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Modeling and Simulation of Plug-in Hybrid Electric Two Wheeler for All-Electric Range Requirements

机译:插入式混合电动电动电动电动电动电动电动电动三轮车的建模与仿真

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The higher levels of fuel consumption and emission contribution of low powered two-wheelers especially in urban areas need more attention in order to improve air quality and sustainability of transportation energy. Recently, plug-in hybrid technology has been emerged as one of the promising alternative to reduce petroleum consumption and emission reduction. However, the allelectric range plays a significant role in sizing of battery pack, to reduce fuel consumption and there by reduction of urban pollution to a large extent. This paper discusses the modeling and simulation of plug-in hybrid electric two-wheeler using MATLAB software with reference to Indian driving cycle. The simulation results reveal the influence of driving range in sizing of battery pack and battery cycle life on cost of battery pack. The simulation also helps to evaluate the power and energy requirements of plug-in hybrid electric two-wheeler for varying all-electric ranges and battery types.
机译:低动力两轮车的燃料消耗和排放贡献较高的燃料消耗和排放贡献尤其需要更多地关注,以提高运输能源的空气质量和可持续性。最近,插入式混合技术被出现为减少石油消耗和减排的有希望的替代方案之一。然而,电池尺寸在电池组尺寸中发挥着重要作用,通过降低城市污染在很大程度上降低燃料消耗。本文讨论了使用Matlab软件参考印度驾驶循环的插入式混合电动双轮的建模和仿真。仿真结果揭示了电池组尺寸尺寸的驾驶范围和电池循环寿命的影响。该模拟还有助于评估插入式混合电动电动两轮机的功率和能量要求,以改变所有电气范围和电池类型。

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