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Nonlinear feedback controllers and compensators: a state-dependent Riccati equation approach

机译:非线性反馈控制器和补偿器:一种依赖状态的Riccati方程方法

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State-dependent Riccati equation (SDRE) techniques are rapidly emerging as general design and synthesis methods of nonlinear feedback controllers and estimators for a broad class of nonlinear regulator problems. In essence, the SDRE approach involves mimicking standard linear quadratic regulator (LQR) formulation for linear systems. In particular, the technique consists of using direct parameterization to bring the nonlinear system to a linear structure having state-dependent coefficient matrices. Theoretical advances have been made regarding the nonlinear regulator problem and the asymptotic stability properties of the system with full state feedback. However, there have not been any attempts at the theory regarding the asymptotic convergence of the estimator and the compensated system. This paper addresses these two issues as well as discussing numerical methods for approximating the solution to the SDRE. The Taylor series numerical methods works only for a certain class of systems, namely with constant control coefficient matrices, and only in small regions. The interpolation numerical method can be applied globally to a much larger class of systems. Examples will be provided to illustrate the effectiveness and potential of the SDRE technique for the design of nonlinear compensator-based feedback controllers.
机译:状态依赖的Riccati方程(SDRE)技术作为非线性反馈控制器和估计器针对各种非线性调节器问题的通用设计和综合方法,正在迅速兴起。本质上,SDRE方法涉及模仿线性系统的标准线性二次调节器(LQR)公式。特别地,该技术包括使用直接参数化将非线性系统带到具有依赖于状态的系数矩阵的线性结构。关于非线性调节器问题和具有全状态反馈的系统的渐近稳定性,已经取得了理论上的进步。但是,没有关于估计器和补偿系统的渐近收敛的理论的任何尝试。本文讨论了这两个问题,并讨论了逼近SDRE解的数值方法。泰勒级数方法仅适用于特定类型的系统,即具有恒定控制系数矩阵的系统,并且仅适用于较小区域。插值数值方法可以全局应用于更大类别的系统。将提供示例来说明SDRE技术在基于非线性补偿器的反馈控制器设计中的有效性和潜力。

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