Coordination of Generation and Reactive Power Expansion Planning Considering APFC Units

Y. Hashemi, H. Abdolrezaei, B. Hashemi
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引用次数: 2

Abstract

This paper presents a framework to simultaneously coordinate generation and reactive expansion planning. With presence of amalgam power flow controller (APFC) as useful FACTS devices, generation planning has been done in different scenarios and cases. APFC is a combination of electromagnetic and voltage source converter that it has the specifications of both devices. The objective functions for generation expansion planning (GEP) includes investment and operation cost for generation units. Operation cost has been divided into three parts: a) maintenance cost, b) fuel cost and c) emission cost. Investment cost of reactive power and voltage deviation index are two objective functions considered in RPP. The proposed coordinated GEP and RPP is formulated as a multi-objective optimization problem that it is solved by adaptive NSGT-III. The proposed framework is a multi-objective optimization problem and the output of solved problem is Pareto-optimal diagram. Pareto-optimal diagram is a set of desirable points that it can be employed for expansion planning. To select the best solution among Pareto-points, TOPSIS method is used. The proposed framework is tested on 24-bus IEEE test system. The simulation results have been compared for two scenarios and four cases.
考虑APFC机组的发电与无功扩容规划协调
本文提出了一个同时协调发电和无功扩容规划的框架。汞合金潮流控制器(APFC)作为一种实用的FACTS设备,可以在不同的场景和案例中进行发电规划。APFC是一种结合了电磁源和电压源的变换器,它具有两种器件的规格。发电扩展规划的目标函数包括发电机组的投资和运行成本。运行成本分为三个部分:a)维护成本,b)燃料成本和c)排放成本。无功投资成本和电压偏差指标是RPP中考虑的两个目标函数。提出的协调GEP和RPP是一个多目标优化问题,由自适应NSGT-III求解。所提出的框架是一个多目标优化问题,所解问题的输出是帕累托最优图。帕累托最优图是一组可用于扩展规划的理想点。为了在pareto点中选择最优解,采用了TOPSIS方法。该框架在24总线IEEE测试系统上进行了测试。对两种情况和四种情况下的仿真结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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