A distributed algorithm for optimal dispatch in smart power grids with piecewise linear cost functions

A. Yasmeen, R. Mudumbai, S. Dasgupta
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引用次数: 2

Abstract

We consider the optimal economic dispatch of power generators in a smart electric grid for allocating power between generators to meet load requirements at minimum total cost. We assume that each generator has a piecewise linear cost function. We first present a polynomial time algorithm that achieves optimal dispatch. We then present a decentralized algorithm where, each generator independently adjusts its power output using only the aggregate power imbalance in the network, which can be observed by each generator through local measurements of the frequency deviation on the grid. The algorithm we propose exponentially erases the power imbalance, while eventually minimizing the generation cost.
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基于分段线性代价函数的分布式智能电网最优调度算法
考虑智能电网中各发电机组的最优经济调度问题,即以最小的总成本在各发电机组之间分配电力以满足负荷要求。我们假设每个发电机都有一个分段线性代价函数。我们首先提出了一个多项式时间算法来实现最优调度。然后,我们提出了一种分散的算法,其中每个发电机仅使用网络中的总功率不平衡来独立调整其功率输出,每个发电机可以通过局部测量电网上的频率偏差来观察到这一点。我们提出的算法以指数方式消除了电力不平衡,同时最终使发电成本最小化。
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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A distributed algorithm for optimal dispatch in smart power grids with piecewise linear cost functions
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