MOPSO-based optimal control of shunt active power filter using a variable structure fuzzy logic sliding mode controller for hybrid (FC-PV-Wind-Battery) energy utilisation scheme

被引:32
作者
Elgammal, Adel A. A. [1 ]
El-naggar, Mohammed F. [2 ,3 ]
机构
[1] Univ Trinidad & Tobago, Dept Energy, SMIEEE, MIET, Point Lisas Campus, Wallerfield, Trinidad Tobago
[2] Prince Sattam Bin Abdulaziz Univ, Dept Elect Engn, Al Kharj 16278, Saudi Arabia
[3] Helwan Univ, Dept Elect Engn, Cairo, Egypt
关键词
optimal control; active filters; variable structure systems; fuzzy control; photovoltaic power systems; wind power plants; harmonic distortion; neurocontrollers; power generation control; power harmonic filters; battery storage plants; particle swarm optimisation; MOPSO-based optimal control; shunt active power filter; variable structure fuzzy logic sliding mode controller; hybrid FC-PV-wind-battery energy utilisation scheme; smart grid technology; distributed generation low-impact interface scheme; hybrid fuel cell-photovoltaic-wind-battery active power filter energy scheme; variable structure SMFLC; multiobjective particle swarm optimisation; fuzzy logic control membership functions; SMFLC weighting factors; total harmonic distortion; THD minimisation; source current waveform; voltage waveform; inverter capacitor DC voltage; Simulink-Matlab; MOPSO-SMFLC controller; proportional-integral-derivative; feed-forward multilayer neural network controller; single-objective particle swarm optimisation; OPTIMIZATION;
D O I
10.1049/iet-rpg.2016.0440
中图分类号
X [环境科学、安全科学];
学科分类号
083001 [环境科学];
摘要
This paper presents an effective concept for hybrid fuel cell-photovoltaic-wind-battery active power filter (FC-PV-Wind-Battery) energy scheme based on the variable structure sliding mode fuzzy logic controller (SMFLC) using the multi-objective particle swarm optimisation (MOPSO). The parameters of the fuzzy logic control membership functions and the weighting factors of the SMFLC can be tuned by MOPSO in such an approach to optimise the dynamic performance of the shunt active power filter (SAPF) and minimise the total harmonic distortion (THD) of the source current waveform and voltage waveform of the hybrid (FC-PV-Wind-Battery). A group of objective functions was chosen to validate the dynamic performance of the SAPF and the effectiveness of the MOPSO-SMFLC. These selected fitness functions are: (i) minimising the error of the inverter capacitor DC voltage, (ii) minimising the THD of the output current and voltage of DC and AC sides and (iii) minimising the controller reaching time. A computer simulation study using Simulink/Matlab and experimental laboratory prototype were carried on to asses and compare the dynamic performance of the proposed MOPSO-SMFLC controller with the conventional proportional-integral-derivative, variable structure SMFLC, the feed-forward multilayer neural network controller and the variable structure SMFLC based on the single-objective particle swarm optimisation.
引用
收藏
页码:1148 / 1156
页数:9
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