基于LMS自适应算法的汽车主动悬架研究

Jianmin Sun, Qingmei Yang, Fengying Sun, Bao-Ping Ma
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摘要

主动控制悬架系统可以提高车辆在各种工况下的乘坐舒适性和操控安全性。本文根据车辆乘坐舒适性和操纵安全性的评价方法,确定了悬架质量的加速度、轮间动态轮胎载荷和非悬架质量作为悬架性能的评价指标。将最小均方自适应算法应用于主动悬架系统。通过调整自适应滤波器的权值,获得最小的二次型性能指标。针对二自由度汽车悬架模型,研究了天钩控制、广义自适应控制和LMS自适应控制。仿真结果表明,LMS自适应控制算法不仅简单,而且非常有效。
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Studies on vehicle active suspension based on LMS adaptive algorithm
The active control suspension system can improve both the riding comfort and handling safety in various operation conditions. In this paper, according to the evaluation method of riding comfort and handling safety of vehicle, the acceleration of the sprung mass, dynamic tyre load between wheels and the unsprung mass are determined as the evaluation targets of suspension performance. The least mean squares (LMS) adaptive algorithm is used in active suspension system. With adjusting the weight of the adaptive filter, the minimum quadratic performance index is obtained. For two-DOF vehicle suspension model, the sky-hook control, generalized adaptive control and LMS adaptive control are studied. The simulation results show that LMS adaptive control algorithm is not only simple but also remarkably effective.
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