Finite automata approximations with error bounds for systems with quantized actuation and measurement: a case study

We consider stable, discrete time, first order LTI systems with finite input alphabets and quantized outputs. We propose an algorithm for generating deterministic finite state machine approximations of these systems with computable bounds on approximation error, and we describe the conditions under...

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Hauptverfasser: Tarraf, D.C., Megretski, A., Dahleh, M.A.
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creator Tarraf, D.C.
Megretski, A.
Dahleh, M.A.
description We consider stable, discrete time, first order LTI systems with finite input alphabets and quantized outputs. We propose an algorithm for generating deterministic finite state machine approximations of these systems with computable bounds on approximation error, and we describe the conditions under which the bounds are valid.
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identifier ISSN: 0191-2216
ispartof 2004 43rd IEEE Conference on Decision and Control (CDC) (IEEE Cat. No.04CH37601), 2004, Vol.2, p.1436-1441 Vol.2
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Applied sciences
Approximation algorithms
Approximation error
Automata
Automatic control
Computer aided software engineering
Computer science
control theory
systems
Control systems
Control theory. Systems
Exact sciences and technology
Output feedback
Pervasive computing
State-space methods
Time measurement
title Finite automata approximations with error bounds for systems with quantized actuation and measurement: a case study
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