具有保证误差界的潮流方程的非局部近似

Rahmat Heidari, M. Seron, J. Braslavsky
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引用次数: 7

摘要

分布式发电接入电网水平的不断提高,激发了对网络稳定性和控制方法的研究,以维持电网的运行状态。为了更好地研究电网的特征,一个关键的挑战是在不同的情况下有一个可靠的网络模型。在本文中,我们推导了网络的结构化非线性模型,然后提出了一个捕获系统非线性的近似模型。然后,我们设计了电压控制功能,并推导了一个带有嵌入式控制器的动态网络模型。我们分析了精确模型和近似模型下被控网络的电压稳定性。特别地,我们给出了电压最终在两个模型的可量化范围内的条件。该结果还允许计算精确和近似模型电压之间差的界限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-local approximation of power flow equations with guaranteed error bounds
Progressive increase of distributed generation penetration levels into the power grid has motivated studies on network stability and control methods in order to maintain the grid in operational conditions. A key challenge to better study features of the power grid is to have a reliable network model under different circumstances. In this paper, we derive a structured nonlinear model for the network and then propose an approximate model that captures the system nonlinearities. We then design voltage control functions and derive a dynamic network model with embedded controllers. We analyse voltage stability of the controlled network for both the exact and approximate models. In particular, we give conditions for the voltage to ultimately lie within quantifiable bounds for both models. This result also allows to compute a bound on the difference between the exact and approximate model voltages.
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