Search results for "Markov proce"

showing 10 items of 147 documents

Control for Networked Control Systems with Time Delays and Packet Dropouts

2013

This paper is concerned with the control issue for a class of networked control systems (NCSs) with packet dropouts and time-varying delays. Firstly, the addressed NCS is modeled as a Markovian discrete-time switched system with two subsystems; by using the average dwell time method, a sufficient condition is obtained for the mean square exponential stability of the closed-loop NCS with a desired disturbance attenuation level. Then, the desired controller is obtained by solving a set of linear matrix inequalities (LMIs). Finally, a numerical example is given to illustrate the effectiveness of the proposed method.

EngineeringArticle Subjectbusiness.industryNetwork packetGeneral Mathematicslcsh:MathematicsGeneral EngineeringMarkov processNetworked control systemlcsh:QA1-939Set (abstract data type)Dwell timesymbols.namesakeExponential stabilityControl theoryComputer Science::Systems and Controllcsh:TA1-2040Control systemsymbolsbusinesslcsh:Engineering (General). Civil engineering (General)Mathematical Problems in Engineering
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On the validity of non-Markovian master equation approaches for the entanglement dynamics of two-qubit systems

2010

In the framework of the dissipative dynamics of coupled qubits interacting with independent reservoirs, a comparison between non-Markovian master equation techniques and an exact solution is presented here. We study various regimes in order to find the limits of validity of the Nakajima–Zwanzig and the time-convolutionless master equations in the description of the entanglement dynamics. A comparison between the performances of the concurrence and the negativity as entanglement measures for the system under study is also presented.

Entanglement Open quantum systems Non-Markovian master equationsDynamics (mechanics)Markov processConcurrenceQuantum PhysicsQuantum entanglementCondensed Matter PhysicsAtomic and Molecular Physics and Opticssymbols.namesakeExact solutions in general relativityClassical mechanicsQubitMaster equationsymbolsStatistical physicsDissipative dynamicsMathematical PhysicsMathematicsPhysica Scripta
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Development of a Taekwondo Combat Model Based on Markov Analysis

2019

The purpose of the present study was to examine male and female Olympic taekwondo competitors' movement patterns according to their tactical actions by applying a Markov processes analysis. To perform this study, 11,474 actions by male competitors and 12,980 actions by female competitors were compiled and analyzed. The results yielded 32 significant sequences among male competitors and 30 among female competitors. Male competitors demonstrated 11 sequences initiated by an attack, 11 initiated by a counterattack, and 10 initiated by a defensive action. Female competitors demonstrated nine sequences initiated by an attack, 11 initiated by a counterattack, and 10 initiated by a defensive move.…

Frequency of occurrenceVDP::Medisinske Fag: 700::Idrettsmedisinske fag: 850::Treningslære: 851combat sportslcsh:BF1-990Markov processComputer securitycomputer.software_genre050105 experimental psychologyCompetition (economics)03 medical and health sciencessymbols.namesake0302 clinical medicinePsychology0501 psychology and cognitive sciencesGeneral PsychologyOriginal ResearchMartial artsMarkov chainprobabilistic models05 social sciencesCompetitor analysisCounterattacklcsh:Psychologymartial artsstatisticssymbolstactical patternsPsychologyRelevant informationcomputer030217 neurology & neurosurgery
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On the error sequences of M-ary FSK modulation schemes over Nakagami-m fading channels

2012

In this paper, we have studied some important statistical properties of error sequences of M-ary orthogonal frequency-shift keying (FSK) modulation schemes over Nakagami-m fading channels. We have derived the joint probability density function (PDF) of error sequences of arbitrary length. From the joint PDF, we have found an analytical solution for the autocorrelation function (ACF) of the error sequences. The correctness of the analytical expression for the ACF of error sequences has been confirmed by simulations, where the simulation results are obtained by using the sum-of-sinusoids principle. The derived joint PDF of error sequences is useful for the development of first-order and highe…

Frequency-shift keyingMarkov processNakagami distributionProbability density functionKeyingMarkov modelsymbols.namesakeJoint probability distributionStatisticssymbolsFadingAlgorithmComputer Science::Information TheoryMathematicsThe 2012 International Conference on Advanced Technologies for Communications
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Robust H∞ filtering for networked control systems with markovian jumps and packet dropouts

2014

Published version of an article in the journal: Modeling, Identification and Control. Also available from the publisher at: http://dx.doi.org/10.4173/mic.2014.3.3 Open Access This paper deals with the H∞ filtering problem for uncertain networked control systems. In the study, network-induced delays, limited communication capacity due to signal quantization and packet dropout are all taken into consideration. The finite distributed delays with probability of occurrence in a random way is introduced in the network.The packet dropout is described by a Bernoulli process. The system is modeled as Markovian jumps system with partially known transition probabilities. A full-order filter is designe…

H∞ filterNetwork packetComputer scienceMarkov processComputer Science Applications1707 Computer Vision and Pattern RecognitionNetworked control systemMarkov jump systemH-Infinity filterH filterVDP::Mathematics and natural science: 400::Mathematics: 410::Analysis: 411lcsh:QA75.5-76.95Computer Science Applicationssymbols.namesakeIdentification (information)Markovian jumpControl and Systems EngineeringControl theorypacket dropoutsH∞ filter; Markov jump system; Networked control system; Packet dropouts; Control and Systems Engineering; Software; Modeling and Simulation; Computer Science Applications1707 Computer Vision and Pattern RecognitionModeling and SimulationControl systemsymbolslcsh:Electronic computers. Computer sciencenetworked control systemSoftware
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Analysis of the IEEE 802.11e EDCA Under Statistical Traffic

2006

Many models have been proposed to analyze the performance of the IEEE 802.11 distributed coordination function (DCF) and the IEEE 802.11e enhanced distributed coordination function (EDCA) under saturation condition. To analyze DCF under statistical traffic, Foh and Zukerman introduce a model that uses Markovian Framework to compute the throughput and delay performance. In this paper, we analyze the protocol service time of EDCA mechanism and introduce a model to analyze EDCA under statistical traffic using Markovian Framework. Using this model, we analyze the throughput and delay performance of EDCA mechanism under statistical traffic.

