基于城市交通参数和两轮车混合动力的电动动力系统选型

Dr. Shaik Amjad, B. Pavan Bharadwaja, T. Srinivasa Rao, Sai Yerramsetti, Sri Aanshu Singh Chowhan
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引用次数: 0

摘要

交通造成了气候污染,减少排放对解决这一问题至关重要。汽油和柴油发动机会导致呼吸道疾病和早期死亡。研究人员正专注于混合动力汽车等性能提升技术,以减少排放和保护环境。该项目旨在确定城市环境下电动传动系统的尺寸,并将其安装在传统的两轮摩托车上。平均速度、加速度和平均行驶距离等真实世界的交通数据变量将指导电动机和电池组的有效尺寸。已开发出一种控制策略,并在车辆上进行了测试和成功部署。对混合动力传动系统结构的复杂性进行了评估,如电池组所需的空间和电机安装位置。选定的电动机和电池组用于传统两轮车的混合动力。电动机可在交通繁忙时减少污染物和燃料消耗。因此,减少了集成电路发动机的总体使用量,从而降低了车辆的油耗和尾气排放。关键词动力系统、城市交通、两轮车、交通、燃油模式、电动模式、电池技术
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sizing of an Electric Powertrain based on Urban Traffic Parameters and Hybridizing of a Two-Wheeler
Transportation contributes to climate pollution, and reducing emissions is crucial to address the issue. Gasoline and diesel engines contribute to respiratory illnesses and early mortality. Researchers are focusing on performance-enhancing technologies like hybrid cars to reduce emissions and protect the environment. This project aims to size an electric drivetrain for urban environments and install it on a traditional two-wheeler. Real-world traffic data variables such as average speed, acceleration and average travel distance guide the effective sizing of the electric motor and battery pack. A control strategy has been developed, tested and successfully deployed on the vehicle. Complexities like the volume of space needed for battery pack and electric motor fitment location are evaluated for hybrid drivetrain architecture. A selected electric motor and battery pack is used to hybridise a conventional two-wheeler. The electric motor can reduce pollutants and fuel usage during high-traffic periods. Therefore, the overall usage of IC engines has been reduced, which results in the reduction of fuel consumption and tailpipe emissions of the vehicle. Keywords: Powertrain, urban traffic, two-wheeler, transportation, fuel mode, electric mode, battery technology
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