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Transient Response Shaping, Model Based Cheap Control, Saturation Indices and MPC

机译:瞬态响应整形,基于模型的廉价控制,饱和指数和MPC

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This paper focusses on the time-response performance aspects and control-signal magnitude aspects of controller design. The problem is stated in the context of the servomechanism problem for a class of extended constant tracking/disturbance signals, which includes constant signals as a special case. In particular, the paper proposes a new cheap-control performance index called "model-based cheap control", which explicitly includes a desired transient model within it; for example, minimizing the performance index with a first-order desired error model results in smooth non-oscillatory transients with almost no cross-channel interaction (subject to standard performance limitations). Assuming the control input signals have a limited operating range, the notion of a "saturation index" (SI) for a closed-loop system is then introduced. The SI gives a measure of the closed-loop operating range that a given controller requires; an SI of one implies that the controller "makes optimal use" of the control signal constraints, while a larger SI implies that the controller's operating range may be highly restricted. The paper then proposes the use of model predictive control (MPC) using the previously introduced model based cheap-control index. In this case, the resulting MPC closed-loop system always has an SI of one, and owing to the special cheap-control performance index used, the system has a transient response that tends to be smooth and non-oscillatory with little cross-channel interaction. Finally, the paper evaluates the performance of a new "non-feasible active set" algorithm to solve the MPC problem; examples are used to show that, in terms of CPU calculation time, the new algorithm can be up to 40 times faster than standard algorithms.
机译:本文着重于控制器设计的时间响应性能方面和控制信号幅度方面。该问题是在伺服力学问题的上下文中针对一类扩展的恒定跟踪/干扰信号提出的,该信号包括特殊情况下的恒定信号。特别是,本文提出了一种新的廉价控制性能指标,称为“基于模型的廉价控制”,其中明确包含了所需的瞬态模型。例如,使用一阶期望误差模型将性能指标最小化会导致平滑的非振荡瞬态,几乎没有跨通道交互(受标准性能限制)。假设控制输入信号的工作范围有限,则引入闭环系统的“饱和指数”(SI)概念。 SI给出了给定控制器所需的闭环工作范围的度量; SI值为1表示控制器“最佳利用”了控制信号约束,而较大的SI表示控制器的工作范围可能受到严格限制。然后,本文提出了使用模型预测控制(MPC)的方法,该模型使用先前引入的基于模型的便宜控制指标。在这种情况下,最终的MPC闭环系统的SI始终为1,并且由于使用了特殊的廉价控制性能指标,该系统具有瞬态响应,该响应倾向于平滑且无振荡,且交叉通道很少相互作用。最后,本文评估了一种新的“不可行有效集”算法解决MPC问题的性能。实例表明,就CPU计算时间而言,新算法的速度可比标准算法快40倍。

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