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Combination of map-based and adaptive feedforward control algorithms for active engine mounts

机译:用于主动发动机安装的地图基和自适应前馈控制算法的组合

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摘要

Active engine mounts significantly contribute to ensure the comfort in vehicles with emission-reducing engine technologies, e.g., cylinder-on-demand (COD), downsizing or turbochargers. To control active engine mounts, either adaptive or non-adaptive feedforward control is commonly employed. Since both approaches have previously been treated separately, this study proposes methods to connect them in terms of multiple-input-multiple-output Newton/FxLMS adaptive filters with self-trained, grid-based look-up tables. The look-up tables are incorporated as parameter-maps or parallel-maps, respectively. By combining the two feedforward control strategies, their inherent advantages, i.e., the adaptivity of adaptive filtering and the direct impact as well as the tracking behavior of map-based feedforward control, are utilized. The proposed control structures are illustrated by simulation and experimentally demonstrated in a vehicle with a V8-COD engine. While both methods significantly reduce the convergence time of the adaptive filter, the parallel implementation additionally improves the tracking behavior during fast engine run-ups.
机译:主动发动机安装座显着促成了减少发射发动机技术的舒适性,例如,圆柱形的汽缸,缩小或涡轮增压器。为了控制有源发动机支架,通常采用自适应或非自适应前馈控制。由于这两种方法以前已经分开处理,本研究提出了在多输入多输出牛顿/ FXLMS自适应滤波器方面连接它们的方法,具有自培训的基于网格的查找表。查找表分别作为参数映射或并行图。通过组合两个前馈控制策略,其固有的优点,即自适应滤波的适应性以及基于地图的前馈控制的直接影响以及基于地图的前馈控制的跟踪行为。所提出的控制结构通过仿真说明并在具有V8-COD发动机的车辆中进行实验。虽然两种方法显着降低自适应滤波器的收敛时间,但是并行实现另外提高了快速发动机跳闸期间的跟踪行为。

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