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Prediction-Based Stabilization of Linear Systems Subject to Input-Dependent Input Delay of Integral-Type

机译:依赖于输入的整数类型输入延迟的线性系统的基于预测的镇定

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In this paper, it is proved that a predictor-based feedback controller can effectively yield asymptotic convergence for a class of linear systems subject to input-dependent input delay. This class is characterized by the delay being implicitly related to past values of the input via an integral model. This situation is representative of systems where transport phenomena take place, as is frequent in the process industry. The sufficient conditions obtained for asymptotic stabilization bring a local result and require the magnitude of the feedback gain to be consistent with the initial conditions scale. Arguments of proof for this novel result include general Halanay inequalities for delay differential equations and build on recent advances of backstepping techniques for uncertain or varying delay systems.
机译:在本文中,证明了基于预测器的反馈控制器可以有效地产生一类线性系统的渐近收敛,该线性系统受输入依赖的输入延迟的影响。此类的特征是,延迟通过积分模型与输入的过去值隐式相关。这种情况代表了发生传输现象的系统,这在过程工业中很常见。为渐近稳定所获得的充分条件带来了局部结果,并要求反馈增益的大小与初始条件范围保持一致。这一新颖结果的论证包括时滞微分方程的一般Halanay不等式,并基于不确定或变化时滞系统的反推技术的最新进展。

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