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Comparison of adaptive algorithms for the control of tonal disturbances in mechanical systems

机译:机械系统音调扰动控制的自适应算法比较

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摘要

This paper presents a study on the performance of adaptive control algorithms designed to reduce the vibration of mechanical systems excited by a harmonic disturbance. The mechanical system consists of a mass suspended on a spring and a damper. The system is equipped with a force actuator in parallel with the suspension. The control signal driving the actuator is generated by adjusting the amplitude and phase of a sinusoidal reference signal at the same frequency as the excitation. An adaptive feedforward control algorithm is used to adapt the amplitude and phase of the control signal, to minimise the mean square velocity of the mass. Two adaptation strategies are considered in which the control signal is either updated after each period of the oscillation or at every time sample. The first strategy is traditionally used in vibration control in helicopters for example; the second strategy is normally referred to as the filtered-x least mean square algorithm and is often used to control engine noise in cars. The two adaptation strategies are compared through a parametric study, which investigates the influence of the properties of both the mechanical system and the control system on the convergence speed of the two algorithms.
机译:本文对自适应控制算法的性能进行了研究,该算法旨在减少谐波干扰激发的机械系统的振动。机械系统由悬挂在弹簧和阻尼器上的质量块组成。该系统配备了与悬架平行的力致动器。通过以与激励相同的频率调节正弦参考信号的幅度和相位来生成驱动致动器的控制信号。自适应前馈控制算法用于调整控制信号的幅度和相位,以使质量的均方速度最小。考虑了两种适应策略,其中,在每个振荡周期之后或在每个时间采样中更新控制信号。例如,第一种策略通常用于直升机的振动控制;第二种策略通常称为“滤波x最小均方算法”,通常用于控制汽车的发动机噪音。通过参数研究比较了两种自适应策略,该研究研究了机械系统和控制系统的特性对两种算法的收敛速度的影响。

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