The present research project encompasses Robust stability and performance analysis of power systems and it has six definite parts : - The unification of the structural configuration dealing with stability of the closed - loop feedback systems. Stability studies of capacitive loading of synchronous generator of a thermal power station. Regulator excitation dynamics of a synchronous generator. The design of stabilizers and the determination of the largest radius of the hyper-sphere in the parameter space. The determination of the controller stability of a close-loop system by investigating and examining encirclement of the -1+ j0 point by the locus of G (jw) C (jw). D' partition method for stability studies with the range of K have been discussed. The analysis and design of a family of voltage controllers based on numerical convex optimization.
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The present research project encompasses Robust stability and performance analysis of power systems and it has six definite parts : - The unification of the structural configuration dealing with stability of the closed - loop feedback systems. Stability studies of capacitive loading of synchronous generator of a thermal power station. Regulator excitation dynamics of a synchronous generator. The design of stabilizers and the determination of the largest radius of the hyper-sphere in the parameter space. The determination of the controller stability of a close-loop system by investigating and examining encirclement of the -1+ j0 point by the locus of G (jw) C (jw). D' partition method for stability studies with the range of K have been discussed. The analysis and design of a family of voltage controllers based on numerical convex optimization.
Dr. S. C. Konar is Professor and Ex-Head, Department of Electrical Engineering, Bengal Engineering and Science University, Howrah-711 103, West Bengal, India. He obtained B.E., M.E. from Calcutta University and PhD from B. E. College (Deemed University). Members of the Institution of Engineers (India) and Indian Society for Technical Education.
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Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Chandra Konar Dr. SukumarDr. S. C. Konar is Professor and Ex-Head, Department of Electrical Engineering, Bengal Engineering and Science University, Howrah-711 103, West Bengal, India. He obtained B.E., M.E. from Calcutta University a. Bestandsnummer des Verkäufers 5471019
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Taschenbuch. Zustand: Neu. Neuware -The present research project encompasses Robust stability and performance analysis of power systems and it has six definite parts : - ¿ The unification of the structural configuration dealing with stability of the closed - loop feedback systems. ¿ Stability studies of capacitive loading of synchronous generator of a thermal power station. ¿ Regulator excitation dynamics of a synchronous generator. ¿ The design of stabilizers and the determination of the largest radius of the hyper-sphere in the parameter space. ¿ The determination of the controller stability of a close-loop system by investigating and examining encirclement of the ¿1+ j0 point by the locus of G (jw) C (jw). D¿ partition method for stability studies with the range of K have been discussed. ¿ The analysis and design of a family of voltage controllers based on numerical convex optimization.Books on Demand GmbH, Überseering 33, 22297 Hamburg 140 pp. Englisch. Bestandsnummer des Verkäufers 9783844305258
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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The present research project encompasses Robust stability and performance analysis of power systems and it has six definite parts : - The unification of the structural configuration dealing with stability of the closed - loop feedback systems. Stability studies of capacitive loading of synchronous generator of a thermal power station. Regulator excitation dynamics of a synchronous generator. The design of stabilizers and the determination of the largest radius of the hyper-sphere in the parameter space. The determination of the controller stability of a close-loop system by investigating and examining encirclement of the 1+ j0 point by the locus of G (jw) C (jw). D partition method for stability studies with the range of K have been discussed. The analysis and design of a family of voltage controllers based on numerical convex optimization. Bestandsnummer des Verkäufers 9783844305258
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The present research project encompasses Robust stability and performance analysis of power systems and it has six definite parts : - The unification of the structural configuration dealing with stability of the closed - loop feedback systems. Stability studies of capacitive loading of synchronous generator of a thermal power station. Regulator excitation dynamics of a synchronous generator. The design of stabilizers and the determination of the largest radius of the hyper-sphere in the parameter space. The determination of the controller stability of a close-loop system by investigating and examining encirclement of the 1+ j0 point by the locus of G (jw) C (jw). D partition method for stability studies with the range of K have been discussed. The analysis and design of a family of voltage controllers based on numerical convex optimization. 140 pp. Englisch. Bestandsnummer des Verkäufers 9783844305258
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