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Multiple models and second level adaptation for a class of nonlinear systems with nonlinear parameterization

机译:一类具有非线性参数化的非线性系统的多模型和二级适应

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This research work demonstrates a method to design adaptive controller for a class of nonlinearly parameterized systems with unknown parameters. The main motivation behind this work is to deal with the widely known issues with adaptive control systems like oscillatory transient response, sluggish performance and poor parameter convergence. Multiple identification models with second level adaptation are used to describe the region of uncertainty for the given plant and to provide the best possible controller parameters. The two levels involved in the adaptive process improves the performance. A special attention is paid to the persistence of excitation condition and parameter convergence. Plants with nonlinear parameterizations are considered to ascertain the applicability of the proposed methodology. A Simulation work demonstrates the efficacy of the proposed methodology.
机译:这项研究工作演示了一种为一类参数未知的非线性参数化系统设计自适应控制器的方法。这项工作的主要动机是要解决自适应控制系统中广为人知的问题,例如振荡瞬态响应,性能低下和参数收敛性差。具有二级适应性的多个识别模型用于描述给定工厂的不确定性区域并提供最佳的控制器参数。自适应过程中涉及的两个级别提高了性能。要特别注意激发条件的持续性和参数收敛。考虑使用非线性参数化的工厂来确定所提出方法的适用性。仿真工作证明了所提出方法的有效性。

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