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The Impact of Vehicle-Integrated Photovoltaics on Heavy-Duty Electric Vehicle Battery Cost and Lifespan

机译:车辆集成光伏的影响对重型电动车辆成本和寿命的影响

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Heavy-duty electric powertrains provide a potential solution to the high emissions and low fuel economy of trucks, buses, and other heavy-duty vehicles. However, the high-capacity batteries needed to power these vehicles are both cost and weight prohibitive. One possible method of supplementing battery power is to mount flexible solar panel modules to the roof of these vehicles, thereby allowing for a smaller battery (reducing battery cost and weight) or extended vehicle range. Electric buses identified as the type of vehicle that would derive the most benefit from roof-mounted solar panels due to their low operating speed (including frequent idling) and large available surface area. In this paper, the performance of an electric bus with combined battery and photovoltaic power sources is simulated on the Orange County Bus Cycle for average weather in Davis, CA. Lithium-ion batteries and flexible solar panel modules are compared in terms of vehicle performance as well as cost per kilogram and cost per kilowatt-hour. The proposed procedure shows how, for a desired operation time, one can determine the amount of stored energy that can be replaced by solar panel modules. The cost-benefit of removing battery cells is found and compared to the cost of adding solar panel modules. The study shows immediate cost savings, followed by additional savings from reduced consumption of energy from the grid. Additionally, the simulation demonstrates how vehicle-mounted solar panels can extend battery lifespan by reducing the battery discharge rate and maximum discharge percentage.
机译:重型电动动力驱动为卡车,公共汽车和其他重型车辆的高排放和低燃料经济性提供了潜在的解决方案。然而,这些车辆所需的高容量电池是成本和重量令人望而却的。一种可能的补充电池功率的方法是将柔性太阳能电池板模块安装到这些车辆的屋顶上,从而允许较小的电池(降低电池成本和重量)或扩展车辆范围。由于其低操作速度(包括频繁怠速)和大型可用表面积而导致屋顶太阳能电池板的车辆类型的电动公交车被识别为车辆的类型。在本文中,模拟了电池和光伏电源的电动总线的性能,用于达维斯,加利福尼亚州达维斯的平均天气。锂离子电池和柔性太阳能电池板模块在车辆性能和每公斤成本和每公斤成本方面进行比较。所提出的步骤显示了如何,对于所需的操作时间,可以确定可以通过太阳能电池板模块更换的存储能量的量。找到消除电池单元的成本益处,并与添加太阳能电池板模块的成本相比。该研究表明了即时节省成本,然后额外节省从网格中降低能量消耗。此外,模拟演示了车载的太阳能电池板如何通过降低电池放电速率和最大放电百分比来延长电池寿命。

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