Computer Methods for Analysis of Mixed-Mode Switching Circuits
(Sprache: Englisch)
Computer Methods for Analysis of Mixed-Mode Switching Circuits provides an in-depth treatment of the principles and implementation details of computer methods and numerical algorithms for analysis of mixed-mode switching circuits. Major topics include:...
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Computer Methods for Analysis of Mixed-Mode Switching Circuits provides an in-depth treatment of the principles and implementation details of computer methods and numerical algorithms for analysis of mixed-mode switching circuits. Major topics include: -Computer-oriented formulation of mixed-mode switching circuits, -Network functions of linear and nonlinear time-varying systems, -Numerical Laplace inversion based integration algorithms and inconsistent initial conditions, -Time domain analysis of periodically switched linear and nonlinear circuits including response, sensitivity, noise, clock jitter, and statistical quantities, -Time domain analysis of circuits with internally controlled switches and over-sampled sigma-delta modulators, -Tellegen's theorem, frequency reversal theorem, and transfer function theorem of periodically switched linear circuits and their applications, -Frequency domain analysis of periodically switched linear and nonlinear circuits including response, sensitivity, group delay, noise, and statistical quantities.
Inhaltsverzeichnis zu „Computer Methods for Analysis of Mixed-Mode Switching Circuits “
List of Figures List of Tables PrefaceAcknowledgmentsPart I: The Fundamentals 1. AN OVERVIEW OF MIXED-MODE SWITCHING CIRCUITS1. Classification2. Switched Capacitor Techniques3. Switched Current Techniques 4. Characteristics of Mixed-Mode Switching Circuits2. COMPUTER FORMULATION OF MIXED-MODE SWITCHING CIRCUITS1. Modeling of Switches2. Formulation Methods for Mixed-Mode Switching Circuits3. Summary3. NETWORK FUNCTIONS OF TIME-VARYING CIRCUITS1. Transfer Functions of Linear Time-Varying Systems2. Transfer Functions of Nonlinear Time-Varying Systems3. Frequency Response of Nonlinear Time-Varying Systems4. Frequency Response of Nonlinear Periodically Time-Varying Systems5. Summary 4. NUMERICAL INTEGRATION OF DIFFERENTIAL EQUATIONS1. Linear Single-Step Predictor-Corrector Algorithms2. Linear Multi-Step Predictor-Corrector Algorithms3. Integration Using Numerical Laplace Inversion 4. Summary Part II: Time Domain Analysis 5. INCONSISTENT INITIAL CONDITIONS 1. Inconsistent Initial Conditions2. Numerical Laplace Inversion Based Two-Step Algorithm3. Backward Euler Based Algorithms 4. Taylor Series Based Algorithm5. Volterra Functional Series Based Algorithm6. Existence of Dirac Impulses at Switching Instants7. Summary6. SAMPLED-DATA SIMULATION OF PERIODICALLY SWITCHED LINEAR CIRCUITS1. Sampled-Data Simulation of Periodically Switched Linear Circuits2. Inconsistent Initial Conditions3. Time-Domain Sensitivity4. Inconsistent Initial Conditions of Sensitivity Networks5. Statistical Analysis6. Noise Analysis7. Clock Jitter8. Summary 1 Computation of Uk(T) 2 Computation of Rk(T) 3 Computation of Uk(T) 7. SAMPLED-DATA SIMULATION OF PERIODICALLY SWITCHED NONLINEAR CIRCUITS1. Multi-Linear Theory2. Volterra Circuits3. Sampled-Data Simulation of PeriodicallySwitched Nonlinear Circuits4. Inconsistent Initial Conditions5. Sensitivity of Periodically Switched Nonlinear Circuits6. Discussion7. Examples8. Summary8. SAMPLED-DATA SIMULATION OF CIRCUITS WITH INTERNALLY CONTROLLED SWITCHES 1.
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Internally Controlled Switches and Switching Variables 2. Switching Instants 3. Inconsistent Initial Conditions 4. Examples 5. Summary9. SAMPLED-DATA SIMULATION OF OVER-SAMPLED SIGMA-DELTA MODULATORS 1. Introduction2. Modeling of Clocked Quantizers3. Modeling of Unclocked Quantizers4. Modeling of Digital-to-Analog Data Converters5. Modeling of Other Blocks6. Simulation Methods7. Examples8. SummaryPart III: Frequency Domain Analysis 10. ADJOINT NETWORK OF PERIODICALLY SWITCHED LINEAR CIRCUITS1. Tellegen's Theorem2. Inter-reciprocity 3. Adjoint Network 4. Transfer Function Theorem5. Frequency Reversal Theorem6. Examples7. Summary11. FREQUENCY DOMAIN ANALYSIS OF PERIODICALLY SWITCHED LINEAR CIRCUITS1. Frequency Response2. Sensitivity Analysis3. Group Delay Analysis 4. Noise Analysis 5. Statistical Analysis 6. Summary 12. FREQUENCY DOMAIN ANALYSIS OF PERIODICALLY SWITCHED NONLINEAR CIRCUITS 1. Fundamentals 2. Distortion Analysis of Periodically Switched Circuits 3. Harmonic Distortion 4. Intermodulation Distortion 5. Examples 6. Summary
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