Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem

The permanent magnet synchronous motors (PMSM) are used as servo motor for precise motion control and are used as generator to generate electrical energy driven by wind energy. There is large variation in inertia due to varying load and parametric uncertainty in PMSM. The design objective of this pa...

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Main Authors: Anil Kumar Yadav, Prerna Gaur, Piyush Saxena
Format: Article
Language:English
Published: ESRGroups 2016-06-01
Series:Journal of Electrical Systems
Subjects:
IMC
Online Access:http://journal.esrgroups.org/jes/papers/12_2_4.pdf
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spelling doaj-c6856f0e52424dbfa5e756a3e0be85e02020-11-24T21:16:59ZengESRGroupsJournal of Electrical Systems1112-52091112-52092016-06-01122258277Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem Anil Kumar Yadav0Prerna Gaur1Piyush Saxena2Department of Electronics, Banasthali University, Tonk, Rajasthan, India Division of ICE, NSIT, Dwarka, New Delhi, India. Division of ICE, NSIT, Dwarka, New Delhi, India. The permanent magnet synchronous motors (PMSM) are used as servo motor for precise motion control and are used as generator to generate electrical energy driven by wind energy. There is large variation in inertia due to varying load and parametric uncertainty in PMSM. The design objective of this paper is to analytically determine the relative robust stability of PMSM with parametric uncertainty using Kharitonov theorem and Routh stability criterion. The conventional integral controller (IC) and two robust internal model controllers (IMCs) are used for relative robust stability analysis of speed control of PMSM. The frequency domain performance specifications like gain margin (GM) and phase margin (PM) are taken for relative robust stability analysis, and the effect of controllers on time domain performance specifications such as settling time (ST), rise time (RT) and overshoot (OS) is also studied.http://journal.esrgroups.org/jes/papers/12_2_4.pdfGain and Phase MarginKharitonov TheoremIMCPMSMRobust StabilityRouth Stability Criterion
collection DOAJ
language English
format Article
sources DOAJ
author Anil Kumar Yadav
Prerna Gaur
Piyush Saxena
spellingShingle Anil Kumar Yadav
Prerna Gaur
Piyush Saxena
Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem
Journal of Electrical Systems
Gain and Phase Margin
Kharitonov Theorem
IMC
PMSM
Robust Stability
Routh Stability Criterion
author_facet Anil Kumar Yadav
Prerna Gaur
Piyush Saxena
author_sort Anil Kumar Yadav
title Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem
title_short Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem
title_full Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem
title_fullStr Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem
title_full_unstemmed Robust Stability Analysis of PMSM with Parametric Uncertainty using Kharitonov Theorem
title_sort robust stability analysis of pmsm with parametric uncertainty using kharitonov theorem
publisher ESRGroups
series Journal of Electrical Systems
issn 1112-5209
1112-5209
publishDate 2016-06-01
description The permanent magnet synchronous motors (PMSM) are used as servo motor for precise motion control and are used as generator to generate electrical energy driven by wind energy. There is large variation in inertia due to varying load and parametric uncertainty in PMSM. The design objective of this paper is to analytically determine the relative robust stability of PMSM with parametric uncertainty using Kharitonov theorem and Routh stability criterion. The conventional integral controller (IC) and two robust internal model controllers (IMCs) are used for relative robust stability analysis of speed control of PMSM. The frequency domain performance specifications like gain margin (GM) and phase margin (PM) are taken for relative robust stability analysis, and the effect of controllers on time domain performance specifications such as settling time (ST), rise time (RT) and overshoot (OS) is also studied.
topic Gain and Phase Margin
Kharitonov Theorem
IMC
PMSM
Robust Stability
Routh Stability Criterion
url http://journal.esrgroups.org/jes/papers/12_2_4.pdf
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