基于永磁电机的飞轮储能系统对调峰功率串联混合动力汽车的控制策略研究

Xiaomin Lu, K. Iyer, K. Mukherjee, N. Kar
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引用次数: 9

摘要

交通运输机构越来越关注通过采用新的清洁推进技术,使公交车队更清洁、更高效、更经济。现有混合动力公交车的维护成本增加,电池组寿命缩短,这是促使公交运营商迅速转向这种节能技术的主要瓶颈。了解当前基于电池的储能技术的不足和基于飞轮的储能技术在公交汽车应用前景的优点,本文对基于永磁同步电机的飞轮储能系统进行了研究。以一种采用调峰控制策略的串联混合动力客车为研究对象,从燃油消耗和安装系统成本两方面对电池混合动力客车和飞轮混合动力客车进行了宏观比较。然而,本文的重点仍然是基于矢量控制技术的100千瓦飞轮储能系统的开发和研究,这是实现这一宏观目标的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of permanent magnet machine based flywheel energy storage system for peaking power series hybrid vehicle control strategy
Transit agencies are increasingly focused on making bus fleets cleaner, more efficient and cost effective by incorporating new clean propulsion technologies. Increased maintenance cost and lower lifetime of battery packs in existing hybrid electric buses have been major bottlenecks in motivating transit bus operators to rapidly switch to this energy efficient technology. Understanding the demerits of the current battery based energy storage technology and merits of the prospective flywheel based energy storage technology for transit bus application, this paper puts an effort to study the permanent magnet synchronous machine based flywheel energy storage system for the aforementioned application. A series transit hybrid bus with peaking vehicle control strategy has been taken into consideration with a macro objective to compare the performance of the battery based and flywheel based hybrid transit bus in terms of fuel consumption and cost of the installed system. However, the focus of this paper remains on the development and study of a 100 kW flywheel energy storage system based on vector control technique which forms the first step towards this macro objective.
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