which the objectives are to maximize the system loadability, and minimize the total power loss in the system and total cost of the system subjected to the constraints of power balance equations, power flow limits in each transmission line, voltage limits at every bus. In these problem formulations one binary vector is introduced that indicates the site of the DG location at various load serving nodes. The results are illustrated on Standard 5-bus test system and IEEE 24-bus Reliability Test System (RTS).
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