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Computer Aided Design of Control Systems focuses on the use of computers to analyze and design the control of various processes, as well as the development of program packages with different algorithms for digital computers. The selection first takes a look at the computer aided design of minimal order controllers, including design of interacting and noninteracting dynamic controllers of minimal order and basic algorithm. The book then discusses an accelerated Newton process to solve Riccati equation through matrix sign function; suboptimal direct digital control of a trickle-bed absorption column; and structural design of large systems employing a geometric approach. The text underscores the computer as an aid for the implementation of advanced control algorithms on physical processes and analysis of direct control algorithms and their parallel realization. Topics include hardware influences on the control, process influence, and interactive structure design of direct control systems. The book also takes a look at the optimal control of randomly sampled linear stochastic systems; computer aided design of suboptimal test signals for system identification; and computer aided design of multi-level systems with prescribed structure and control constraints. The selection is a dependable source of data for readers interested in the uses of computers.
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ISBN-13
978-1-4831-4691-1 (9781483146911)
Schweitzer Classification
Contentsforeword Session 1. Design and Analysis Methods for Plants, Controllers and Control Systems CAD of Minimal Order Controllers An Accelerated Newton Process to Solve Riccati Equation Via Matrix Sign Function Suboptimal Direct Digital Control of A Trickle-Bed Absorption Column Structural Design of Large Svstems Using A Geometric Approach The Computer As An Aid for the Implementation of Advanced Control Algorithms On Physical Processes Analysis of Direct Control Algorithms and Their Parallel Realization Interactive Model Reduction By Minimizing The Weighted Equation Error A Suboptimal Observer-Based Controller for Linear Discrete-Time Systems With Unknown Initial States The Use of APL In The Qualitative Analysis and Design of Large Scale Systems Modelling and Controller Design for a Multiaxial Servohydraulic Vibration Test Bench On The Design of a Class of Non Linear Multivariable Control Systems Frequency Domain Functionals for the Assessment of Interaction Effects In Multivariable Feedback Systems Parameter Optimization In Decentralized Process Control: A Unified Setting for Multivariable Industrial Regulator Design Computer Aided Design of the Stochastic Controller for A Large Scale River System Computer Aided Design of Multiloop Controllers On The Optimal Control of Randomly Sampled Linear Stochastic Systems Systematic Control Design by Optimizing a Vector Performance Index Computer Aided Design of Suboptimal Test Signals for System Identification Multivariable Compensator Design Using Bode Diagrams and Nichols Charts A New Optimization Method of Pid Control Parameters for Automatic Tuning By Process Computer Pole Assignment into a Sector Using Output Feedback with Gain Minimization A Controllability Test for Linear Systems Using a Graphical Technique Parameter Estimation and Control for Distributed Systems Computer Graphics Methods for Nonlinear Multivariable Systems Various Multivariable Computer Control Algorithms for Parameter-Adaptive Control Systems Design of a Class of Optimal Controllers Via Low-Order Riccati Equations A Least-Squares Like Gradient Algorithm for Discrete Model Reference Adaptive Systems Interactive Analysis of Structural Properties In The Design of Multivariable Control Systems CAD of Adaptive Stabilization Computer Aided Design of Multi-Level Systems With Prescribed Structure and Control Constraints Standardization of Instrumentation Structures In Catalogue Designed Control SystemsSession 2.