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H;1; control strategy of motor torque ripple in hybrid electric vehicles: an experimental study

机译:H; 1;电动汽车电机转矩脉动控制策略:实验研究

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摘要

In this study, the authors propose a novel control strategy of torque ripple reduction in hybrid electric vehicles (HEVs). By its periodic cycle of power production, the internal combustion engine used in a hybrid vehicle provides a torque that fluctuates constantly. This is problematic for vehicle manufacturers since this torque ripple creates uncomfortable vibrations and mechanical damage. To achieve this active control, the problem is reformulated in complex notation in the frequency domain with respect to the main order of the fluctuations. A permanent magnet synchronous machine is mounted on the crankshaft in order to generate a torque sequence opposing ripple torque. The control strategy is based on a static output feedback synthesis under H;1; performance specification. A complete modelling of the hybrid propulsion from an experimental test bench is achieved. The model is performed at low speed (900 rpm). In fact, at this speed, the ripple is very restrictive. Experimental results highlight the control approach interest.
机译:在这项研究中,作者提出了一种新型的混合动力汽车(HEV)转矩脉动减小控制策略。通过其周期性的动力产生,混合动力车辆中使用的内燃机提供恒定波动的扭矩。这对于车辆制造商是有问题的,因为该转矩波动会产生不舒适的振动和机械损坏。为了实现这种主动控制,相对于波动的主要顺序,以复数形式在频域中重新表示问题。永磁同步电机安装在曲轴上,以便产生与纹波转矩相反的转矩序列。控制策略基于H; 1;下的静态输出反馈综合。性能规格。从实验测试台获得了混合动力推进的完整模型。该模型以低速(900 rpm)执行。实际上,以这种速度,波纹非常有限。实验结果突出了控制方法的兴趣。

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