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Backstepping design for parabolic systems with in-domain actuation and Robin boundary conditions

机译:抛物面系统的抛物面设计和罗宾边界条件的抛物线系统

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摘要

State feedback design for linear parabolic systems with in-domain actuation and general Robin boundary conditions is considered. To this end the system is shown to be state equivalent to a boundary controlled system. By means of the well established backstepping transformation this latter system is feedback equivalent to a stable parabolic equation. Within the contribution previous results concerning systems with Neumann boundary conditions are generalized by means of functional analytic methods. Existence of the involved transformations is discussed by means of the Fredholm theory while a late lumping approach is proposed for the numerical implementation.
机译:考虑了具有域名致动和普通罗宾边界条件的线性抛物系统的状态反馈设计。 为此,系统被示出为与边界控制系统等同的状态。 通过建立的BackStepping变换,后一种系统是反馈相当于稳定的抛物线方程。 在贡献中,先前结果通过功能分析方法概括了Neumann边界条件的系统。 通过Fredholm理论讨论所涉及的变换的存在,而提出了用于数值实现的后期绝地形方法。

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