Record ID | marc_columbia/Columbia-extract-20221130-014.mrc:163011251:4224 |
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LEADER: 04224cam a2200373 a 4500
001 6973732
005 20221130195826.0
008 070428t20092009maua b 001 0 eng
020 $a9780817644949
020 $a0817644946
024 $a40016162080
035 $a(OCoLC)ocn124025849
035 $a(NNC)6973732
035 $a6973732
040 $aUKM$cUKM$dOHX$dBTCTA$dBAKER$dYDXCP$dBWX$dOCLCQ$dNhCcYBP$dOrLoB-B
050 4 $aTK5101$b.M38 2009
082 04 $a621.382/1
100 1 $aMatveev, Alexey S.$0http://id.loc.gov/authorities/names/n99254990
245 10 $aEstimation and control over communication networks /$cAlexey S. Matveev, Andrey V. Savkin.
260 $aBoston :$bBirkhäuser,$c[2009], ©2009.
300 $axiv, 533 pages :$billustrations ;$c25 cm.
336 $atext$btxt$2rdacontent
337 $aunmediated$bn$2rdamedia
490 1 $aControl engineering
504 $aIncludes bibliographical references (p. [519]-530) and index.
505 00 $g1.$tIntroduction -- $g2.$tTopological Entropy, Observability, Robustness, Stabilizability, and Optimal Control -- $g3.$tStabilization of Linear Multiple Sensor Systems via Limited Capacity Communication Channels -- $g4.$tDetectability and Output Feedback Stabilizability of Nonlinear Systems via Limited Capacity Communication Channels -- $g5.$tRobust Set-Valued State Estimation via Limited Capacity Communication Channels -- $g6.$tAn Analog of Shannon Information Theory: State Estimation and Stabilization of Linear Noiseless Plants via Noisy Discrete Channels -- $g7.$tAn Analog of Shannon Information Theory: State Estimation and Stabilization of Linear Noisy Plants via Noisy Discrete Channels -- $g8.$tAn Analog of Shannon Information Theory: Stable in Probability Control and State Estimation of Linear Noisy Plants via Noisy Discrete Channels -- $g9.$tDecentralized Stabilization of Linear Systems via Limited Capacity Communication Networks -- $g10.$tH[superscript [infinity]] State Estimation via Communication Channels -- $g11.$tKalman State Estimation and Optimal Control Based on Asynchronously and Irregularly Delayed Measurements -- $g12.$tOptimal Computer Control via Asynchronous Communication Channels -- $g13.$tLinear-Quadratic Gaussian Optimal Control via Limited Capacity Communication Channels -- $g14.$tKalman State Estimation in Networked Systems with Asynchronous Communication Channels and Switched Sensors -- $g15.$tRobust Kalman State Estimation with Switched Sensors -- $gAppendix A.$tProof of Proposition 7.6.13 -- $gAppendix B.$tSome Properties of Square Ensembles of Matrices -- $gAppendix C.$tDiscrete Kalman Filter and Linear-Quadratic Gaussian Optimal Control Problem -- $gAppendix D.$tSome Properties of the Joint Entropy of a Random Vector and Discrete Quantity.
520 1 $a"Rapid advances in communication technology have created the possibility of large-scale control systems with distribution of control tasks among several processors via communication channels. Such control systems may be distributed over large distances and may use large numbers of actuators and sensors. The possibility of such networked control systems has motivated the development of a new chapter in control theory in which control and communication issues are integrated, and all the limitations of communication channels are considered." "This essentially self-contained monograph offers accessible mathematical models and results for advanced postgraduate students, researchers, and practitioners working in the areas of control engineering, communications, information theory, signal processing, and applied mathematics who have an interest in the emerging field of networked control systems."--BOOK JACKET.
650 0 $aTelecommunication systems$xMathematics.
650 0 $aControl theory.$0http://id.loc.gov/authorities/subjects/sh85031658
650 0 $aEstimation theory.$0http://id.loc.gov/authorities/subjects/sh85044957
650 0 $aAutomatic control.$0http://id.loc.gov/authorities/subjects/sh85010089
700 1 $aSavkin, Andrey V.$0http://id.loc.gov/authorities/names/n98083396
830 0 $aControl engineering (Birkhäuser)$0http://id.loc.gov/authorities/names/n98083404
852 00 $boff,eng$hTK5101$i.M388 2009g