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Parametric design and regenerative braking control of a parallel hydraulic hybrid vehicle

机译:平行液压混合动力车辆的参数化设计和再生制动控制

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摘要

Hydraulic hybrid technologies improve the fuel economy of city-use medium duty vehicles by recovering braking energy and reusing it for driving, most notably vehicle launching. In this paper, a parametric design of hydraulic driving system for a medium duty truck is conducted based on its power demand in typical urban driving cycles. The braking control strategy is designed considering both the safety regulations and braking energy recovery rate. The proportional relationship of hydraulic pump/motor output torque and its working pressure is considered when designing the braking control strategy. The influence of the high pressure accumulator minimum working pressure and the corresponding gas volume at the minimum pressure on the braking energy recovery rate is analyzed. The simulation results show that the proposed hydraulic driving system and braking control strategy helps greatly increase the braking energy recovery rate. Besides, different vehicle mass and load distributions are investigated to analyze the regenerative braking effect on various loading conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:液压混合动力技术通过恢复制动能量并重新运用驾驶,最易用的车辆发射来改善城市使用中型车辆的燃油经济性。本文基于其在典型城市驾驶循环中的功率需求进行了用于中型卡车的液压驱动系统的参数化设计。设计制动控制策略考虑安全规定和制动能量回收率。在设计制动控制策略时,考虑了液压泵/电动机输出扭矩及其工作压力的比例关系。分析了高压蓄能器最小工作压力的影响和相应的气体体积在最小压力下对制动能量回收率的最小压力。仿真结果表明,所提出的液压驱动系统和制动控制策略有助于大大提高制动能量回收率。此外,研究了不同的车辆质量和负载分布,以分析对各种负载条件的再生制动效果。 (c)2019年elestvier有限公司保留所有权利。

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