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A Novel Fast Semidefinite Programming-Based Approach for Optimal Reactive Power Dispatch

机译:一种新的快速半纤维编程基于最佳无功功率调度的方法

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摘要

Reactive power planning problem is the key to secure and economic operation of power systems. Optimal management of existing reactive sources leads to loss minimization and economic performance of the system. Because of the nonlinear inter-relation between the physical parameters of the electric grid, this problem is a highly nonlinear and nonconvex constrained optimization problem. The application of semidefinite programming (SDP) to power system problems has recently gained considerable research attention. A recent SDP formulation uses a convex relaxation to the nonconvex optimal power flow problem under some technical conditions. This paper proposes a novel equivalent convex optimization formulation for the optimal reactive power dispatch (ORPD) problem and presents a new framework for finding the global optimum. Numerical results for the IEEE 30-bus and 118-bus test systems show that the proposed scheme obtains the optimum operation point and outperforms various state-of-the-art methods significantly.
机译:无功功率规划问题是安全系统安全和经济运行的关键。现有反应源的最佳管理导致系统的损失最小化和经济性能。由于电网的物理参数之间的非线性相互关系,该问题是高度非线性和非凸起的优化问题。 SEMIDEFINITE编程(SDP)在电力系统问题上的应用最近获得了相当大的研究关注。最近的SDP制剂在某些技术条件下使用凸面放松对非凸起最佳功率流问题。本文提出了一种新的相同凸优化制定,用于最佳无功功率调度(ORPD)问题,并提出了一种寻找全球最佳的新框架。 IEEE 30-BAR和118总线测试系统的数值结果表明,所提出的方案获得了最佳的操作点和优于各种最先进的方法。

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