Experimental comparison of energy management strategies for a hybrid electric bus in a test-bench

A. Sierra, V. Herrera, A. González-Garrido, A. Milo, H. Gaztañaga, H. Camblong
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引用次数: 9

Abstract

Energy management in hybrid and electric vehicles is a key factor to improve the operational performance and meet the efficiency objectives defined in the transport sector. Thus, optimized energy management strategies (EMS), before being integrated in a real system, need to be validated in a scaled test-bench platform in order to identify the possible deviations from the expected simulation-based profiles, thus, saving time during the implementation in the real application. An economical and flexible way of validating these strategies is the Hardware-in-the-loop (HIL) simulation. In this framework, this work aims to compare the experimental results of two optimized (simulation-based) EMSs applied on a hybrid electric urban bus (HEB) in terms of real-time operational performance. Both EMSs handle the proper power split behavior of the vehicle demand between a genset (internal combustion engine connected to an electric generator) and a hybrid energy storage system (combining Li-ion batteries with supercapacitors). The hardware in the test-bench consist of a scaled electrical DC grid of an HEB. This hardware platform is combined with software models allowing to emulate the real behavior of the genset, battery, supercapacitor, traction and auxiliary loads.
混合动力客车试验台能量管理策略的实验比较
混合动力和电动汽车的能源管理是提高运行性能和满足运输部门效率目标的关键因素。因此,在将优化的能源管理策略(EMS)集成到实际系统中之前,需要在一个规模化的测试台平台上进行验证,以确定与预期的基于仿真的配置文件的可能偏差,从而节省在实际应用中实现的时间。验证这些策略的一种经济而灵活的方法是硬件在环(HIL)仿真。在此框架下,本工作旨在比较两种优化(基于仿真的)ems在混合动力城市公交车(HEB)上的实时运行性能的实验结果。这两种ems系统都能在发电机组(连接到发电机的内燃机)和混合储能系统(将锂离子电池和超级电容器结合起来)之间处理车辆需求的适当功率分配行为。试验台的硬件由HEB的比例直流电网组成。该硬件平台与软件模型相结合,可以模拟发电机组、电池、超级电容器、牵引和辅助负载的真实行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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