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A comparison of two adaptive algorithms for the control of active engine mounts

机译:两种用于主动发动机悬置控制的自适应算法的比较

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This paper describes work conducted in order to control automotive active engine mounts, consisting of a conventional passive mount and an internal electromagnetic actuator. Active engine mounts seek to cancel the oscillatory forces generated by the rotation of out-of-balance masses within the engine. The actuator generates a force dependent on a control signal from an algorithm implemented with a real-time DSP. The filtered-x least-mean-square (FXLMS) adaptive filter is used as a benchmark for comparison with a new implementation of the error-driven minimal controller synthesis (Er-MCSI) adaptive controller. Both algorithms are applied to an active mount fitted to a saloon car equipped with a four-cylinder turbo-diesel engine, and have no a priori knowledge of the system dynamics. The steady-state and transient performance of the two algorithms are compared and the relative merits of the two approaches are discussed. The Er-MCSI strategy offers significant computational advantages as it requires no cancellation path modelling. The Er-MCSI controller is found to perform in a fashion similar to the FXLMS filter-typically reducing chassis vibration by 50-90% under normal driving conditions. (c) 2004 Elsevier Ltd. All rights reserved.
机译:本文介绍了为控制汽车主动发动机支架而进行的工作,该发动机支架包括常规的被动支架和内部电磁致动器。主动式发动机安装架试图抵消由发动机内不平衡质量的旋转产生的振荡力。执行器根据来自实时DSP实现的算法的控制信号产生力。滤波x最小均方(FXLMS)自适应滤波器用作与误差驱动的最小控制器综合(Er-MCSI)自适应控制器的新实现进行比较的基准。两种算法都适用于安装在装有四缸涡轮柴油发动机的四门轿车上的主动支架,并且对系统动力学没有先验知识。比较了两种算法的稳态和瞬态性能,并讨论了两种方法的相对优点。 Er-MCSI策略具有显着的计算优势,因为它不需要取消路径建模。人们发现Er-MCSI控制器的运行方式类似于FXLMS滤波器,通常在正常行驶条件下可将底盘振动降低50-90%。 (c)2004 Elsevier Ltd.保留所有权利。

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