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Power electronics and control of two-voltage-level flywheel based all-electric driveline

机译:电力电子技术和基于两电压级飞轮的全电传动系统的控制

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A novel all-electric driveline comprising a flywheel with a permanent magnet doubly wound synchronous motor/generator is presented. The flywheel machine with a double set of windings divides the system in two voltage levels: a low voltage/power level, which is connected to the main energy storage source (e.g. battery) and a high voltage/power level, which is connected to the traction machine. A DC/DC + DC/AC converter makes the connection between the battery and the flywheel low voltage windings. An AC/DC/AC converter connects the flywheel high voltage windings to the wheel machine. A complete simulation of the system has been made in Simulink. Vector control based speed regulators have been designed and successfully simulated. DC link voltage control has been achieved by using synchronous rectification. Power estimation has been used during regenerative braking in order to charge the flywheel with the power generated from the vehicle speed reduction. Simulations have verified the functionality of the proposed system.
机译:提出了一种新颖的全电动传动系统,该传动系统包括飞轮,该飞轮具有永磁体双绕同步电动机/发电机。具有双绕组的飞轮机将系统分为两个电压等级:一个低电压/功率等级,它连接到主要的能量存储源(例如电池),一个高电压/功率等级,它连接到主要的能量存储源。牵引机。 DC / DC + DC / AC转换器在电池和飞轮低压绕组之间建立连接。 AC / DC / AC转换器将飞轮高压绕组连接到轮机。在Simulink中已对系统进行了完整的仿真。基于矢量控制的调速器已经过设计并成功进行了仿真。通过使用同步整流可以实现直流母线电压控制。在再生制动期间已经使用了功率估计,以便向飞轮充电由车辆减速产生的功率。仿真已经验证了所提出系统的功能。

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