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Probabilistic voltage stability assessment considering renewable sources with the help of the PV and QV curves

机译:通过PV和QV曲线考虑可再生能源的概率电压稳定性评估

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The use of renewable energy sources has increased year-on-year. Thus, there is an increasing rate of small generating units connected directly to distribution networks and micro-grids close to consumers. At the same time, these micro-sources must provide stability and reliability of electrical energy to the power network to which they are connected. In the technical literature, several studies have been done to ensure power systems with traditional generating sources to operate in a stable and reliable way, but there is an issue regarding generation uncertainty when a distribution system has many micro-sources. This is because of the uncertainty of primary sources, for example, wind and radiation intensity, and could result in intermittent generation. In this study, stability and reliability of voltage in a power system with distributed generation is analysed using simulation techniques. In the proposed method in this study voltage security analysis is jointly considered with probability laws. Moreover reliability theory is also considered in the proposed voltage collapse analysis methodology. The responsibility of generator in the voltage collapse process, the probabilistic risk of voltage collapse of each operating point and the probability of enlarging the system load as a function of different operating points are the outcome of the methodology, and it is validated by using the IEEE34 test feeder.
机译:可再生能源的使用量逐年增加。因此,越来越多的小型发电机组直接连接到配电网络和靠近消费者的微电网。同时,这些微源必须向与其连接的电力网络提供电能的稳定性和可靠性。在技​​术文献中,已经进行了一些研究以确保具有传统发电源的电力系统能够以稳定可靠的方式运行,但是当配电系统具有许多微源时,发电不确定性存在问题。这是因为主要来源的不确定性,例如风和辐射强度,并可能导致间歇性产生。在这项研究中,使用仿真技术分析了分布式发电电力系统中电压的稳定性和可靠性。在这项研究中提出的方法中,将电压安全性分析与概率定律共同考虑。此外,在提出的电压崩溃分析方法中还考虑了可靠性理论。发电机在电压崩溃过程中的责任,每个工作点电压崩溃的概率风险以及作为不同工作点函数的系统负载增大的可能性是该方法的结果,并且已通过IEEE34进行了验证测试送纸器。

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