Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon

This paper presents a Modified Non-Linear Control (MNLC) for microgrid to optimize the performances of microgrid photovoltaic systems during outages/disturbance in distributed generation. This system underlines the adequacy of this proposed control methodology in terms of power management and stabil...

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Main Authors: Gerang, Sharon Serenade, Osman, Muhammad Amirul, Hannoon, Naeem M.S.
Format: Article
Language:English
Published: Universiti Teknologi MARA Press (Penerbit UiTM) 2020
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/42389/1/42389.pdf
http://ir.uitm.edu.my/id/eprint/42389/
https://jeesr.uitm.edu.my
https://doi.org/10.24191/jeesr.v17i1.012
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Institution: Universiti Teknologi Mara
Language: English
id my.uitm.ir.42389
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spelling my.uitm.ir.423892021-02-25T04:43:48Z http://ir.uitm.edu.my/id/eprint/42389/ Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon Gerang, Sharon Serenade Osman, Muhammad Amirul Hannoon, Naeem M.S. Photovoltaic power systems This paper presents a Modified Non-Linear Control (MNLC) for microgrid to optimize the performances of microgrid photovoltaic systems during outages/disturbance in distributed generation. This system underlines the adequacy of this proposed control methodology in terms of power management and stability of the system under various scenarios which are solar irradiance, man-made fault, etc.All these scenarios are presented during high loading conditions. This proposed non-linear control is tested at both point of common coupling (PCC) and the receiving end during sudden change of load. The simulated results are compared with PI controller using a software platform, MATLAB, Simulink. The system consists of a photovoltaic (PV) arrays, a DC-DC boost converter, a maximum power point tracker (MPPT) controller, wind turbine, battery and a resistive-inductive load. To validate the performance of the proposed MNLC over conventional designs the PV based Microgrid is subjected to grid side contingency (i.e. dynamic Load variation), as well as distributed generation (dg) side uncertainty (i.e. Partial shading). The performance of proposed MNLC is evidenced effective in MATLAB Simulink environment. Universiti Teknologi MARA Press (Penerbit UiTM) 2020 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/42389/1/42389.pdf Gerang, Sharon Serenade and Osman, Muhammad Amirul and Hannoon, Naeem M.S. (2020) Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon. Journal of Electrical & Electronic Systems Research (JEESR), 17. pp. 85-94. ISSN 1985-5389 https://jeesr.uitm.edu.my https://doi.org/10.24191/jeesr.v17i1.012
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Photovoltaic power systems
spellingShingle Photovoltaic power systems
Gerang, Sharon Serenade
Osman, Muhammad Amirul
Hannoon, Naeem M.S.
Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon
description This paper presents a Modified Non-Linear Control (MNLC) for microgrid to optimize the performances of microgrid photovoltaic systems during outages/disturbance in distributed generation. This system underlines the adequacy of this proposed control methodology in terms of power management and stability of the system under various scenarios which are solar irradiance, man-made fault, etc.All these scenarios are presented during high loading conditions. This proposed non-linear control is tested at both point of common coupling (PCC) and the receiving end during sudden change of load. The simulated results are compared with PI controller using a software platform, MATLAB, Simulink. The system consists of a photovoltaic (PV) arrays, a DC-DC boost converter, a maximum power point tracker (MPPT) controller, wind turbine, battery and a resistive-inductive load. To validate the performance of the proposed MNLC over conventional designs the PV based Microgrid is subjected to grid side contingency (i.e. dynamic Load variation), as well as distributed generation (dg) side uncertainty (i.e. Partial shading). The performance of proposed MNLC is evidenced effective in MATLAB Simulink environment.
format Article
author Gerang, Sharon Serenade
Osman, Muhammad Amirul
Hannoon, Naeem M.S.
author_facet Gerang, Sharon Serenade
Osman, Muhammad Amirul
Hannoon, Naeem M.S.
author_sort Gerang, Sharon Serenade
title Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon
title_short Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon
title_full Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon
title_fullStr Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon
title_full_unstemmed Modified Non-Linear Control for microgrid photovoltaic power system / Sharon Serenade Gerang, Muhammad Amirul Osman and Naeem M.S. Hannoon
title_sort modified non-linear control for microgrid photovoltaic power system / sharon serenade gerang, muhammad amirul osman and naeem m.s. hannoon
publisher Universiti Teknologi MARA Press (Penerbit UiTM)
publishDate 2020
url http://ir.uitm.edu.my/id/eprint/42389/1/42389.pdf
http://ir.uitm.edu.my/id/eprint/42389/
https://jeesr.uitm.edu.my
https://doi.org/10.24191/jeesr.v17i1.012
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