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 including MATLAB based examples.
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 including MATLAB based examples.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
1. Block Pulse and Related Basis Functions 2. Function Approximation via Block Pulse Function and Related Functions 3. Block Pulse Domain Operational Matrices for Integration and Differentiation 4. Operational Transfer Functions for System Analysis 5. System Analysis and Identification Using Convolution and "Deconvolution" in BPF Domain 6. Delayed Unit Step Functions (DUSF) for System Analysis and Fundamental Nature of the Block Pulse Function (BPF) Set 7. Sample-and-Hold Functions (SHFs) for System Analysis 8. Discrete Time System Analysis Using a Set of Delta Functions (DFs) 9. Non-Optimal Block Pulse Functions (NOBPFs) for System Analysis and Identification 10. System Analysis and Identification Using Linearly Pulse-Width Modulated Generalized Block Pulse Functions (LPWM-GBPF) Appendix A: Introduction to Linear Algebra Appendix B: Selected MATLAB Programs
1. Block Pulse and Related Basis Functions 2. Function Approximation via Block Pulse Function and Related Functions 3. Block Pulse Domain Operational Matrices for Integration and Differentiation 4. Operational Transfer Functions for System Analysis 5. System Analysis and Identification Using Convolution and "Deconvolution" in BPF Domain 6. Delayed Unit Step Functions (DUSF) for System Analysis and Fundamental Nature of the Block Pulse Function (BPF) Set 7. Sample-and-Hold Functions (SHFs) for System Analysis 8. Discrete Time System Analysis Using a Set of Delta Functions (DFs) 9. Non-Optimal Block Pulse Functions (NOBPFs) for System Analysis and Identification 10. System Analysis and Identification Using Linearly Pulse-Width Modulated Generalized Block Pulse Functions (LPWM-GBPF) Appendix A: Introduction to Linear Algebra Appendix B: Selected MATLAB Programs
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