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Micro-hybrid vehicle supplied by a multi-source storage system (battery and supercapacitors): Optimal power management

机译:由多源存储系统(电池和超级电容器)提供的微混合动力车辆:最佳电源管理

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Supercapacitors have a very high specific power that enable them to supply electric or hybrid vehicles during the transition phases needed for the starting-up, the acceleration and the energy recovery. In this paper, this component (supercapacitor) is used like power buffer with battery to supply the starter-alternator of micro-hybrid vehicle. Firstly, the system is modelled and simulated using Matlab-Simulink software. In our case, the supercapacitor is used to reduce the engine consumption and increase the life-time of the embedded battery [1][2][3]. The starter-alternator characteristics and the Torque developed by the ICE during the start-up phase are identified through static and dynamic tests. Strategy is applied to manage the electric starter-alternator) and the thermal motors (ICE). Another strategy is used to dispatch the electrical power between the two storage systems (battery and supercapacitor). This last strategy allows the reducing of the power stresses on the battery and increases the lifetime of this last one [4] [5]. To validate the system effectiveness, a test bench is developed in our laboratory [6] [7]. In our case the ICE and the load behaviours are emulated using an electric machine. An 1103 dSpace platform is used to control the two Converters (Shopper connected to the battery and the inverter) connected to the starter-alternator and the inverter connected to the synchronous machine which emulate the ICE and the vehicle dynamics.
机译:超级电容器具有很高的比功率,使它们能够在启动,加速和能量回收所需的过渡阶段中为电动或混合动力汽车供电。在本文中,该组件(超级电容器)像带电池的动力缓冲器一样,用于为微型混合动力汽车的起动-交流发电机供电。首先,使用Matlab-Simulink软件对系统进行建模和仿真。在我们的案例中,超级电容器用于减少发动机消耗并增加嵌入式电池的使用寿命[1] [2] [3]。通过静态和动态测试,可以识别启动器-交流发电机的特性和ICE在启动阶段产生的扭矩。策略用于管理电启动器-交流发电机和热电机(ICE)。另一种策略是在两个存储系统(电池和超级电容器)之间分配电能。后一种策略可以减少电池的电源压力,并延长后一种电池的寿命[4] [5]。为了验证系统的有效性,在我们的实验室中开发了一个测试台[6] [7]。在我们的案例中,ICE和负载行为是使用电机模拟的。 1103 dSpace平台用于控制连接到起动交流发电机的两个转换器(连接到电池和逆变器的Shopper)和连接到同步电机的逆变器(仿真ICE和车辆动力学)。

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