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Thermal Diffusivity Identification of Distributed Parameter Systems to Sea Ice
Published 2013-01-01“…The successful application of this method also explained that the optimal control model of distributed parameter systems in conjunction with the engineering background has great potential in dealing with practical problems.…”
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Control of Nonlinear Distributed Parameter Systems Based on Global Approximation
Published 2014-01-01“…We extend an iterative approximation method to nonlinear, distributed parameter systems given by partial differential and functional equations. …”
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Stochastic Stability Criteria for Neutral Distributed Parameter Systems with Markovian Jump
Published 2020-01-01“…This paper deals with the problem of stochastic stability for a class of neutral distributed parameter systems with Markovian jump. In this model, we only need to know the absolute maximum of the state transition probability on the principal diagonal line; other transition rates can be completely unknown. …”
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Iterative Learning Control with Forgetting Factor for Linear Distributed Parameter Systems with Uncertainty
Published 2014-01-01“…Based on this concept, this paper discussed iterative learning control problem for a class parabolic linear distributed parameter systems with uncertainty coefficients. …”
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Dissipativity-Based Controller Design for Time-Delayed T-S Fuzzy Switched Distributed Parameter Systems
Published 2018-01-01“…This paper studies fuzzy controller design problem for a class of nonlinear switched distributed parameter systems (DPSs) subject to time-varying delay. …”
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Adaptive resilient control for a class of nonlinear distributed parameter systems with actuator faults
Published 2024-12-01Subjects: Get full text
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Synchronization of the Coupled Distributed Parameter System with Time Delay via Proportional-Spatial Derivative Control
Published 2014-01-01“…By combining parabolic partial differential equation (PDE) theory with Lyapunov technique, the synchronization is studied for a class of coupled distributed parameter systems (DPS) described by PDEs. First, based on Kronecker product and Lyapunov functional, some easy-to-test sufficient condition is given to ensure the synchronization of coupled DPS with time delay. …”
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Robust H∞ Control for a Class of Nonlinear Distributed Parameter Systems via Proportional-Spatial Derivative Control Approach
Published 2014-01-01“…This paper addresses the problem of robust H∞ control design via the proportional-spatial derivative (P-sD) control approach for a class of nonlinear distributed parameter systems modeled by semilinear parabolic partial differential equations (PDEs). …”
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On the existence of a solution for some distributed optimal control hyperbolic system
Published 2000-01-01Subjects: “…Distributed parameters system…”
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Necessary and Sufficient Conditions of Optimality for a Damped Hyperbolic Equation in One-Space Dimension
Published 2014-01-01“…The present paper deals with the necessary optimality condition for a class of distributed parameter systems in which the system is modeled in one-space dimension by a hyperbolic partial differential equation subject to the damping and mixed constraints on state and controls. …”
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Optimal Control of Polymer Flooding Based on Maximum Principle
Published 2012-01-01“…In this paper, an optimal control model of distributed parameter systems (DPSs) for polymer injection strategies is established, which involves the performance index as maximum of the profit, the governing equations as the fluid flow equations of polymer flooding, and the inequality constraint as the polymer concentration limitation. …”
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Robust H∞ Feedback Compensator Design for Linear Parabolic DPSs with Pointwise/Piecewise Control and Pointwise/Piecewise Measurement
Published 2021-01-01“…In this paper, a robust H∞ control problem of a class of linear parabolic distributed parameter systems (DPSs) with pointwise/piecewise control and pointwise/piecewise measurement has been investigated via the robust H∞ feedback compensator design approach. …”
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Research on boundary control of vehicle-mounted flexible manipulator based on partial differential equations.
Published 2025-01-01“…This model allows us to understand how these arms behave over time and space, classifying them as distributed parameter systems. Furthermore, we enhance the practical utility of these robotic arms by implementing a proportional-derivative (PD) based boundary control law to achieve precise control of movement and suppression of vibrations, which are critical for operations requiring high accuracy. …”
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