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Conceptualization and Modeling of a Flywheel-Based Regenerative Braking System for a Commercial Electric Bus

机译:基于飞轮的商用电动公交车的循环再生制动系统的概念化与建模

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The following article illustrates the detailed study of the development of a unique flywheel-based regenerative braking system (f-RBS) for achieving regenerative braking in a commercial electric bus. The f-RBS is designed for installation in the front wheels of the bus. The particular data values for modeling the bus are taken from multiple legitimate sources to illustrate the development strategy of the regenerative braking system. Mechanical components used in this system have either been carefully designed and analyzed for avoiding fatigue failure or their market selection strategies are are explained. The positioning of the entire system is decided using MSC Adams View (R), hence determining a suitable component placement strategy such that the f-RBS components do not interfere with the bus components. The entire system is modeled on MATLAB Simulink (R) with sufficient accuracy to get various results that would infer the performance of the system as a whole. The overall efficiency of the developed system in terms of battery consumption is also computed in this study.
机译:以下文章说明了用于在商业电动总线中实现再生制动的独特飞轮的再生制动系统(F-RBS)的详细研究。 F-RBS设计用于在总线的前轮中安装。用于建模总线的特定数据值从多个合法源中获取,以说明再生制动系统的显影策略。该系统中使用的机械部件经过精心设计和分析,以避免疲劳失败或其市场选择策略。使用MSC ADAMS视图(R)来确定整个系统的定位,因此确定合适的组件放置策略,使得F-RB部件不会干扰总线组件。整个系统以足够的准确度在Matlab Simulink(R)上建模,以获得各种结果,可以推断系统的整体性能。在本研究中也计算了在电池消耗方面的发达系统的整体效率。

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