Optimal Scheduling of Scalar Gauss-Markov Systems With a Terminal Cost Function

In this technical note, we consider the problem of optimal measurement scheduling for a particular class of Gauss-Markov systems. These type of scheduling problems arise in applications such as multi-target tracking and sensor management. General solutions to such problems in the Gauss-Markov framew...

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Published inIEEE transactions on automatic control Vol. 54; no. 5; pp. 1100 - 1105
Main Authors Savage, C.O., La Scala, B.F.
Format Journal Article
LanguageEnglish
Published New York, NY IEEE 01.05.2009
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subjects
Online AccessGet full text
ISSN0018-9286
1558-2523
DOI10.1109/TAC.2009.2012994

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Abstract In this technical note, we consider the problem of optimal measurement scheduling for a particular class of Gauss-Markov systems. These type of scheduling problems arise in applications such as multi-target tracking and sensor management. General solutions to such problems in the Gauss-Markov framework are still the subject of ongoing research. Here, for the first time, we present a set of results for scalar systems, where we consider optimality in the context of minimizing a terminal cost. Complete proofs are given in each case. In some cases, proof outlines have been previously available; other cases are presented here for the first time. For the class of problems considered we demonstrate that simple index policies are optimal. We further examine practical problems in which suboptimal solutions may suffice. Numerical examples are presented for each case.
AbstractList In this technical note, we consider the problem of optimal measurement scheduling for a particular class of Gauss-Markov systems. These type of scheduling problems arise in applications such as multi-target tracking and sensor management. General solutions to such problems in the Gauss-Markov framework are still the subject of ongoing research. Here, for the first time, we present a set of results for scalar systems, where we consider optimality in the context of minimizing a terminal cost. Complete proofs are given in each case. In some cases, proof outlines have been previously available; other cases are presented here for the first time. For the class of problems considered we demonstrate that simple index policies are optimal. We further examine practical problems in which suboptimal solutions may suffice. Numerical examples are presented for each case.
Author La Scala, B.F.
Savage, C.O.
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10.1109/TAC.2004.834121
10.1109/TAC.1970.1099549
10.1109/ICIF.2006.301677
10.1115/1.3662552
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Keywords Target tracking
Gaussian process
Error estimation
Optimal policy
Estimated state error variance (ESEV)
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Scheduling
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SubjectTerms Additive noise
Applied sciences
Australia
Computer science; control theory; systems
Control theory. Systems
Cost engineering
Cost function
Estimated state error variance (ESEV)
Exact sciences and technology
Gaussian processes
Kalman filters
Mathematical models
Operational research and scientific management
Operational research. Management science
Optimal scheduling
Optimization
Particle measurements
Processor scheduling
Proving
Scalars
Scheduling
Scheduling, sequencing
State estimation
Terminals
Time measurement
Tracking
Title Optimal Scheduling of Scalar Gauss-Markov Systems With a Terminal Cost Function
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