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Bilateral Control of SeNZA—A Series Hybrid Electric Bicycle

机译:SeNZA-A系列混合动力电动自行车的双边控制

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The need for reducing pollution, congestion, and energy consumption is increasing the interest in light electric vehicles. E-bikes can play an important role in this scenario, since they are cost effective, easy to use, and have a small footprint. This paper explores the series hybrid electric bicycle concept. This vehicle is characterized by the absence of a mechanical transmission: the pedals are connected to a generator electrically coupled to a battery pack and an electric motor. This increases the degrees of freedom with which assistance can be provided, but poses several challenges: from human interfacing to energy management. The proposed vehicle is not equipped with a throttle: pedals are, at the same time, a power source and the human–machine interface. It is paramount that the vehicle is controlled so to yield a natural feeling, both at the pedaling dynamics level and at the vehicle level. In this paper, this is obtained through the bilateral control framework. This paper discusses the design of the control system along with several considerations on the choice of generator, motor, and tuning. The controller is finally extensively experimentally analyzed in a human-in-the-loop setting, considering both the cycling feeling and the energy flows.
机译:减少污染,交通拥堵和能源消耗的需求正在增加对轻型电动汽车的兴趣。在这种情况下,电动自行车可以发挥重要作用,因为它们具有成本效益,易于使用且占地面积小。本文探讨了混合动力电动自行车的概念。该车辆的特点是没有机械传动装置:踏板连接到发电机,发电机与电池组和电动马达电气连接。这增加了提供援助的自由度,但带来了一些挑战:从人机交互到能源管理。拟议的车辆未配备节气门:踏板同时是动力源和人机界面。至关重要的是,要控制车辆以在踏板动力级别和车辆级别产生自然的感觉。在本文中,这是通过双边控制框架获得的。本文讨论了控制系统的设计,以及在选择发电机,电动机和调节装置时的一些注意事项。最后,在考虑人体循环感觉和能量流动的情况下,对控制器进行了广泛的实验分析。

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