UPFC控制采用梯度下降搜索

W. Siever, R. Kalyani, M. Crow, D. Tauritz
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引用次数: 3

摘要

不断增长的需求加上对新建设的限制表明,为了继续可靠运行,必须更好地控制现有的电力传输。FACTS设备的最新进展提供了一种更好地控制输电网络潮流的机制。一种特殊的设备,统一潮流控制器(UPFC),即使在系统遭受部分故障(自然发生,由于人为错误或恶意攻击)时,也最有希望保持运行。除了资金成本之外,UPFC广泛使用的主要障碍是选择最具成本效益的安装位置以及安装后对其进行适当控制的综合问题。在本文中,我们列举了基于负荷流计算的梯度下降搜索比目前使用的许多优化技术更现实和准确的证据。然后,我们证明了梯度下降搜索可以用来选择控制点,这些控制点比最大流量技术找到的控制点更能提高系统的容错性。此外,我们还证明了计算系统的大小和计算次数是有界的,并且对于实时控制是实用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UPFC control employing gradient descent search
Increasing demand coupled with limitations on new construction indicate that existing power transmission must be better controlled in order to continue reliable operation. Recent advances in FACTS devices provide a mechanism to better control power flow on the transmission network. One particular device, the unified power flow controller (UPFC), holds the most promise for maintaining operation even when the system has suffered partial failure (either naturally occurring, due to human error, or a malicious attack). In addition to the capital cost, the primary obstacles to widespread UPFC use are the combined problems of selecting the most cost effective locations for installation and maintaining proper control of them once installed. In this paper we list evidence that gradient descent search based on load-flow computation is more realistic and accurate than many of the optimization techniques currently in use. We then demonstrate that gradient descent search can be used to select control points that improve system fault tolerance more than those found by the max-flow technique. In addition, we demonstrate that the size of the system being computed and the number of computations is bounded and is practical for real time control.
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