Load frequency controller design for microgrid using internal model control approach

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作者
机构
[1] Jeya Veronica, A.
[2] Senthil Kumar, N.
来源
Senthil Kumar, N. (senthilkumar.nataraj@vit.ac.in) | 1600年 / International Journal of Renewable Energy Research卷 / 07期
关键词
Design - Electric control equipment - Electric frequency control - Electric load management - Fuel cells - Fuel storage - Model predictive control - Press load control - Proportional control systems - Renewable energy resources - Turbogenerators - Two term control systems - Wind Turbine Generators;
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摘要
The impact of renewable energy sources is no longer negligible in microgrid when high penetration levels are required. This paper explores load frequency control issues in a microgrid comprising of wind turbine generators(WTG), diesel generators(DG), fuel cells(FC) fed by aqua electrolyzers(AE) and battery energy storage systems(BESS). Due to the interconnection of these intermittent energy sources the microgrid frequency deviates. To enhance better frequency regulation in the microgrid, proportional integral(PI) controllers are used for controlling the real power generation of these micro sources. It is observed that the system frequency regulation improves considerably by utilizing PI Controllers tuned using internal model control(IMC) approach. This paper explores the design procedure of IMC tuned PI controllers and fractional order PI(FOPI) controllers for micro grid systems. The robustness of the IMC based PI Controllers have been verified by changing the parameters of the microgrid sources.
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