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Performance evaluation of an all-electric waterbus supplied by hybrid energy storage systems

机译:混合储能系统提供的全电动水上巴士的性能评估

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The adoption of electric propulsion for waterbuses can contribute to reduce negative environmental impact caused by noxious emissions in urban areas. Recent enhancements of batteries technology, with high energy density and efficiency, allow the design of full electric and zero emission vessels. The high variability of power demand that characterizes urban routes, with frequent stop and goes, suggests hybrid storage systems (HESS), based on supercapacitors, as on-board power source, with the main advantage of reducing current peaks for batteries and extending their lifecycle. In this paper, an exponential weight moving average model-based energy management strategy is proposed and evaluated for the case study of a waterbus, operating in the Venetian lagoon. That strategy has shown promising performance on public waterway driving profiles, based on real data acquired during the daily service.
机译:水上巴士采用电力推进可以减少城市地区有害排放对环境造成的负面影响。电池技术的最新增强,具有高能量密度和效率,允许设计全电和零排放容器。电力需求的高变化性是城市路线的特征,频繁地停停行驶,这表明基于超级电容器的混合存储系统(HESS)作为车载电源,其主要优点是减少了电池的电流峰值并延长了其使用寿命。本文提出了一种基于指数加权移动平均模型的能源管理策略,并针对在威尼斯泻湖中运行的水上巴士进行了案例研究并对其进行了评估。根据日常服务期间获得的真实数据,该策略在公共水道驾驶剖面上显示出可喜的表现。

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