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Control of a Composite Braking System for Range-Extended Heavy Commercial Vehicles

机译:控制范围扩展重型商用车辆复合制动系统

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With the development of heavy-duty commercial vehicles towards the direction of low-carbon and high-speed, the brake systems' load is also increasing. A composite braking system combining mechanical friction braking, motor regenerative braking, and auxiliary braking (eddy current retarder) was established, and a fuzzy logic control strategy was proposed to determine the proportion of each braking subsystem, taking into account the characteristics of subsystems and constraints such as battery SOC (state of charge). Simulations were carried out on the slope road and flat road respectively. The results demonstrate that the proposed control strategy can effectively improve the overall energy efficiency and braking safety of range-extended heavy commercial vehicles.
机译:随着重型商用车辆的发展朝向低碳和高速方向,制动系统的负荷也在增加。建立了组合机械摩擦制动,电动机再生制动和辅助制动(涡流延迟器)的复合制动系统,并提出了一种模糊逻辑控制策略来确定每个制动子系统的比例,考虑到子系统和约束的特征如电池SOC(充电状态)。模拟分别在坡路和平面道上进行。结果表明,所提出的控制策略可以有效地提高范围扩展重型商用车的整体能效和制动安全性。

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