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Performance analysis of a contactless combined auxiliary brake for hybrid electric vehicle

机译:混合动力汽车非接触式组合式辅助制动器的性能分析

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Regenerative braking used in hybrid electric vehicle can recover energy while braking, which can improve the driving distance of electric vehicle. As commercial vehicles trend to large tonnage, the power of vehicle retarding is greater than the power of vehicle driving. It is hard to ensure that braking stability of the automotive only relies on regenerative braking, which influences traffic safety. This research combines regenerative brake and eddy current retarder. It can extend retarding time by sharing the brake torque of eddy current retarder using the regenerative brake. Meanwhile the regenerative brake supplies electric power for eddy current retarder and it will improve the energy efficiency of system. This paper aimed at target type vehicle that is 8 ton new energy commercial vehicles, and established the regenerative brake model and eddy current retarder model, and then combined vehicle running conditions for the system simulation. The simulations revealed that combined auxiliary brake has steady performance under each working condition and meet torque demands of auxiliary brake as well as obviously extend retarding time of traditional eddy current retarder. This system achieves the closed loop of energy and is both compact-sized and energy-saving.
机译:混合动力电动汽车中使用的再生制动可以在制动时回收能量,从而可以提高电动汽车的行驶距离。随着商用车趋向大吨位,车辆减速的动力大于车辆行驶的动力。难以确保汽车的制动稳定性仅取决于再生制动,这会影响交通安全。这项研究结合了再生制动和涡流缓速器。通过使用再生制动器共享涡流减速器的制动转矩,可以延长减速时间。同时,再生制动器为涡流缓速器提供电力,将提高系统的能效。针对8吨新能源商用车目标型汽车,建立了再生制动模型和涡流缓速器模型,并结合车辆的运行条件进行了系统仿真。仿真结果表明,组合式辅助制动器在各种工况下性能稳定,能够满足辅助制动器的扭矩要求,并且明显延长了传统涡流缓速器的缓速时间。该系统实现了能量的闭环,既紧凑又节能。

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