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Development of an energy efficient driving strategy for a fuel cell vehicle over a fixed distance and average velocity

机译:在固定距离和平均速度下开发燃料电池车辆的节能驾驶策略

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This paper examines the energy efficiency of a hydrogen fuel cell vehicle operating at different power settings. The goal is to develop a driving strategy to maximize energy efficiency for a fixed distance and average velocity. The test vehicle is equipped with a proton exchange membrane (PEM) fuel cell system that provides electric power to a brushless DC motor. This vehicle was designed to compete in the Shell Eco Marathon, an international competition in which the winners are the teams that go the furthest using the least amount of energy. A computer model that simulated the motor and vehicle dynamics was used to predict the output power demanded from the fuel cell. An actual test was then conducted to verify, compare and analyze the performance of the motor for various speed ranges. The result showed how the efficiency varied for different vehicle accelerations. This data can then be used as a basis to operate the vehicle with optimal efficiency.
机译:本文研究了在不同电源设置下运行的氢气电池车辆的能效。目标是开发一种驾驶策略,以最大限度地提高固定距离和平均速度的能量效率。测试车辆配备有质子交换膜(PEM)燃料电池系统,其为无刷直流电动机提供电力。这款车辆旨在竞争壳牌生态马拉松,这是一个国际竞争,其中赢家是使用最少量能量最远的球队。模拟电动机和车辆动力学的计算机模型用于预测燃料电池所需的输出功率。然后进行实际测试以验证,比较和分析电动机的性能以进行各种速度范围。结果表明,针对不同车辆加速度的效率如何变化。然后可以将该数据用作以最佳效率操作车辆的基础。

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