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Separating Controller Design from Closed-Loop Design: A New Perspective on System-Level Controller Synthesis

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arxiv 2006.05040 v1 pith:5R3CBHEI submitted 2020-06-09 eess.SY cs.SY

Separating Controller Design from Closed-Loop Design: A New Perspective on System-Level Controller Synthesis

classification eess.SY cs.SY
keywords controllerclosed-loopdesignresponseconstraintsdesiredableseparating
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that given a desired closed-loop response for a system, there exists an affine subspace of controllers that achieve this response. By leveraging the existence of this subspace, we are able to separate controller design from closed-loop design by first synthesizing the desired closed-loop response and then synthesizing a controller that achieves the desired response. This is a useful extension to the recently introduced System Level Synthesis framework, in which the controller and closed-loop response are jointly synthesized and we cannot enforce controller-specific constraints without subjecting the closed-loop map to the same constraints. We demonstrate the importance of separating controller design from closed-loop design with an example in which communication delay and locality constraints cause standard SLS to be infeasible. Using our new two-step procedure, we are able to synthesize a controller that obeys the constraints while only incurring a 3% increase in LQR cost compared to the optimal LQR controller.

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