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  5. Control of a multi-functional grid-connected solar PV system using instantaneous reactive power (PQ) theory for current harmonic alleviations
 
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Control of a multi-functional grid-connected solar PV system using instantaneous reactive power (PQ) theory for current harmonic alleviations

Journal
Journal of Physics: Conference Series
ISSN
17426588
Date Issued
2020-01-07
Author(s)
Nor Hanisah Baharudin
Universiti Malaysia Perlis
Tunku Muhammad Nizar Tunku Mansur
Universiti Malaysia Perlis
Rosnazri Ali
Universiti Malaysia Perlis
Azahid W.N.A.
Kumuthawathe Ananda-Rao
Universiti Malaysia Perlis
Muhammad Irwanto Misrun
Universiti Malaysia Perlis
Abdullah A.M.
Surina Mat Suboh
Universiti Malaysia Perlis
DOI
10.1088/1742-6596/1432/1/012022
Abstract
In recent years, the advance usages of non-linear loads have led to the serious power quality problem in the distribution system. Non-linear load will inject the current harmonics and cause power quality problem at Point of Common Coupling (PCC). This problem can be improved by using power filter. Power filter can be divided into passive power filter and active power filter. Passive filter is an appropriate solution to solve power quality problem in term of harmonic mitigation due to a simple circuit, low cost and less energy requirement. However, active power filter (APF) is more suitable due to better performance to solve power quality problem for current harmonics issue. This paper focuses in designing the application of a multi-functional grid-connected solar PV system integrated with DSTATCOM by using Instantaneous Reactive Power (PQ) theory controller to mitigate the current harmonics injected by non-linear load at the distribution system. MATLAB/SIMULINK software is used to simulate the performance of the multi-functional GCPV based SAPF according to IEEE Standard 519:2014 which THD of the line current at the Pont of Common Coupling (PCC) should be less than 8%.
File(s)
Research repository notification.pdf (4.4 MB)
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