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Design and Experimental Comparison of Energy Management Strategies for Hybrid Electric Buses Based on Test-Bench Simulation

机译:基于试验台仿真的混合动力客车能源管理策略设计与实验比较

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摘要

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 (EMSs), before being integrated in a real system, need to be experimentally validated in test-bench platforms in order to identify the possible deviations from the expected simulation-based performance while minimizing the implementation time and field-test on the real application. An economical and flexible mean of validating these strategies is the hardware-in-the-loop simulation. Therefore, this work aims to present the design approach and comparison, by means of experimental tests, of two optimized (simulation-based) EMSs proposed for a hybrid electric bus (HEB) focusing on the real-time operational performance. Both EMSs handle the proper power split behavior of the vehicle demand among a genset (internal combustion engine + electric generator) and a hybrid energy storage system (combining Li-ion batteries with supercapacitors). The experimental platform consists of a scaled test bench emulating the electrical dc grid of a HEB. This test bench, combined with software models to control the power electronic devices, allows us to emulate the real behavior of the genset, battery, supercapacitor, traction, and auxiliary loads.
机译:混合动力和电动汽车的能源管理是改善运营绩效并达到交通运输部门定义的效率目标的关键因素。因此,在整合到实际系统中之前,需要在测试平台上对经过优化的能源管理策略(EMS)进行实验验证,以便识别与预期的基于仿真的性能之间可能存在的偏差,同时将实施时间和现场操作的时间减至最少在实际应用程序上进行测试。验证这些策略的一种经济而灵活的方法是在环仿真。因此,这项工作旨在通过实验测试来介绍针对混合动力公交车(HEB)提出的两种优化的(基于仿真的)EMS的设计方法和比较,重点是实时运行性能。两种EMS均可在发电机组(内燃机+发电机)和混合储能系统(将锂离子电池与超级电容器结合在一起)之间处理车辆需求的正确功率分配行为。实验平台包括一个模拟HEB直流电网的扩展测试平台。该测试台结合软件模型来控制电力电子设备,使我们能够模拟发电机组,电池,超级电容器,牵引力和辅助负载的真实行为。

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