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A Novel Piecewise Frequency Control Strategy Based on Fractional-Order Filter for Coordinating Vibration Isolation and Positioning of Supporting System

机译:一种基于分数序滤波器的分段频率控制策略用于协调振动隔离和配套系统定位

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摘要

A piecewise frequency control (PFC) strategy is proposed in this paper for coordinating vibration isolation and positioning of supporting systems under complex disturbance conditions, such as direct and external disturbances. This control strategy is applied in an active-passive parallel supporting system, where relative positioning feedback for positioning and absolute velocity feedback for active vibration isolation. The analysis of vibration and deformation transmissibility shows that vibration control increases low-frequency position error while positioning control amplifies high-frequency vibration amplitude. To overcome this contradiction across the whole control bandwidth, a pair of Fractional-Order Filters (FOFs) is adopted in the PFC system, which increases the flexibility in the PFC design by introducing fraction orders. The system stability analysis indicates that the FOFs can provide a better stability margin than the Integral-Order Filters (IOFs), so the control gains are increased to get a better performance on the AVI and positioning. The PFC based on FOFs can suppress the peak amplitude at the natural frequency which cannot be avoided when using the IOFs. The constrained nonlinear multivariable function is formed by the required performance and the stability of the system, then the controller parameters are optimized effectively. Lastly, the effectiveness of the proposed method is verified by experiments.
机译:本文提出了一种分段频率控制(PFC)策略,用于协调在复杂的扰动条件下的振动隔离和配套系统的定位,例如直接和外部干扰。该控制策略应用于主动被动并行支撑系统,其中相对定位反馈用于定位和用于有源振动隔离的定位和绝对速度反馈。振动和变形传动仪的分析表明,在定位控制放大高频振动幅度时,振动控制增加了低频位置误差。为了通过整个控制带宽克服这种矛盾,PFC系统采用了一对分数级滤波器(FOF),通过引入分数令来提高PFC设计中的灵活性。系统稳定性分析表明FOF可以提供比整数级滤波器(IOF)更好的稳定性边缘,因此控制增益增加以在AVI和定位上获得更好的性能。基于FOF的PFC可以抑制在使用IOF时不能避免的自然频率处的峰值幅度。受约束的非线性多变量功能由所需的性能和系统的稳定性形成,然后有效地优化了控制器参数。最后,通过实验验证了所提出的方法的有效性。

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