T-S fuzzy model based Maximum Power Point Tracking control of photovoltaic system

Fuzzy Systems(2013)

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摘要
This work aims at building a robust controller using Maximum Power Point Tracking (MPPT) strategy for a solar power generation system by implementing Takagi-Sugeno (T-S) Fuzzy model of the power system. A Dc-Dc buck converter is used to control the power output from the Photovoltaic (PV) Array. We propose a method to design a state feedback controller to regulate power output by controlling the duty cycle of the converter while maintaining the system Lyapunov stable. Both Fixed gain and variable gain state feedback controllers are compared for the purpose of stability. In addition, a tracking controller is designed which searches for Maximum Power Point (MPP) to optimize systems performance without actually calculating the MPP or measuring the solar radiation. The controller is also robust to disturbances in atmospheric conditions. The proposed system is found to be extremely efficient even in rapidly changing weather conditions. The system is found to reach optimal operation point within few milliseconds. The stability analysis is shown wherever appropriate. All the results are shown in the form of simulations.
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关键词
Lyapunov methods,fuzzy control,maximum power point trackers,photovoltaic power systems,power control,power generation control,power system stability,robust control,solar power,state feedback,DC-DC buck converter,Lyapunov stable,MPPT strategy,T-S fuzzy model,Takagi-Sugeno fuzzy model,atmospheric condition,duty cycle control,fixed gain state feedback controller,maximum power point tracking control,optimal operation point,photovoltaic array,photovoltaic system,power output regulation,power system,robust controller,solar power generation system,stability analysis,variable gain state feedback controller,Maximum Power Point Tracking (MPPT),Photovoltaic (PV) power system,Stabilizing controller,Takagi-Sugeno (T-S) Fuzzy Model
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