Bi-directional DC-AC using BLDC motor for electric and hybrid electric vehicles applications with reduced number of switches

Nishalini Delcy Arokianathan, Francis Thomas Josh, Evelyn Brindha, Jeyaraj Jency Joseph, Raman Mohan Das, S. Kannadhasan
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Abstract

Electric scooters often have a single design and are difficult to produce at a greater level than other forms of transportation. A possible cut electric scooter is built with the optimization design of the vehicle combustible wealth and the pollution characteristics in order to arrange to a correct solution by resolving each and every challenge. The engines' electrical systems are comprised of lead acid batteries. For the sake of a straightforward simulation procedure, the engine operates in two states ON and OFF while the vehicle's speed is regulated in three ranges roughly corresponding to high, medium, and low. The planetary speed ratio and the final drive speed ratio are gathered in the computation method's general outline. Utilizing simulation MATLAB, the findings of optimization strategies are resolved. This technique improves the fuel plenty and discharge quality of the possibility cut electric automobiles.
使用无刷直流电机的双向直流-交流应用于电动汽车和混合动力电动汽车,减少开关数量
与其他交通工具相比,电动滑板车的设计往往比较单一,生产难度较大。可能的切割电动滑板车是通过对车辆的可燃物和污染特性进行优化设计来制造的,以便通过解决每一个难题来安排正确的解决方案。发动机的电气系统由铅酸电池组成。为了简化模拟程序,发动机在开启和关闭两种状态下工作,而车辆的速度则在大致对应于高、中、低三个范围内调节。计算方法的总纲中包含了行星齿轮速比和最终传动速比。利用 MATLAB 仿真解决了优化策略的结论。该技术提高了电动汽车的燃油效率和放电质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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