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Area equivalents for spinning reserve determination in interconnected power systems

机译:互连电力系统中确定旋转备用量的面积等效

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摘要

The current study applies the cost-benefit analysis method to determine the optimal amount of spinning reserve. However, it is difficult for the method to handle large size problem, like large interconnected power systems with several control areas, directly. Therefore, this paper proposes a power system equivalent for the original system to reduce the complexity of the original problem. According to the proposed algorithm, each area of the system is first modeled by an equivalent system, obtained by the RE! (radial - equivalent - independent) method, and an interconnected REI equivalent is obtained for the original interconnected system. A cost-benefit analysis is then performed to determine the spinning reserve requirements of both the original and equivalent systems. The cost-benefit algorithm considers either the SCUC (security constrained unit commitment) or the SCED (security constrained economic dispatch). Finally, the proposed interconnected REI equivalent is evaluated by comparing the spinning reserve of each control area in the original system with that in the equivalent system. Numerical studies are performed on two IEEE test systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当前的研究应用成本效益分析方法来确定最佳的纺丝储备量。但是,该方法难以直接处理大型问题,例如具有多个控制区域的大型互连电源系统。因此,本文提出了一种等效于原始系统的电力系统,以降低原始问题的复杂性。根据提出的算法,系统的每个区域首先由一个等效系统建模,该等效系统由RE! (径向-等效-独立)方法,并且为原始互连系统获得了互连REI等效项。然后进行成本效益分析,以确定原始系统和等效系统的纺纱储备要求。成本效益算法考虑了SCUC(受安全约束的单位承诺)或SCED(受安全约束的经济派遣)。最后,通过将原始系统中每个控制区域的旋转备用空间与等效系统中的每个控制区域的旋转备用空间进行比较,来评估建议的互连REI等效区域。数值研究是在两个IEEE测试系统上进行的。 (C)2015 Elsevier Ltd.保留所有权利。

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