Switching control of self-excited induction generator under steady state conditions
This paper presents a Matlab based simulation model to regulate the terminal voltage and frequency of three phase self-excited induction generator using switching control . A new block in Matlab has been developed for steady state analysis of three phase self-excited induction generator wherein the...
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Veröffentlicht in: | International journal of computer applications 2012-01, Vol.42 (21), p.15-20 |
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container_title | International journal of computer applications |
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creator | Garg, Anjali Sandhu, K S Saini, L M |
description | This paper presents a Matlab based simulation model to regulate the terminal voltage and frequency of three phase self-excited induction generator using switching control . A new block in Matlab has been developed for steady state analysis of three phase self-excited induction generator wherein the output voltage and frequency of generator remains constant irrespective of changes in consumer load. The model involves a switching system comprising of number of suitable resistive elements connected in parallel to the load. Simulated results on a test machine are found to be well within the tolerable limits. |
doi_str_mv | 10.5120/5834-8153 |
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A new block in Matlab has been developed for steady state analysis of three phase self-excited induction generator wherein the output voltage and frequency of generator remains constant irrespective of changes in consumer load. The model involves a switching system comprising of number of suitable resistive elements connected in parallel to the load. 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A new block in Matlab has been developed for steady state analysis of three phase self-excited induction generator wherein the output voltage and frequency of generator remains constant irrespective of changes in consumer load. The model involves a switching system comprising of number of suitable resistive elements connected in parallel to the load. 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A new block in Matlab has been developed for steady state analysis of three phase self-excited induction generator wherein the output voltage and frequency of generator remains constant irrespective of changes in consumer load. The model involves a switching system comprising of number of suitable resistive elements connected in parallel to the load. Simulated results on a test machine are found to be well within the tolerable limits.</abstract><cop>New York</cop><pub>Foundation of Computer Science</pub><doi>10.5120/5834-8153</doi><tpages>6</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Computer simulation Electric potential Induction generators Matlab Steady state Switching Three phase Voltage |
title | Switching control of self-excited induction generator under steady state conditions |
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