Delayed dynamic-feedback controller design for multi-frequency vibration suppression
Delayed dynamic-feedback controller design for multi-frequency vibration suppression
We present a methodology for designing a dynamic controller with delayed output feedback for achieving non-collocated vibration suppression with a focus on the multi-frequency case. To synthesize the delay-based controller, we first remodel the system of equations as a delay-differential algebraic equation (DDAE) in such a way that existing tools for design of a static output feedback controller can be easily adapted. The problem of achieving non-collocated vibration suppression with sufficient damping is formulated as a constrained optimization problem of minimizing the spectral abscissa in the presence of zero-location constraints, with the constraints exhibiting polynomial dependence on its parameters. We transform the problem into an unconstrained one using elimination, following which we solve the resulting non-convex, non-smooth optimization problem.
Adrian Saldanha、Adam Peichl、Wim Michiels、Tomá? Vyhlídal
电子技术应用自动化技术、自动化技术设备
Adrian Saldanha,Adam Peichl,Wim Michiels,Tomá? Vyhlídal.Delayed dynamic-feedback controller design for multi-frequency vibration suppression[EB/OL].(2025-05-22)[2025-06-28].https://arxiv.org/abs/2505.16939.点此复制
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