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A FUNDAMENTALLY NOVEL DESIGN APPROACH THAT DEFIES SEPARATION PRINCIPLE

机译:一种从根本上蔑视分离原则的新颖设计方法

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Separation principle has governed state space control design for decades. Under it the state feedback (SF) control design is separated from its realizing controller, and assumes the plant state is available even though it isn't. Hence for mostplants, the critical loop transfer function and robustness property of SF control cannot be realized. This paper presents a general, complete and systematic design approach whose SF control is designed based on its realizing controller. This new designcan fully realize the loop transfer function of its SF control for most plants. Although our SF control is constrained by its realizing controller, this constraint is minimized and unifies completely (under the common ground of loop transfer functionrealization) the SF control and static output feedback control.
机译:分离原则已经治理了几十年的国家空间控制设计。在其下,状态反馈(SF)控制设计与其实现控制器分开,并假设植物状态可用,即使它不是。因此,为了使SF控制的临界环路传递函数和鲁棒性特性无法实现。本文介绍了一般,完整的和系统的设计方法,其SF控制基于其实现控制器设计。这种新的Designcan为大多数植物充分实现了SF控制的环路传递函数。虽然我们的SF控制受其实现控制器的约束,但是该约束被最小化并完全统一(在环路传输功能的公共场所中,SF控制和静态输出反馈控制。

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