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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Maximizing Power-System Loadability in the Presence of Multiple Binding Complementarity Constraints
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Maximizing Power-System Loadability in the Presence of Multiple Binding Complementarity Constraints

机译:存在多重绑定互补约束时最大化电力系统的负载能力

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摘要

In this paper, the problem of maximizing power-system loadability with multiple complementarity constraints representing generator limits is examined. The structure of the loadability surface is investigated, the various type of limits are classified and a general algorithm to optimize settings of control variables, in order to maximize loadability margin is developed. The importance of nonsmooth corner points (CPs) of the loadability surface that are due to the simultaneous occurrence of several loadability conditions is discussed. At such limits, maximization of loadability margin is performed based on techniques provided by nonlinear optimization theory. For this purpose an algorithm to identify multiple binding constraints on a CP is developed. Illustrative examples on small, but realistic systems are included.
机译:在本文中,研究了用代表发电机极限的多个互补约束最大化电力系统负荷的问题。研究了可载荷表面的结构,对各种极限进行了分类,并开发了一种用于优化控制变量设置的通用算法,以最大化可载荷裕度。讨论了由于同时出现多个可加载性条件而导致的可加载性表面不光滑拐角点(CPs)的重要性。在这样的极限下,基于非线性优化理论提供的技术来实现可装载裕度的最大化。为此目的,开发了一种用于识别CP上多个绑定约束的算法。其中包含有关小型但实际系统的说明性示例。

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