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Effects of stiffness factor on bus voltage variations in the presence of intermittent distributed generation

机译:在间歇性分布式发电情况下,刚度因数对母线电压变化的影响

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Electrical distribution systems are experiencing increased penetration levels of distributed generation thanks to economic incentives and technology cost reductions. Analyzing the effects of distributed generation on planning and operation of distribution system is typically done based on steady-state simulations; output variability of renewable dispersed generation units implies the need for more dynamic evaluation of their effects on the system and for the introduction of mitigating measures. The authors previous work has shown the advantages of select meshed configuration of distribution systems for accommodating higher levels of distributed generation considering steady-state voltage and current limitations. In this paper, after introducing stiffness factor and its relation to Thevenin equivalent impedance, the effects of intermittent photovoltaic systems on bus voltages are investigated. The IEEE 34-node test feeder in its radial and in different meshed configurations is used as test case. Results of the study verify the superior performance of select meshed configuration for accommodating intermittent renewable resources in distribution systems.
机译:由于经济激励和技术成本降低,配电系统的分布式发电渗透率不断提高。通常基于稳态仿真来分析分布式发电对配电系统的计划和运行的影响。可再生分散发电单元的输出可变性意味着需要对它们对系统的影响进行更动态的评估,并采取缓解措施。作者先前的工作表明,考虑到稳态电压和电流限制,选择网状配置的配电系统的优势可适应更高级别的分布式发电。本文在介绍了刚度因子及其与戴维南等效阻抗的关系后,研究了间歇性光伏系统对母线电压的影响。以径向和不同网格配置的IEEE 34节点测试馈送器用作测试用例。研究结果验证了选择网状配置在容纳配电系统中间歇性可再生资源方面的优越性能。

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