Sensitivity of Automatic Control Systems

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A01=Efim Rozenwasser
A01=Rafael Yusupov
additional
Additional Motion
advanced sensitivity analysis in engineering
Author_Efim Rozenwasser
Author_Rafael Yusupov
Category=GPFC
Classical Optimal Control Problem
control theory applications
Directed Action Elements
Discontinuous System
discontinuous systems
dti
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
equations
Euler's Method
Exogenous Disturbances
function
indices
Input Signal
Inverse Problems
investigation methods
Linear Periodic System
Lyapunov stability methods
moment
motion
nonlinear system analysis
operator model investigation
Optimal Control Synthesis
oscillatory processes
Parameter ??
parametric modeling
Pulse Element
Pulse Frequency Modulation
Pulse Width Modulation
quality
Relay Characteristic
Relay Element
relay system dynamics
Runge Kutta Method
sensitivity analysis
Sensitivity Equation
Sensitivity Function
Sensitivity Theory
Sensitivity Vectors
switch
Switching Moments
Synthesis Problem Accounting
theory
Tolerance Distribution
Tolerance Field
variational calculus problems

Product details

  • ISBN 9780849322938
  • Weight: 743g
  • Dimensions: 156 x 234mm
  • Publication Date: 23 Nov 1999
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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Although it arose much earlier in a variety of contexts, sensitivity theory became an independent branch of science in the sixties. Since then, researchers from around the world have continued to make great strides in both the theory and its applications. However, much of the work of Russian scientific schools and specialists remain unknown in the West. Sensitivity of Control Systems summarizes the results of the authors and their disciples in sensitivity theory, addressing the basic notions of the theory and the problem of selecting technical parameters of systems. The authors formulate problems for actual technical systems and their models, and establish relations between sensitivity theory and classical stability problems. They offer a significant, general theory for investigating the sensitivity of boundary problems and use elements of this theory for sensitivity analysis of solutions to nonlinear programming and variational calculus problems, as well as oscillatory processes. The book also presents general investigation methods for discontinuous systems, including those described by operator models. Full of powerful new methods and results, this book offers a unique opportunity for those in theoretical investigation and in the design, testing, and exploitation of various control systems to explore the work of Russia's leading researchers in sensitivity theory. Furthermore, its techniques for parametric perturbation investigation, Sensitivity of Control Systems will prove useful in fields outside of control theory, including oscillation theory, motion dynamics, and mathematical economy.
Efim Rozenwass, Rafael Yusupov

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