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Adaptive controller design and disturbance attenuation for SISO linear systems with zero relative degree under noisy output measurements

机译:噪声输出测量下相对零度SISO线性系统的自适应控制器设计和干扰衰减

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摘要

In this paper, we present robust adaptive controller design for SISO linear systems with zero relative degree under noisy output measurements. We formulate the robust adaptive control problem as a nonlinear H~∞-optimal control problem under imperfect state measurements, and then solve it using game theory. By using the a priori knowledge of the parameter vector, we apply a soft projection algorithm, which guarantees the robustness property of the closed-loop system without any persistency of excitation assumption of the reference signal. Owing to our formulation in state space, we allow the true system to be uncontrollable, as long as the uncontrollable part is stable in the sense of Lyapunov, and the uncontrollable modes on the jω-axis are uncontrollable from the exogenous disturbance input. This assumption allows the adaptive controller to asymptotically cancel out, at the output, the effect of exogenous sinusoidal disturbance inputs with unknown magnitude, phase, and frequency. These strong robustness properties are illustrated by a numerical example.
机译:在本文中,我们提出了在噪声输出测量下具有零相对度的SISO线性系统的鲁棒自适应控制器设计。我们将不完善状态测量下的鲁棒自适应控制问题表述为非线性H〜∞最优控制问题,然后运用博弈论对其进行求解。通过使用参数向量的先验知识,我们应用了一种软投影算法,该算法可以保证闭环系统的鲁棒性,而无需保留参考信号的激励假设。由于我们在状态空间中的表述,我们允许真实的系统是不可控的,只要在Lyapunov意义上不可控部分是稳定的,并且jω轴上不可控的模式就不受外源扰动输入的控制。该假设允许自适应控制器在输出处渐近抵消抵消幅度,相位和频率未知的外源正弦扰动输入的影响。通过数值示例说明了这些强大的鲁棒性。

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