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Varying-sampling-time LPV control for rejecting harmonically related nonstationary multisine disturbances

机译:可变采样时间LPV控制,用于消除谐波相关的非平稳多正弦扰动

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In this paper, a novel approach to design linear parameter-varying (LPV) controllers with time-varying sampling time to reject nonstationary harmonically related multisine disturbances is presented. The sampling time is chosen as a fraction of the smallest period of the harmonically related disturbance component. The plant is discretized with this sampling time using zero-order hold (ZOH). As a result, the disturbance model is regarded as one with fixed state-space representation subject to a time-varying sampling time. A polytopic LPV (pLPV) controller which quadratically stabilizes the plant under the disturbance is obtained. The number of the scheduling parameters is determined by the precision of the Taylor approximation for the discretized plant, independently of the number of frequencies. Excellent disturbance rejection is achieved in simulation.
机译:本文提出了一种新颖的方法来设计具有随时间变化的采样时间的线性参数变化(LPV)控制器,以抑制非平稳谐波相关的多正弦扰动。采样时间选择为谐波相关干扰分量最小周期的一部分。使用零阶保持(ZOH)在该采样时间下离散化工厂。结果,扰动模型被认为是具有随时间变化的采样时间而具有固定状态空间表示的模型。获得了在干扰下使植物二次稳定的多变量LPV(pLPV)控制器。调度参数的数量由离散化设备的泰勒近似精度决定,与频率数量无关。在仿真中可以实现出色的抗干扰能力。

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