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A Study on the Power System Security under Future Uncertainties An Examination based on the Robust Power System Security

机译:未来不确定性下的电力系统安全性研究-基于鲁棒性电力系统安全性的检验

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摘要

In this paper, we propose three applications to quantitatively evaluate N-1 security with increased uncertainties. By using a robust dynamic security region (RDS), which is based on the concept of robust power system security (RS), the key region for judging the security and a new evaluation index for quantitative analysis, we can evaluate power system security as follows. (1) The calculation of the RDS at the time of yearly peak load demand can be recognized as the benchmark for the N-1 security at present, and this method can be applied to the future power system with increased renewable energy resources (RES) such as PV. (2) We show the yearly declining trend for N-1 security resulting from increased PV deployment year by year. (3) We calculate the necessary amount of additional power supply capacity, including conventional electric power generators or storage batteries, needed for maintaining the N-1 security at the present level. The effectiveness of the proposed method is demonstrated through simulations using a model system with three machines. (C) 2016 Wiley Periodicals, Inc.
机译:在本文中,我们提出了三个应用程序来定量评估不确定性增加的N-1安全性。通过使用基于稳健电力系统安全性(RS)概念,稳健性判断的关键区域和定量分析的新评估指标的稳健动态安全性区域(RDS),可以对电力系统安全性进行如下评估。 (1)每年峰值负荷需求时的RDS的计算可以被认为是目前N-1安全性的基准,并且该方法可以应用于具有增加的可再生能源(RES)的未来电力系统例如PV。 (2)我们显示,由于PV部署逐年增加,N-1安全性逐年下降。 (3)我们计算出必要的额外电源容量,包括将常规N-1安全保持在当前水平所需的常规发电机或蓄电池。通过使用具有三台机器的模型系统进行仿真,证明了该方法的有效性。 (C)2016威利期刊公司

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