Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter
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2013
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my.unimap-247992013-05-08T08:21:43Z Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter Muhammad Irwanto Mohd Irwan, Yusoff Gomesh Nair, Shasidharan Noor Syafawati, Ahmad irwanto@unimap.edu.my irwanyusoff@unimap.edu.my gomesh@unimap.edu.my syafawati@unimap.edu.my Current total harmonic distortion PV inverter Solar irradiance Transformer-less Uninterruptible power supply Link to publisher's homepage at http://ieeexplore.ieee.org/ his paper presents a new topology of three-level transformer-less photovoltaic (PV) inverter. In this topology, a 240V AC system is developed from a full bridge inverter circuit using PIC microcontroller (PIC16F628A-I/P) connected to an array of PV panel through a power factor correction circuit. The output waveform of the inverter depends on the type of pulse driver. The inverter is connected to the utility supply, on the clear day, the ac load is served by the inverter but on the cloudy day or night where solar irradiance is low, the inverter through its PIC microcontroller automatically changes from the usage of inverter to the utility supply. Objective of this paper is to optimize the maximum voltage angle to obtain the lowest current total harmonic distortion (CTHD) of the uninterruptible power supply (UPS) on the three-level single phase transformer-less inverter. In this paper, the maximum voltage angle optimization of the AC three-level waveform transformer-less PV inverter is developed and created by a microcontroller PIC16F627A-I/P changing maximum voltage angle of the AC three-level waveform from 20° to 180°. Resistive load of 30 W lamp and inductive load of 20 W water pump are applied to the transformer-less PV single phase inverter. The result shows that the lowest CTHD of 15.448% is obtained when the maximum voltage angle is 134°. 2013-05-08T08:21:43Z 2013-05-08T08:21:43Z 2012-05 Working Paper p. 357-361 978-146730655-3 http://ieeexplore.ieee.org/xpl/articleDetails.jsp?reload=true&arnumber=6236418 http://hdl.handle.net/123456789/24799 en Proceedings of the International Conference on Innovation, Management and Technology Research (ICIMTR) 2012 Institute of Electrical and Electronics Engineers (IEEE) |
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Current total harmonic distortion PV inverter Solar irradiance Transformer-less Uninterruptible power supply |
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Current total harmonic distortion PV inverter Solar irradiance Transformer-less Uninterruptible power supply Muhammad Irwanto Mohd Irwan, Yusoff Gomesh Nair, Shasidharan Noor Syafawati, Ahmad Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
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Link to publisher's homepage at http://ieeexplore.ieee.org/ |
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irwanto@unimap.edu.my |
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irwanto@unimap.edu.my Muhammad Irwanto Mohd Irwan, Yusoff Gomesh Nair, Shasidharan Noor Syafawati, Ahmad |
format |
Working Paper |
author |
Muhammad Irwanto Mohd Irwan, Yusoff Gomesh Nair, Shasidharan Noor Syafawati, Ahmad |
author_sort |
Muhammad Irwanto |
title |
Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
title_short |
Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
title_full |
Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
title_fullStr |
Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
title_full_unstemmed |
Maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
title_sort |
maximum voltage angle optimization of uninterruptible power supply on three-level transformer-less photovoltaic inverter |
publisher |
Institute of Electrical and Electronics Engineers (IEEE) |
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2013 |
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http://dspace.unimap.edu.my/xmlui/handle/123456789/24799 |
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1643794431932891136 |
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13.214268 |