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SHOCK AND VIBRATION TESTING OF AN AMB SUPPORTED ENERGY STORAGE FLYWHEEL

机译:AMB支持的能量储存飞轮的冲击和振动测试

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Shock and vibration testing of an Active Magnetic Bearing (AMB) supported energy storage flywheel is presented. The flywheel is under development at the University of Texas -Center for Electromechanics (UT-CEM) for application in a transit bus. The flywheel is gimbal mounted to reduce the gyroscopic forces transmitted to the magnetic bearings during pitching and rolling motions of the bus. The system was placed on a hydraulic terrain simulator and driven through pitch, roll and shock motions equivalent to 150% of maximum expected bus frame values. Although the AMB control approach was originally developed specifically to ensure rotordynamic stability, relative rotor/housing motion was typically less than half of the backup bearing clearance under all tested conditions. Test results are presented and compared to analytical predictions for the 35,000 rpm nominal operating speed. The impact of the AMB control algorithm is discussed relative to the input forcing function.
机译:提出了活性磁轴承(AMB)的冲击和振动测试支持的储能飞轮。飞轮正在开发的德克萨斯大学 - 在运输总线中应用机电学(UT-CEM)。飞轮安装在俯仰和滚动滚动运动中传递到磁轴承的陀螺仪的陀螺力。将系统放置在液压地形模拟器上,并通过音高,滚动和冲击运动驱动,相当于最大预期总线帧值的150%。尽管AMB控制方法最初是专门用于确保旋转动力学稳定性,但相对转子/外壳运动通常小于所有测试条件下的备用轴承间隙的一半。提出了测试结果,并与35,000 rpm标称操作速度的分析预测进行了比较。相对于输入强制函数讨论了AMB控制算法的影响。

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