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A Novel Axial Flux Magnetic-Field-Modulated Dual-Mechanical-Port Dual-Electrical-Port Machine for Hybrid Electric Vehicle

机译:新型混合动力电动汽车轴向磁通磁场调制双机械口双电口机

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Hybrid electrical vehicles (HEVs) are becoming more and more popular nowadays in automobile market due to virtues such as energy saving, environmental friendly and low noise. A simple mechanical structure called "planetary gears" are widely used in HEVs to allow the internal combustion engine (ICE) constantly working at its high efficiency region and save energy by decoupling the speed of the ICE and the wheel-load. Despite its advantages, planetary gears also introduce several problems to the HEV system such as vibration, abrasion and mechanical maintenance fee. In this paper, a novel axial flux magnetic-field-modulated dual-mechanical- port dual-electrical-port (AF-MFM-DMP-DEP) machine is proposed for HEVs applications to replace the whole hybrid-electric powertrain in HEVs. By cooperating a magnetic-field-modulated (MFM) machine and a conventional synchronous PM machine, the proposed machine is capable of decoupling both speed and torque of the ICE and the wheel-load electrically. Without the usage of mechanical speed decoupling devices, the hybrid system mechanical transmission loss could be avoided while the vibration, abrasion and maintenance fee of the system could be reduced. Based on the proposed machine, a HEV system is constructed and its operating modes are illustrated. Firstly, the machine structure, operation principles and operation modes are introduced. After that the torque transmission capability is verified by quasi- 3D FEA. Four models of different gear ratio are established to determine the influence of gear ratio variation and the optimization gear ratio is 2:13.
机译:由于节能,环保和低噪音等优点,混合动力电动汽车(HEV)在当今的汽车市场上越来越受欢迎。混合动力汽车中广泛使用一种称为“行星齿轮”的简单机械结构,以使内燃机(ICE)始终在其高效区域工作,并通过将ICE的速度和车轮负载脱钩来节省能源。尽管有其优点,但行星齿轮也给混合动力汽车系统带来了一些问题,例如振动,磨损和机械维护费用。本文提出了一种新型的轴向磁通磁场调制双机械端口双电端口(AF-MFM-DMP-DEP)机器,用于混合动力汽车,以取代混合动力汽车中的整个混合动力系统。通过将磁场调制(MFM)机器和常规同步PM机器配合使用,所提出的机器能够将ICE的速度和扭矩以及车轮负载进行电气解耦。如果不使用机械速度解耦装置,则可以避免混合动力系统的机械传动损失,同时可以减少系统的振动,磨损和维护费用。基于所提出的机器,构建了混合动力汽车系统,并说明了其工作模式。首先介绍了机器的结构,工作原理和工作方式。之后,通过准3D FEA验证了扭矩传递能力。建立了四个不同齿轮比的模型来确定齿轮比变化的影响,最佳齿轮比为2:13。

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