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Implementation of a Drivetrain Integrated Dc-Dc Converter for 48 V Vehicles

机译:用于48 V车辆的动机集成DC-DC转换器的实施

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The increasingly ambitious CO_2 emission regulations for internal combustion engine (ICE) vehicles prove unachievable without at least some degree of electrification of the drivetrain. Therefore, a 48 V battery solution has been adopted by the automotive industry as a transitional step towards full electrification. The low power components are still fed from the 12 V network. A bidirectional dc-dc converter is placed between these networks. A novel topology and a control algorithm have been recently proposed by the authors to eliminate this dc-dc converter, thereby saving cost, weight and volume. Power transfer between these two networks is achieved by controlling the zero sequence current of the starter-generator, independent of the machine speed and torque. Therefore, dc-dc conversion can also be achieved when the machine is running. A prototype has been produced to explore the functionality and feasibility of this drivetrain. Control challenges, experimental results and performance of this prototype are discussed in this paper.
机译:对于内燃机(ICE)车辆的越来越雄心勃勃的CO_2排放规则证明了不可成熟的,而不会导致的一定程度的动力学。因此,汽车工业采用了48 V电池解决方案作为朝向全电气化的过渡步骤。低功率分量仍然从12V网络馈送。在这些网络之间放置双向DC-DC转换器。作者最近提出了一种新颖的拓扑和控制算法来消除该DC-DC转换器,从而节省成本,重量和体积。通过控制起动发生器的零序电流,独立于机器速度和扭矩来实现这两个网络之间的功率传输。因此,当机器运行时,也可以实现DC-DC转换。已经制作了原型以探索这种动力传动系统的功能和可行性。本文讨论了控制挑战,实验结果和该原型的性能。

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