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Control system analysis and identification with MATLAB : block pulse and related orthogonal functions / Anish Deb and Srimanti Roychoudhury.

By: Contributor(s): Material type: TextTextPublication details: Boca Raton : CRC Press, ©2019.Description: pages cmISBN:
  • 9781138303225 (hardback : acidfree paper)
Subject(s): DDC classification:
  • 629.8028553 23 D286
Contents:
1. Block Pulse and Related Basis Functions -- 2. Function Approximation via Block Pulse Functionand Related Functions -- 3. Block Pulse Domain Operational Matrices for Integrationand Differentiation -- 4. Operational Transfer Functions for System Analysis -- 5. System Analysis and Identification Using Convolutionand "Deconvolution" in BPF Domain -- 6. Delayed Unit Step Functions (DUSF) for System Analysis andFundamental Nature of the Block Pulse Function (BPF) Set -- 7. Sample-and-Hold Functions (SHFs) for System Analysis -- 8. Discrete Time System Analysis Using a Setof Delta Functions (DFs) -- 9. Non-Optimal Block Pulse Functions (NOBPFs) for SystemAnalysis and Identificationm -- 10. System Analysis and Identification Using Linearly Pulse-WidthModulated Generalized Block Pulse Functions (LPWM-GBPF) -- Appendix A: Introduction to Linear Algebra -- Appendix B: Selected MATLAB Programs.
Summary: This book covers block pulse and related functions for the analysis and identification of continuous and discrete-time systems. It covers functions related to block pulse functions' and pulse-width modulated generalized block pulse functions including their applications.
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Includes bibliographical references and index.

1. Block Pulse and Related Basis Functions --
2. Function Approximation via Block Pulse Functionand Related Functions --
3. Block Pulse Domain Operational Matrices for Integrationand Differentiation --
4. Operational Transfer Functions for System Analysis --
5. System Analysis and Identification Using Convolutionand "Deconvolution" in BPF Domain --
6. Delayed Unit Step Functions (DUSF) for System Analysis andFundamental Nature of the Block Pulse Function (BPF) Set --
7. Sample-and-Hold Functions (SHFs) for System Analysis --
8. Discrete Time System Analysis Using a Setof Delta Functions (DFs) --
9. Non-Optimal Block Pulse Functions (NOBPFs) for SystemAnalysis and Identificationm --
10. System Analysis and Identification Using Linearly Pulse-WidthModulated Generalized Block Pulse Functions (LPWM-GBPF) --
Appendix A: Introduction to Linear Algebra --
Appendix B: Selected MATLAB Programs.

This book covers block pulse and related functions for the analysis and identification of continuous and discrete-time systems. It covers functions related to block pulse functions' and pulse-width modulated generalized block pulse functions including their applications.

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