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Decoupling two-degree-of-freedom control strategy for cascade control systems

机译:解耦联级联控制系统的两自由度控制策略

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In this paper, two new two-degree-of-freedom control structures are proposed for cascade control systems, both of which are identical in the controller design procedure. The primary controller used for setpoint tracking is derived in terms of H-2 Optimal performance objective. The secondary controller is responsible for rejecting load disturbances that seep into the intermediate process and therefore is called a load disturbance estimator, which is inversely figured out by proposing the desired complementary sensitivity function of the inner loop for disturbance rejection. As a result, the nominal setpoint response is decoupled with the load disturbance response of the inner loop, both of which can be optimized independently. Based on the control system stability analysis, the rule of thumb for tuning the single adjustable parameter of each controller is provided to cope with the process uncertainty in practice. Several illustrative examples are included to demonstrate the superiority of the proposed method. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在本文中,为级联控制系统提出了两种新的两自由度控制结构,这两种结构在控制器设计过程中都是相同的。用于设定点跟踪的主要控制器是根据H-2最佳性能目标得出的。次级控制器负责抑制渗入中间过程的负载扰动,因此被称为负载扰动估计器,通过建议内部环路的所需互补灵敏度函数来消除扰动,反过来可以找到负载扰动估计器。结果,额定设定值响应与内环的负载干扰响应解耦,这两个响应都可以独立优化。基于控制系统的稳定性分析,提供了用于调整每个控制器的单个可调参数的经验法则,以应对实际中的过程不确定性。包括几个说明性示例,以证明所提出方法的优越性。 (C)2004 Elsevier Ltd.保留所有权利。

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