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Yang Fu

Researcher at Shanghai University of Electric Power

Publications -  89
Citations -  1836

Yang Fu is an academic researcher from Shanghai University of Electric Power. The author has contributed to research in topics: Wind power & Electric power system. The author has an hindex of 17, co-authored 73 publications receiving 1121 citations. Previous affiliations of Yang Fu include Shanghai University.

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Decentralized Sliding Mode Load Frequency Control for Multi-Area Power Systems

TL;DR: Based on the decentralized sliding mode control, a load frequency controller is designed in this article for multi-area interconnected power systems with matching and unmatched uncertainties, and a proportional and integral switching surface is constructed for each area to improve system dynamic performance in reaching intervals.
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Coordinated Microgrid Frequency Regulation Based on DFIG Variable Coefficient Using Virtual Inertia and Primary Frequency Control

TL;DR: In this paper, a variable coefficient combined virtual inertia and primary frequency control strategy for doubly fed induction generators (DFIG) in coordination with diesel generator to participate in wind/photovoltaic/diesel microgrid frequency regulation was proposed.
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The sliding mode load frequency control for hybrid power system based on disturbance observer

TL;DR: In this paper, a load frequency control (LFC) strategy based on sliding mode control (SMC) theory and disturbance observer is proposed for the single area power system in order to reduce the frequency deviation caused by the unmatched parameter uncertainties such as the renewable source and different load disturbance.
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Coordination of PSSs and SVC Damping Controller to Improve Probabilistic Small-Signal Stability of Power System With Wind Farm Integration

TL;DR: In this paper, a modified fruit fly optimization algorithm (MFOA) combined with a probabilistic approach is proposed to coordinate and optimize the parameters of power system stabilizers (PSSs) and static VAR compensator (SVC) damping controller.
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Frequency Control of an Isolated Micro-Grid Using Double Sliding Mode Controllers and Disturbance Observer

TL;DR: A novel frequency control method based on double sliding mode (SM) controllers is proposed for isolated micro-grids with renewable sources to improve dynamic performance of the diesel generator system.