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Regenerative braking system design for an energy recuperative eddy current retarder

机译:能量回旋涡流缓速器的再生制动系统设计

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This paper presents an energy recuperative eddy current retarder (ERECR), which offers a solution to the energy consumption and overheating issues of the conventional eddy current retarders (ECR). The ERECR obtains three main systems, namely Eddy Current Braking (ECB) system, Regenerative Braking (RGB) system, and Electrical Control System. The RGB system, which could recover the kinetic energy from downhill and the braking condition, is mainly concerned in this research. By proposing a novel designed generator integrated with the dual-plate eddy current retarder, the RGB system could generate electric energy to fulfill the energy demand of ECB system while offering respective braking torque. First, the energy flows for the vehicle braking, and degrading was analyzed and the energy recovery potential under these conditions was calculated. Subsequently, the RGB system model was based on the fundamentals of the permanent magnet synchronous generator, and the thought of embed permanent magnet in the rotor axle of the ERECR was proposed as well. After analyzing the power generating characteristics, energy recovery and braking performance of the RGB system, an optimization strategy of maximizing the regenerated energy for the RGB system was present. The result shows that, the novel designed RGB system could significantly overcome the overheating issues of the conventional eddy current retarder while harvesting the kinetic energy from degrading and braking with a maximum value of 3kW.
机译:本文提出了一种能量换热涡流缓速器(ERECR),它为常规涡流缓速器(ECR)的能耗和过热问题提供了解决方案。 ERECR获得三个主要系统,即涡流制动(ECB)系统,再生制动(RGB)系统和电气控制系统。可以从下坡和制动条件中恢复动能的RGB系统是本研究的重点。通过提出一种与双板涡流缓速器集成的新颖设计的发电机,RGB系统可以产生电能以满足ECB系统的能量需求,同时提供各自的制动扭矩。首先,对车辆制动的能量流进行分析,并进行退化计算,并计算出这些条件下的能量回收潜力。随后,基于永磁同步发电机的基本原理建立了RGB系统模型,并提出了将永磁体嵌入ERECR转子轴中的想法。在分析了RGB系统的发电特性,能量回收和制动性能之后,提出了一种最大化RGB系统再生能量的优化策略。结果表明,新颖设计的RGB系统可以极大地克服传统涡流缓速器的过热问题,同时可以通过分解和制动获得最大3kW的动能。

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