Circuits and Systems

Circuits and Systems

ISSN Print: 2153-1285
ISSN Online: 2153-1293
www.scirp.org/journal/cs
E-mail: cs@scirp.org
"New Stability Tests of Positive Standard and Fractional Linear Systems"
written by Tadeusz Kaczorek,
published by Circuits and Systems, Vol.2 No.4, 2011
has been cited by the following article(s):
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[5] 二维 FM 系统的同时故障检测与控制
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[6] Non-fragile H∞filter design for two-dimensional foransini-marchesini systems
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[7] New Stability Tests for Discretized Fractional-Order Systems Using the Al-Alaoui and Tustin Operators
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[8] Responses of positive standard and fractional linear systems and electrical circuits with derivatives of their inputs
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[9] New results in stability analysis for LTI SISO systems modeled by GL-discretized fractional-order transfer functions
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[10] FRACTIONAL POSITIVE AND STABLE TIME-VARYING CONTINUOUS-TIME LINEAR ELECTRICAL CIRCUITS
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[11] Sur des Tests de Stabilité d. une Certaine Classe de Systèmes Linéaires Singuliers
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[12] Determinants of the matrices of solutions to the standard and positive linear electrical circuitsWyznaczniki macierzy rozwiązań standardowych i dodatnich liniowych …
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[13] Determinants of the matrices of solutions to the standard and positive linear electrical circuits
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[14] Eigenvalue assignment in fractional descriptor discrete-time linear systems
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[15] Cauchy formula for the time-varying linear systems with caputo derivative
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[16] Approximation and stability analysis of some kinds of switched fractional linear systems
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[17] Fractional Descriptor Continuous–Time Linear Systems Described by the Caputo–Fabrizio Derivative
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[18] Analysis of the positivity of fractional standard and descriptor continuous-time linear systems by the use of Caputo-Fabrizio definition
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[19] Positive and asymptotically stable time-varying continuous-time linear systems and electrical circuits
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[20] Analysis of positive and stable fractional continuous-time linear systems by the use of Caputo-Fabrizio derivative.
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[21] Stability conditions for linear continuous-time fractional-order state-delayed systems
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[22] Analysis of positive and stable fractional continuous-time linear systems by the use of Caputo-Fabrizio derivative
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[23] Fractional descriptor continuous-time linear systems described by the Caputo-Fabrizio derivative
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[24] 一类存在数据丢失二维离散系统的 H∞ 滤波
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[25] Analysis of positive and stable fractional continuous-time linear systems by the use of Caputo Fabrizio derivative
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[26] 一类存在数据丢失二维离散系统的 H_∞ 滤波
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[27] Positive and stable time-varying continous-time linear systems and electrical circuits
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[28] State Feedback H∞ Control For 2-D Switched Delay Systems with Actuator Saturation in the Second FM Model
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[30] Analysis of positivity and stability of time-varying continuous-time linear systems and electrical circuits
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[31] Positivity and stability of time-varying linear electrical circuits
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[32] State Feedback H_\ infty Control For 2-D Switched Delay Systems with Actuator Saturation in the Second FM Model
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[34] Positive and stable time-varying continuous-time linear systems and electrical circuits
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[35] Positivity and stability of time-varying discrete-time and continuous-time linear systems and electrical circuits
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[36] Minimum energy control of positive 2D continuous-discrete linear systems with bounded inputs
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[37] Positive time-varying continuous-time linear systems and electrical circuits
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[38] STATE FEEDBACK∞ H CONTROL FOR DISCRETE 2-D SWITCHED SYSTEMS WITH ACTUATOR SATURATION
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[39] On ?∞ and L∞ gains for positive systems with bounded time-varying delays
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[40] Dynamic Programming Problem for Fractional Discrete-Time Dynamic Systems. Quadratic Index of Performance Case
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[41] A New Formulation and Solution of the Minimum Energy Control Problem of Positive 2D Continuous-Discrete Linear Systems
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[42] The Realization Problem for Positive and Fractional Systems
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[43] Exponential stability of discrete-time switched linear positive systems with time-delay
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[44] Fractional Order Sallen–Key and KHN Filters: Stability and Poles Allocation
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[45] A New Formulation and Solution of the Minimum Energy Control Problem of Positive 2D Continuous-Discrete Linear Systems.
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[46] Stability tests of positive fractional continuous-time linear systems with delays
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[47] Stability analysis for discrete-time fractional-order LTI state-space systems. Part II: New stability criterion for FD-based systems
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[48] Stability analysis and stabilization of discrete-time 2D switched systems
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[49] Stabilization and controller design of 2D discrete switched systems with state delays under asynchronous switching
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[50] Stability analysis for discrete-time fractional-order LTI state-space systems. Part I: New necessary and sufficient conditions for the asymptotic stability
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[51] Stability of the convex linear combination of positive linear systems
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[52] Computer algorithms for solving optimization problems for discrete-time fractional systems
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[53] Fixed final time and free final state optimal control problem for fractional dynamic systems–linear quadratic discrete-time case
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[54] Optimal Control Problem for Fractional Dynamic Systems–Linear Quadratic Discrete-Time Case
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[55] Minimum Energy Control Of Positive 2d Continuous-Discrete Linear Systems
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[56] Positive Fractional and Cone Fractional Linear Systems with delays
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[57] STABILITY OF THE CONVEX LINEAR COMBINATION OF FRACTIONAL POSITIVE DISCRETE-TIME LINEAR SYSTEMS
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[58] Positive stable descriptor continuous-discrete 2D linear system
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[59] Stabilization of 2D discrete switched systems with state delays under asynchronous switching
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[60] A Survey on the Stability of 2-D Discrete Systems Described by Fornasini-Marchesini Second Model
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[61] Stability of positive fractional continuous-time linear systems with delays
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[62] Pointwise completeness and pointwise degeneracy of 2D standard and positive Fornasini-Marchesini models with state-feedbacks
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[63] POSITIVE AND STABLE PERIODIC TIME-VARYING CONTINUOUS-TIME LINEAR SYSTEMS
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