IEEE 802Computer sciencebusiness.industryQuality of serviceComputerSystemsOrganization_COMPUTER-COMMUNICATIONNETWORKSMarkov processWireless local area networks (WLAN)ThroughputDistributed coordination functionThroughputComputer Science::OtherComputer Science::Performancebackoff algorithmsymbols.namesakeWireless lanComputer Science::Networking and Internet ArchitecturesymbolsbusinessThroughput (business)Protocol (object-oriented programming)Computer network
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Inverted and mirror repeats in model nucleotide sequences.

2007

We analytically and numerically study the probabilistic properties of inverted and mirror repeats in model sequences of nucleic acids. We consider both perfect and non-perfect repeats, i.e. repeats with mismatches and gaps. The considered sequence models are independent identically distributed (i.i.d.) sequences, Markov processes and long range sequences. We show that the number of repeats in correlated sequences is significantly larger than in i.i.d. sequences and that this discrepancy increases exponentially with the repeat length for long range sequences.

Independent identically distributedTime FactorsMolecular Sequence DataMarkov processNucleic Acid DenaturationQuantitative Biology - Quantitative MethodsCombinatoricssymbols.namesakeExponential growthChromosomes Human inverted repeatsNucleotideQuantitative Biology - GenomicsRNA Small InterferingQuantitative Methods (q-bio.QM)Sequence (medicine)MathematicsProbabilityRepetitive Sequences Nucleic AcidGenomics (q-bio.GN)chemistry.chemical_classificationStochastic ProcessesModels StatisticalBase SequenceNucleotidesProbabilistic logicMarkov ChainschemistryFOS: Biological sciencesNucleic acidsymbolsNucleic Acid RenaturationNucleic Acid ConformationAlgorithmsPhysical review. E, Statistical, nonlinear, and soft matter physics
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First passage time distribution of stationary Markovian processes

2010

The aim of this paper is to investigate how the correlation properties of a stationary Markovian stochastic processes affect the First Passage Time distribution. First Passage Time issues are a classical topic in stochastic processes research. They also have relevant applications, for example, in many fields of finance such as the assessment of the default risk for firms' assets. By using some explicit examples, in this paper we will show that the tail of the First Passage Time distribution crucially depends on the correlation properties of the process and it is independent from its stationary distribution. When the process includes an infinite set of time-scales bounded from above, the FPT…

Infinite setStationary distributionStochastic processStochastic processes Stochastic analysis methods (Fokker-Planck Langevin etc.) Markov processesGeneral Physics and AstronomyMarkov processsymbols.namesakeDistribution (mathematics)Bounded functionsymbolsStatistical physicsExponential decayFirst-hitting-time modelMathematicsEPL (Europhysics Letters)
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Fault detection for discrete-time Markov jump linear systems with partially known transition probabilities

2010

In this article, the fault detection (FD) problem for a class of discrete-time Markov jump linear system (MJLS) with partially known transition probabilities is investigated. The proposed systems are more general, which relax the traditional assumption in Markov jump systems that all the transition probabilities must be completely known. A residual generator is constructed and the corresponding FD is formulated as an H ∞ filtering problem by which the error between residual and fault are minimised in the H ∞ sense. The linear matrix inequality-based sufficient conditions for the existence of FD filter are derived. A numerical example on a multiplier–accelerator model economic system is give…

Linear systemLinear matrix inequalityMarkov processResidualFault detection and isolationComputer Science Applicationssymbols.namesakeDiscrete time and continuous timeControl and Systems EngineeringsymbolsFiltering problemApplied mathematicsJump processAlgorithmMathematicsInternational Journal of Control
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A Novel Approach for Faulty Sensor Detection and Data Correction in Wireless Sensor Network

2013

he main Wireless Sensor Networks purpose is represented by areas of interest monitoring. Even if the Wireless sensor network is properly initialized, errors can occur during its monitoring tasks. The present work describes an approach for detecting faulty sensors in Wireless Sensor Network and for correcting their corrupted data. The approach is based on the assumption that exist a spatio-temporal cross- correlations among sensors. Two sequential mathematical tools are used. The first stage is a probabilistic tools, namely Markov Random Field, for a two-fold sensor classification (working or damaged). The last stage is represented by the Locally Weighted Regression model, a learning techniq…

Locally Weighted RegressionSettore ING-INF/05 - Sistemi Di Elaborazione Delle InformazioniBrooks–Iyengar algorithmMarkov random fieldVisual sensor networkComputer scienceProbabilistic logicMarkov processMarkov Random FieldSoft sensorcomputer.software_genresymbols.namesakesymbolsMobile wireless sensor networkData miningInternet of ThingcomputerWireless sensor networkWireless Sensor Network2013 Eighth International Conference on Broadband and Wireless Computing, Communication and Applications
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