一种实用的有功电力经济调度算法

Xingquan Ji, Zhipeng Liu, F. Wen
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引用次数: 0

摘要

随着燃料价格的上涨和电力工业的发展,有功电力经济调度问题日益突出。然而,电力系统及其运行是最复杂的工程问题之一,由于其高度非线性和计算困难的环境。因此,很难建立一个有效的模型和算法来解决这一问题。本文提出了一种基于导纳矩阵的新算法,其目标函数是发电燃料成本最小。该算法同时考虑了电力系统运行中的机组容量限制、功率均衡约束和主动传输功率损耗。采用限制法处理阈值交叉问题,采用微增量速率等损耗原理(ELMIRP)进行负荷分配。通过数值实验验证了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A practicable algorithm for active power economic dispatch
With increasing fuel prices and developing of the power industry, the active power economic dispatch (APED) may become a more significant problem. However, electrical power systems and their operation are among the most complex problems of engineering due to their highly nonlinear and computationally difficult environments. As a result, it is difficult in establishing an effective model and algorithm for the APED problem. In this paper, we present a new algorithm based on admittance matrix to solve APED, whose object function is to minimize the fuel cost of generation. The unit capacity limit, the power balance constraint and the active transmission power losses in the power system operation are all considered in this algorithm. We use limitation method to cope with the threshold-crossing problem, and adopt the equal loss of micro-incremental rate principle (ELMIRP) to distribute load. Numerical experiments are included to demonstrate the effectiveness of the proposed algorithm.
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