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Active disturbance rejection control tuning employing the lqr approach for decoupling uncertain multivariable systems

机译:主动干扰抑制控制调整采用LQR方法去耦不确定多变量系统

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The ADRC tuning is essentially a pole-placement technique and the desired performance is indirectly achieved through the location of the closed-loop poles. However, the final choice of these poles becomes a trial-and-error strategy. In contrast with pole-placement, in the LQR method, the desired performance objectives are directly and globally addressed by minimizing a quadratic function of the state and control input. ADRC tuning employing the LQR approach is then applied for decoupling uncertain MIMO systems. This is done by considering all the coupling and interference interactions between the channels of the system as disturbances, using an ESO to estimate them in real time and then canceling its effect employing the estimate as part of the control signal.
机译:ADRC调谐基本上是极置技术,并且通过闭环磁极的位置间接地实现所需的性能。但是,这些杆的最终选择成为试验和错误策略。相反,与极值 - 在LQR方法中,通过最小化状态和控制输入的二次函数,直接和全球地解决所需的性能目标。然后应用采用LQR方法的ADRC调谐用于解耦不确定的MIMO系统。这是通过将系统的信道之间的所有耦合和干扰相互作用考虑为干扰,使用ESO实时估计它们,然后取消其用作控制信号的一部分的效果。

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