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Equivalent Consumption Minimization Strategy for Mild Hybrid Electric Vehicles with a Belt Driven Motor

机译:具有皮带驱动马达的温和混合动力电动汽车的等效消​​耗最小化策略

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It will be a challenge to satisfy CO_2 regulations in 2020 with conventional powertrains based on a gasoline or diesel engine. In order to reduce CO_2-emission until upcoming 2020, it has been suggested that new powertrain systems should be developed. One of them is mild hybrid electric vehicle (MHEV) system with a belt driven motor (BDM). MHEV system with a BDM has an advantage of costs in contrast to full hybrid systems, because fuel efficiency of the powertrain is able to be increased by simply substituting the belt driven motor for an alternator. In this following paper, the simulator is developed for testing MHEV system which is consist of a belt driven motor(BDM). This simulator is used for evaluating fuel efficiency of mild hybrid system that has equivalent consumption minimization strategy (ECMS) algorithm for BDM type. The ECMS is an efficient strategy to manage electric and fuel energy between the battery and the internal combustion engine. It needs less time to calibrate than that of map-based algorithm such as distributing the motor and the engine power by battery SOC, gear ratio and driver demand torque. It will be proposed that a suitable ECMS for MHEV with a belt driven motor. In addition, fuel economy of MHEV applied with the ECMS will be compared with the results of map-based algorithm.
机译:通过基于汽油或柴油发动机满足2020年的CO_2法规,这将是一项挑战。为了减少CO_2-发射,直到即将到来的2020,则建议应该开发新动力系统。其中一个是温和的混合动力汽车(MHEV)系统,带有带动电动机(BDM)。具有BDM的MHEV系统具有与全混合系统对比的成本的优点,因为通过简单地代替带动电动机进行交流发电机,能够增加动力系的燃料效率。在下文中,开发了模拟器,用于测试MHEV系统,该系统由带动电动机(BDM)组成。该模拟器用于评估温和混合系统的燃料效率,其具有BDM类型的等效消耗最小化策略(ECMS)算法。 ECMS是一种有效的策略来管理电池和内燃机之间的电气和燃料能量。它需要更少的时间来校准,而不是基于地图的算法,例如通过电池SOC,齿轮比和驱动器需求扭矩分配电机和发动机功率。建议将适用于MHEV的合适的ECM,带有带动电动机。此外,将与ECMS应用的MHEV的燃料经济性与基于地图的算法的结果进行比较。

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