模型失配对电力系统计算的影响,第一部分:对稳态计算的影响

Mao Anjia, Yue Jiaxi, Guo Zhizhong
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引用次数: 1

摘要

电力系统的安全可靠运行对国家经济发展和社会稳定具有重要意义。为了确定这一点,分析和计算起着重要的作用。电力系统的计算在时域上可分为三类:过去、现在和未来。而对未来的计算对于支持电力系统运行和生产安排显得更为重要。然而,几乎所有的电力系统的计算都是基于物理系统建立的数学模型;模型可能存在各种误差,与实际系统不匹配,特别是对未来的计算。计算模型与实际系统的不匹配影响了分析结果和电力系统的运行。本文采用矩阵分析法,分析了注入失配和电网结构失配两种模型失配对实际系统的影响。结果表明,注入参数失配的计算误差与失配量近似成线性关系,电网结构失配的计算误差与失配支路导纳及其节点电压相位角差密切相关。由于计算模型与实际系统总是存在不匹配,因此本文还建议在电力系统分析中应更多地依赖于测量而不是计算模型
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of model mismatch to power system calculation, part I: on the steady state calculation
Secure and reliable operation of power system is significant for nation's economy development and society stability. To ascertain this, analysis and calculation plays an important role. Power system calculations can be classified into three categories in time domain: for the past, for the present and for the future respectively. And the calculations for the future seem to be more significant to support power system operation and make production arrangement. However, almost all the calculations of power system are based on the mathematic models established from the physical system; and the models may have various errors and mismatch the actual system, especially for the calculations facing the future. The mismatch between calculation model and actual system influences the analysis result and the operation of power system. In this paper, the influence of two kinds of model mismatches injection mismatch and grid structure mismatch on the actual system are analyzed for power flow calculation using matrix analysis method. The results show that the calculation errors of injection parameter mismatch are approximately linear to the mismatch quantities, and the calculation errors of grid structure mismatch are closely related to the admittance of the mismatching branch and the phase-angle difference of its node voltage. Because the mismatch between calculation model and real system always exists, so this paper also suggests that we should depend more on measurements rather than calculation models in power system analysis
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