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A robust adaptive observer for a class of singular nonlinear uncertain systems

机译:一类奇异非线性不确定系统的鲁棒自适应观测器

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This paper proposes a robust adaptive observer for a class of singular nonlinear non-autonomous uncertain systems with unstructured unknown system and derivative matrices, and unknown bounded nonlinearities. Unlike many existing observers, no strong assumption such as Lipschitz condition is imposed on the recommended system. An augmented system is constructed, and the unknown bounds are calculated online using adaptive bounding technique. Considering the continuous nonlinear gain removes the chattering which may appear in practical applications such as analysis of electrical circuits and estimation of interaction force in beating heart robotic-assisted surgery. Moreover, a simple yet precise structure is attained which is easy to implement in many systems with significant uncertainties. The existence conditions of the standard form observer are obtained in terms of linear matrix inequality and the constrained generalised Sylvester's equations, and global stability is ensured. Finally, simulation results are obtained to evaluate the performance of the proposed estimator and demonstrate the effectiveness of the developed scheme.
机译:针对一类具有非结构化未知系统和导数矩阵以及未知有界非线性的奇异非线性非自治不确定系统,提出了一种鲁棒的自适应观测器。与许多现有的观察者不同,推荐的系统没有强力的假设,例如Lipschitz条件。构建一个增强系统,并使用自适应边界技术在线计算未知边界。考虑到连续的非线性增益消除了颤动,颤动可能在实际应用中出现,例如在心脏跳动机器人辅助手术中分析电路和估计相互作用力。此外,获得了简单而精确的结构,该结构易于在具有很大不确定性的许多系统中实施。根据线性矩阵不等式和受约束的广义Sylvester方程获得标准形式观测器的存在条件,并确保了全局稳定性。最后,获得仿真结果以评估所提出的估计器的性能并证明所开发方案的有效性。

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