Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool
The design objective behind lead and lag compensator is to meet the relative stability as well as to meet desired performance. Both in time domain or frequency domain, the compensator design can be carried out. Absolute stability of a system can be predicted from root locus approach. Simulation tool...
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Format: | Article |
Language: | English |
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Institute of Technology and Education Galileo da Amazônia
2020-08-01
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Series: | ITEGAM-JETIA |
Online Access: | https://itegam-jetia.org/journal/index.php/jetia/article/view/683 |
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author | Badri Narayan Mohapatra Jijnyasa Joshi |
author_facet | Badri Narayan Mohapatra Jijnyasa Joshi |
author_sort | Badri Narayan Mohapatra |
collection | DOAJ |
description | The design objective behind lead and lag compensator is to meet the relative stability as well as to meet desired performance. Both in time domain or frequency domain, the compensator design can be carried out. Absolute stability of a system can be predicted from root locus approach. Simulation tool like tinkercad and wolfram alpha can provide easy access of different control engineering design performance, so that it helps all under graduate, post graduate and researchers can able to apply their knowledge to engineering application from any computing environment. And they can perform it at any time. By this passive learning is also possible with active engagement in the learning related to practical and theory. To judgment and easily understand on simulation, student can modify their design specification and get deeper knowledge on control system design engineering. one can also use opamp circuit to understand the compensator design performance. |
first_indexed | 2024-12-10T03:55:33Z |
format | Article |
id | doaj.art-7cfe6c803c754428b6b7401312c20280 |
institution | Directory Open Access Journal |
issn | 2447-0228 |
language | English |
last_indexed | 2024-12-10T03:55:33Z |
publishDate | 2020-08-01 |
publisher | Institute of Technology and Education Galileo da Amazônia |
record_format | Article |
series | ITEGAM-JETIA |
spelling | doaj.art-7cfe6c803c754428b6b7401312c202802022-12-22T02:03:08ZengInstitute of Technology and Education Galileo da AmazôniaITEGAM-JETIA2447-02282020-08-0162410.5935/jetia.v6i24.683Design performance of lead and lag compensator using OPAMP and root locus approach through simulation toolBadri Narayan Mohapatra0Jijnyasa Joshi1Department of Instrumentation & Control of AISSMS IOIT, University of Savitribai Phule Pune University – SPPU. Pune, 411001, IndiaDepartment of Instrumentation & Control of AISSMS IOIT, University of Savitribai Phule Pune University – SPPU. Pune, 411001, IndiaThe design objective behind lead and lag compensator is to meet the relative stability as well as to meet desired performance. Both in time domain or frequency domain, the compensator design can be carried out. Absolute stability of a system can be predicted from root locus approach. Simulation tool like tinkercad and wolfram alpha can provide easy access of different control engineering design performance, so that it helps all under graduate, post graduate and researchers can able to apply their knowledge to engineering application from any computing environment. And they can perform it at any time. By this passive learning is also possible with active engagement in the learning related to practical and theory. To judgment and easily understand on simulation, student can modify their design specification and get deeper knowledge on control system design engineering. one can also use opamp circuit to understand the compensator design performance.https://itegam-jetia.org/journal/index.php/jetia/article/view/683 |
spellingShingle | Badri Narayan Mohapatra Jijnyasa Joshi Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool ITEGAM-JETIA |
title | Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool |
title_full | Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool |
title_fullStr | Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool |
title_full_unstemmed | Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool |
title_short | Design performance of lead and lag compensator using OPAMP and root locus approach through simulation tool |
title_sort | design performance of lead and lag compensator using opamp and root locus approach through simulation tool |
url | https://itegam-jetia.org/journal/index.php/jetia/article/view/683 |
work_keys_str_mv | AT badrinarayanmohapatra designperformanceofleadandlagcompensatorusingopampandrootlocusapproachthroughsimulationtool AT jijnyasajoshi designperformanceofleadandlagcompensatorusingopampandrootlocusapproachthroughsimulationtool |