Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter

Simulation of a multilevel inverter for high power applications employing a PWM unipolar symmetrical regular sampled technique based on a single carrier multilevel modulation strategy is presented in this paper. The equations related to this technique are used to design the gate signal generator blo...

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Main Authors: Mohd. Shafie, Bakar, Naziha, Ahmad Azli
Format: Conference or Workshop Item
Language:English
Published: IEEE 2003
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/949/1/33_simulation_MS_Bakar.pdf
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author Mohd. Shafie, Bakar
Naziha, Ahmad Azli
author_facet Mohd. Shafie, Bakar
Naziha, Ahmad Azli
author_sort Mohd. Shafie, Bakar
collection UMP
description Simulation of a multilevel inverter for high power applications employing a PWM unipolar symmetrical regular sampled technique based on a single carrier multilevel modulation strategy is presented in this paper. The equations related to this technique are used to design the gate signal generator blocks using Matlab Simulink. These blocks generate the gate signals for each of the multilevel inverter power devices and can later be compiled and downloaded to a dSPACE DSP controller board for real time digital implementation. The gate signal generator blocks are tested for various values of modulation index. The results of the simulation study are shown in the form of the PWM waveforms of the multilevel inverter modules as well as the gate signals for its power devices for comparison purposes.
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spelling UMPir9492018-05-18T06:40:27Z http://umpir.ump.edu.my/id/eprint/949/ Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter Mohd. Shafie, Bakar Naziha, Ahmad Azli TK Electrical engineering. Electronics Nuclear engineering Simulation of a multilevel inverter for high power applications employing a PWM unipolar symmetrical regular sampled technique based on a single carrier multilevel modulation strategy is presented in this paper. The equations related to this technique are used to design the gate signal generator blocks using Matlab Simulink. These blocks generate the gate signals for each of the multilevel inverter power devices and can later be compiled and downloaded to a dSPACE DSP controller board for real time digital implementation. The gate signal generator blocks are tested for various values of modulation index. The results of the simulation study are shown in the form of the PWM waveforms of the multilevel inverter modules as well as the gate signals for its power devices for comparison purposes. IEEE 2003 Conference or Workshop Item PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/949/1/33_simulation_MS_Bakar.pdf Mohd. Shafie, Bakar and Naziha, Ahmad Azli (2003) Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter. In: Proceedings of National Power Engineering Conference (PECon 2003) , 15-16 December 2003 , Bangi, Selangor. pp. 144-147.. ISBN 0-7803-8208-0 (Published) http://dx.doi.org/10.1109/PECON.2003.1437434
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Mohd. Shafie, Bakar
Naziha, Ahmad Azli
Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter
title Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter
title_full Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter
title_fullStr Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter
title_full_unstemmed Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter
title_short Simulation of a Regular Sampled Pulsewidth Modulation (PWM) Technique for a Multilevel Inverter
title_sort simulation of a regular sampled pulsewidth modulation pwm technique for a multilevel inverter
topic TK Electrical engineering. Electronics Nuclear engineering
url http://umpir.ump.edu.my/id/eprint/949/1/33_simulation_MS_Bakar.pdf
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