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Reliability and sensitivity analysis of composite power systems considering voltage and reactive power constraints

机译:考虑电压和无功约束的复合电力系统的可靠性和灵敏度分析

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摘要

This study investigates the effects of voltage and reactive power constraints on composite system reliability indices. Four indices have been used to assess the sensitivity of load curtailments to voltage and reactive power constraints. Furthermore, expressions to evaluate the sensitivity of the severity indices with respect to the voltage and reactive power constraints have been developed. Extensive simulations on the Institute of Electrical and Electronics Engineers (IEEE) reliability test system based on the AC power flow model were carried out to correlate the violations of these limits and the loading level of the system. A non-linear, AC power flow-based model has been used to accurately represent system redispatch. A state space reduction technique has been utilised to reduce the computation time. A comparison between redispatch models using AC and DC power flow has been provided to illustrate the benefits of the more accurate AC flow model and to investigate the effects of the voltage and reactive power constraints on reliability indices.
机译:这项研究调查了电压和无功功率约束对复合系统可靠性指标的影响。四个指标已用于评估负载削减对电压和无功功率约束的敏感性。此外,已经开发出用于评估严重性指标相对于电压和无功功率约束的敏感性的表达式。在电气和电子工程师协会(IEEE)可靠性测试系统的基础上,基于交流潮流模型进行了广泛的仿真,以将违反这些限制的情况与系统的负载水平相关联。基于非线性,交流潮流的模型已被用来精确地表示系统的重新分配。使用状态空间缩减技术来减少计算时间。提供了使用交流和直流功率流的重新分配模型之间的比较,以说明更精确的交流流模型的好处,并研究电压和无功约束对可靠性指标的影响。

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