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MPC-based power management strategy to reduce power loss in energy storage system of a HEV

机译:基于MPC的电源管理策略,以降低HEV的能量存储系统中的功率损耗

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The current technological trend in transportation is a move toward cleaner energy and one of the fastest growing technologies in this field is the energy storage system (ESS)-regularly comprised of batteries. This trend can be seen in battery (BEV) and hybrid-electric vehicles (HEV). Efficiency of energy storage system (ESS) operation is absolutely crucial to electrified vehicles as batteries are still only capable of delivering a relatively limited amount of power before reaching a discharged state. Minimizing power losses within the electrical system is central to the challenge of developing electric vehicles or plug-in HEV's (PHEV) which can reach extended ranges and create broad consumer appeal. The purpose of our research will be to optimize the operation of the HV/LV electrical system by reducing power loss through control of the DC/DC buck converter duty ratio. A variable DC/DC voltage output will allow the system to use power more efficiently by online matching of the system's real-time power needs. This will be achieved through simulation by a model predictive control (MPC) based power management strategy. Hardware in the loop testing can then be accomplished.
机译:目前运输的技术趋势是对清洁能量的举动,这场领域的最快增长技术之一是 - 储能系统(ESS) - 一般组成的电池。这种趋势可以在电池(BEV)和混合电动车(HEV)中看到。能量存储系统(ESS)操作的效率对于电气化车辆绝对至关重要,因为电池仍然能够在达到放电状态之前提供相对有限的功率。最小化电气系统中的功率损失是开发电动汽车或插入式HEV(PHEV)的挑战,这可以达到扩展范围并创造广泛的消费者吸引力。我们的研究目的是通过控制DC / DC降压转换器占空比来降低功率损耗来优化HV / LV电气系统的运行。变量DC / DC电压输出将通过在线匹配系统的实时功率需求的在线匹配更有效地使用电源。这将通过模型预测控制(MPC)的电力管理策略来实现这一点。然后可以完成循环测试中的硬件。

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