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Nonlinear Output Regulation by Post-processing Internal Model for Multi-Input Multi-Output Systems

机译:多输入多输出系统后处理内部模型的非线性输出调节

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The paper deals with the problem of output regulation for the class of multi-input multi-output square nonlinear systems satisfying a minimum-phase assumption and a "positivity" condition on the high-frequency gain matrix. By following a design paradigm proposed in [12] for single-input single-output nonlinear systems, it is shown how an internal model-based controller can be obtained, whose dimension depends on the number of regulated outputs and on the dimension of the exosystem. Thanks to a scalability property of the regulator structure highlighted in [10], it is shown how a "pre-processing" internal model can be shifted from input to output, yielding in this way a "post-processing" internal model. This makes it possible to run a high-gain asymptotic analysis that bypasses the need of finding a normal form, as it would normally be the case.
机译:本文涉及满足最小相位假设的多输入多输出方非线性系统的输出调节问题,以及高频增益矩阵上的“积极性”条件。通过在[12]中提出的设计范例进行单输入单输出非线性系统,显示如何获得基于内部模型的控制器,其尺寸取决于调节输出的数量和exosystem的维度。由于[10]中突出显示的稳压器结构的可扩展性属性,显示了如何从输入到输出的“预处理”内部模型,以这种方式产生“后处理”内部模型。这使得可以运行高增益渐近分析,以绕过找到正常形式的需要,因为它通常是这种情况。

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