基于模糊控制器的单相孤岛微电网不同负荷电压控制

S. Newaz, Md. Naiem-Ur-Rahman
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引用次数: 0

摘要

为了减轻现有电力系统的沉重压力,基于分布式发电的微电网系统在技术上和经济上都是可选择的。电压波动是孤岛微电网系统的主要问题之一。因此,应尽量减少THD水平,使其在IEEE标准规定的范围内。为了获得更平滑的电压,采用了模糊逻辑控制器,并与PID、P+谐振等传统控制器进行了比较。但随着THD电压水平的提高;上升时间、峰值时间、超调量和稳定时间都有所降低,但在这种情况下对系统无害。此外,通过使用四种不同的负载,对所建议的和已建立的控制器进行了分析。采用模糊控制器对谐波、非线性、异步和未知负载的THD水平分别提高了4.76%、1.397%、2.13%和0.09%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage Control of Single Phase Islanded Microgrid by Fuzzy Logic Controller for Different Loads
For mitigating heavy pressure on existing power system, distributed generation based microgrid system could be both technically and economically alternative. Voltage fluctuations is one of the main problems in islanded microgrid system. So, THD level should be minimized and be within the range specified by the IEEE standard. For achieving more smooth voltage, a fuzzy logic controller has been used and then compared with other established conventional controllers such as PID, P+Resonant. But with the improvement in THD level of voltages; rise time, peak time, overshoot and settling time have been degraded but in this case it is not harmful for the system. Also by using four different loads an analysis has been done both for the proposed and established controllers. The fuzzy logic controller shows the improved THD level 4.76%, 1.397%, 2.13% and 0.09% for harmonic, nonlinear, asynchronous and unknown load.
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