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Quantized feedback adaptive command filtered backstepping control for a class of uncertain nonlinear strict-feedback systems

机译:量化反馈Adaptive命令过滤了一类不确定非线性严格反馈系统的BackStepping控制

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摘要

An adaptive command filtered backstepping control design strategy in the presence of quantized states is presented for uncertain nonlinear systems in the strict-feedback form. A uniform quantizer quantizes all state variables, and the quantized state variables are only available for feedback. The existing quantized feedback recursive control design is only applicable to systems with nonlinearities matched to the control input because of its restriction that the partial derivatives of the virtual control laws with respect to state variables should be constants. Compared with the existing result, the primary contribution of this paper is to develop a quantized feedback recursive design using the command filtered backstepping technique for dealing with unmatched nonlinearities without this restriction. An adaptive tracking scheme using quantized states is constructed to compensate for quantization effects, and a new stability analysis strategy is established by analyzing the boundedness of the quantization errors of signals in the command filtered backstepping design framework. The stability of the closed-loop system is analyzed in the sense of uniform ultimate boundedness.
机译:在严格反馈形式的不确定非线性系统中介绍了在量化状态存在下滤波的自适应命令滤波的反击设计策略。统一的量化器量化所有状态变量,量化状态变量仅用于反馈。现有量化反馈递归控制设计仅适用于与控制输入匹配的非线性的系统,因为它限制了关于状态变量的虚拟控制法的部分导数应该是常量。与现有结果相比,本文的主要贡献是利用该命令过滤的反向插入技术开发量化反馈递归设计,以处理无与伦比的非线性而没有这种限制。构造使用量化状态的自适应跟踪方案以补偿量化效果,并且通过分析命令中的信号的量化误差的界限来建立新的稳定性分析策略。闭环系统的稳定性在均匀的最终界限的意义上分析。

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