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The turning points for distributed parameter systems are usually calcualted numerically.
Stability theorems for distributed parameter dynamical systems are stated in terms of exterior differential forms.
The graph-based method for distributed parameter coordination considers the impact of nodes' decisions on their neighboring nodes.
This paper presents a method for tuning simple controllers for distributed parameter systems in the process industry.
In this paper, two methods are reviewed and compared for designing reduced order controllers for distributed parameter systems.
This paper introduces a new technique to design applicable one-point feedback controllers for distributed parameter systems (DPS) with uncertainty.
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In the paper engineering methods for control of distributed parameter systems given by numerical structures on complex shape 3D definition domains are presented.
This paper presents some results on modeling and control of temperature field in a steel continuous casting, demonstrating the possibilities of using engineering methods for control of distributed parameter systems along with virtual engineering environments.
A mixed Galerkin formulation for reduced-order modeling is presented for controller design of distributed parameter systems with boundary inputs.
The robust H∞ control for a class of distributed parameter switched systems with Neumann boundary conditions was studied.
A sampled-data synchronization scheme is developed for a class of distributed parameter neural networks with mixed time delays.
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CEO of Professional Science Editing for Scientists @ prosciediting.com