| Developments in Stochastic Distribution Control Systems | p. 1 |
| Introduction | p. 1 |
| Paper Web Formation Systems | p. 3 |
| Flame Distribution Control | p. 4 |
| Challenging Issues | p. 6 |
| Stochastic Distribution Control when Output PDFs are Measurable | p. 8 |
| Stochastic Distribution Control when Output PDFs are Unmeasurable | p. 11 |
| Minimum Entropy Control | p. 12 |
| Stochastic Distribution Filtering Design | p. 13 |
| Conclusions | p. 14 |
| Structural Controller Design for Stochastic Distribution Control Systems | |
| Proportional Integral Derivative Control for Continuous-time Stochastic Systems | p. 17 |
| Introduction | p. 17 |
| Problem Formulation | p. 18 |
| Model Representation | p. 18 |
| Pseudo-PID Controller Structure | p. 19 |
| Pseudo-PID Controller Design | p. 21 |
| Solvability Condition | p. 21 |
| Feasible Design Procedures | p. 23 |
| Robust Pseudo-PID Controller | p. 26 |
| Simulations | p. 27 |
| Conclusions | p. 29 |
| Constrained Continuous-time Proportional Integral Derivative Control Based on Convex Algorithms | p. 31 |
| Introduction | p. 31 |
| Problem Formulation | p. 32 |
| B-spline Expansion and Dynamic Weight Model | p. 32 |
| Generalized PID Controller Design | p. 34 |
| Constrained PID Controller Design Based on LMIs | p. 35 |
| Peak-to-peak Performance Control | p. 35 |
| Peak-to-peak Tracking Performance | p. 38 |
| Peak-to-peak Constrained Tracking Control | p. 40 |
| Simulations | p. 41 |
| Conclusions | p. 42 |
| Constrained Discrete-time Proportional Integral Control Based on Convex Algorithms | p. 45 |
| Introduction | p. 45 |
| Problem Formulation | p. 45 |
| B-spline Expansion and Discrete-time Weight Dynamical Model | p. 45 |
| Target Weight Model and Discrete-time PI Controller | p. 47 |
| Robust Constrained Tracking Control | p. 48 |
| Solvability for Peak-to-peak Performance | p. 48 |
| Peak-to-peak Tracking Performance | p. 51 |
| Constrained Peak-to-peak Tracking Control | p. 53 |
| Simulations | p. 54 |
| Conclusions | p. 55 |
| Two-step Intelligent Optimization Modeling and Control for Stochastic Distribution Control Systems | |
| Adaptive Tracking Stochastic Distribution Control for Two-step Neural Network Models | p. 63 |
| Introduction | p. 63 |
| Output PDF Model Using B-spline Neural Network | p. 64 |
| Dynamic Neural Network Identification | p. 65 |
| Adaptive Tracking Control for Weight Reference Model | p. 68 |
| Illustrative Examples | p. 71 |
| Example 1 | p. 71 |
| Example 2 | p. 72 |
| Conclusions | p. 76 |
| Constrained Adaptive Proportional Integral Tracking Control for Two-step Neural Network Models with Delays | p. 81 |
| Introduction | p. 81 |
| Output PDF Model Using B-spline Neural Network | p. 82 |
| Time Delay DNNs Identification | p. 83 |
| Constrained PI Tracking Control for Weight Vector | p. 87 |
| Illustrative Examples | p. 91 |
| Example 1 | p. 91 |
| Example 2 | p. 93 |
| Conclusions | p. 97 |
| Constrained Proportional Integral Tracking Control for Takagi-Sugeno Fuzzy Model | p. 101 |
| Introduction | p. 101 |
| Problem Statement and Preliminaries | p. 101 |
| Output PDF Model Using B-spline Expansion | p. 101 |
| PI Controller Design Based on T-S Fuzzy Model | p. 103 |
| Main Results | p. 104 |
| Stability Analysis with L1 Measure Index | p. 104 |
| Peak-to-peak Tracking Performance | p. 106 |
| Constrained Peak-to-peak Tracking Control | p. 108 |
| An Illustrative Example | p. 109 |
| Conclusions | p. 110 |
| Statistical Tracking Control - Driven by Output Statistical Information Set | |
| Multiple-objective Statistical Tracking Control Based on Linear Matrix Inequalities | p. 115 |
| Introduction | p. 115 |
| Problem Formulation and Preliminaries | p. 115 |
| Formulation for the H2/H∞ Tracking Problem | p. 117 |
| Illustrative Examples | p. 122 |
| Conclusions | p. 125 |
| Adaptive Statistical Tracking Control Based on Two-step Neural Networks with Time Delays | p. 129 |
| Introduction | p. 129 |
| Problem Formulation and Preliminaries | p. 129 |
| Time Delay DNNs Identification | p. 130 |
| Variable Structure Tracking Control for Weight Vectors | p. 132 |
| An Illustrative Example | p. 136 |
| Conclusions | p. 138 |
| Fault Detection and Diagnosis for Stochastic Distribution Control Systems | |
| Optimal Continuous-time Fault Detection Filtering | p. 145 |
| Introduction | p. 145 |
| Problem Formulation | p. 146 |
| Main Result | p. 147 |
| Numerical Examples | p. 152 |
| Conclusions | p. 155 |
| Optimal Discrete-time Fault Detection and Diagnosis Filtering | p. 157 |
| Introduction | p. 157 |
| Formulation of the FDD Problem with Guaranteed Cost Performance | p. 158 |
| The Optimal Fault Detection Filter Design | p. 160 |
| Fault Diagnosis Filter Design | p. 162 |
| Simulation Examples | p. 165 |
| Conclusions | p. 166 |
| Conclusions | |
| Summary and Potential Applications | p. 173 |
| Summary | p. 173 |
| Potential Applications of PDF Control | p. 174 |
| PDF Control in Data-driven Modeling | p. 174 |
| PDF Control in Data Dimension Reduction | p. 175 |
| PDF Control in Multi-scale Plant-wide Modeling for Fault Diagnosis and Fault Tolerant Control | p. 175 |
| References | p. 179 |
| Index | p. 193 |
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