Analysis of Shunt Active Power Filter Using Adaptive Blanket Body Cover Algorithm (ABBC) in Aircraft System

Author(s):  
Saifullah Khalid

A novel adaptive blanket body cover algorithm (ABBC) has been presented, which has been used for the optimization of conventional control scheme used in shunt active power filter. The effectiveness of the proposed algorithm has been proven by applying this in aircraft system. The superiority of this algorithm over existing genetic algorithm results has been presented by analyzing the THD and compensation time of both the algorithms. The simulation results using the MATLAB model ratify that that algorithm has optimized the control technique, which unmistakably proves the usefulness of the proposed algorithm in 400 Hertz aircraft system.

2017 ◽  
Vol 2 (1) ◽  
pp. 1-6
Author(s):  
Saifullah Khalid

A novel Adaptive Spider Net Search Algorithm (ASNS) has been presented, which has been used for the optimization of conventional control scheme used in shunt active power filter for aircraft system. The superiority of this algorithm over existing Genetic Algorithm results has been presented by analyzing the THD and compensation time of both the algorithms. The simulation results using MATLAB model ratify that algorithm has optimized the control technique, which unmistakably prove the usefulness of the proposed algorithm in aircraft supply system.


Author(s):  
S. Khalid

A novel Adaptive Blanket Body Cover Algorithm (ABBC) has been presented, which has been used for the optimization of conventional control scheme used in shunt active power filter. The effectiveness of the proposed algorithm has been proved by applying this in balanced, unbalanced and distorted supply conditions. The superiority of this algorithm over existing Genetic Algorithm results has been presented by analyzing the Total Harmonic Distortion and compensation time of both the algorithms. The simulation results using MATLAB model ratify that algorithm has optimized the control technique, which unmistakably prove the usefulness of the proposed algorithm in balanced, unbalanced and distorted supply system.


2018 ◽  
Vol 27 (11) ◽  
pp. 1850166 ◽  
Author(s):  
S. Senguttuvan ◽  
M. Vijayakumar

This paper presents a solar photovoltaic (SPV) interfaced shunt active power filter (APF), which is certainly one of the utmost effective custom power devices, which mitigates the long duration current harmonics and compensates the reactive power. The shunt APF consists of the parallel connected voltage source inverter (VSI) and storage capacitor which is connected in the DC link. The compensation ability of the APF is mainly inspired by the control technique which is used to estimate the reference source current signal. Furthermore, the controller chooses the number of devices required and measurement practices; thus, it determines the corresponding costs. The fuzzy logic controller (FLC)-based second order generalized integrator (SOGI) is employed to estimate the reference source current of the shunt APF. The presented control scheme does not require voltage associated information and sensors, because it utilizes the details concerning the VSI and load currents. The shunt APF uses the solar photovoltaic (SPV) system with an auxiliary energy storage unit to deliver the required active power to the electric grid and affords the uninterrupted compensation. The performance analysis has been carried out with different load and voltage conditions through the simulation by using the MATLAB/Simulink. The experimental prototype was developed to confirm the usefulness of the PV integrated shunt APF with FLC-based SOGI control scheme.


2019 ◽  
Vol 8 (1) ◽  
pp. 25-46
Author(s):  
Saifullah Khalid ◽  
Sudhanshu Verma

In this article, a novel Adaptive Mosquito Blood Search Algorithm (AMBS) has been presented, which has been used for the optimization of conventional control scheme used in shunt active power filter. The effectiveness of the proposed algorithm has been proved by applying this in balanced, unbalanced and distorted supply conditions. The superiority of this algorithm over existing Genetic Algorithm results has been presented by analyzing the Total harmonic distortion (THD) and compensation time of both the algorithms. The simulation results using MATLAB model ratify that algorithm has optimized the control technique, which unmistakably proves the usefulness of the proposed algorithm in the balanced, unbalanced and distorted supply system.


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