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Design and analysis of a centripetal force type-magnetic bear-ing for a flywheel battery system.

机译:飞轮电池系统向心力型磁力轴承的设计与分析。

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Flywheel battery, as a new energy storage device in recent years, it has the characteristics of high current charge -discharge capability, very short charging -discharging time, good environment adaptation, high energy conversion efficiency and long cycle life[1-2]. Flywheel battery technology is relatively mature after years of development, including the applications in electric vehicle systems. For a vehicular magnetically fl ywheel battery, the gyroscopic effect can be caused by the different driving conditions and the road conditions of the vehicle. Therefore, the fl ywheel battery has very strict requirements for bearings. The most popular magnetic bearings today are the magnetic bearings with cylinder structures, which have many industrial applications [3-4]. However, an inevitable unbalanced magnetic pull parallel he pull can be considered as a disturbance force) to the axis of the rotor will be produced when the rotor is deflected. The disturbance force and the resultant disturbance torque to the rotor will accelerate the gyroscopic effect and it is very bad for the stability control of the fl ywheel battery. In this paper, a novel centripetal force type magnetic bearing (CFT-MB) for a fl ywheel battery system is proposed.
机译:飞轮电池作为近年来的一种新型储能设备,具有高电流充放电能力,极短的充放电时间,良好的环境适应性,高的能量转换效率和长的循环寿命等特点[1-2]。飞轮电池技术经过多年的发展,包括在电动汽车系统中的应用,已经相对成熟。对于车辆磁性飞轮电池,陀螺效应可以由车辆的不同驾驶条件和道路条件引起。因此,飞轮电池对轴承有非常严格的要求。当今最流行的磁性轴承是具有圆柱结构的磁性轴承,在工业上有许多应用[3-4]。然而,当转子偏转时,将产生不可避免的平行于转子轴线的不平衡的磁性拉力(其拉力被认为是对转子轴线的干扰力)。扰动力和由此产生的对转子的扰动转矩将加速陀螺效应,这对于飞轮电池的稳定性控制是非常不利的。本文提出了一种用于飞轮电池系统的新型向心力型电磁轴承(CFT-MB)。

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