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Collision prevention of eccentric proof mass applied for micro-gyroscope

机译:微型陀螺仪防偏心质量块的防撞

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An innovative 3-phase AC (Alternative Current) drive circuit for the seismic disc in micro-gyroscopes is designed and verified by computer simulations and experiments. The in-plane dynamic model of the seismic disc with mass eccentricity and air gap against the centre bearing and the mathematic expression of two sinusoidal magnetic fields are developed respectively. In order to prevent the seismic disc from collision with the centre bearing and the EM (Electromagnetic) poles, an anti-collision controller is established by employing two Look-up tables which define the intensity of the applied current to the EM poles. Self-sensing technique is included to measure the real-time offset and angular position deviation (i.e., precession) of the disc by two orthogonal pairs of EM poles, without any additional sensors. The drive circuit under SPWM (Sinusoidal Pulse Width Modulation) operation and the anti-collision strategy are verified by intensive computer simulations via commercial software, OrCAD 9, and experiments.
机译:设计并通过计算机仿真和实验验证了用于微型陀螺仪地震盘的创新型三相交流(交流)驱动电路。分别建立了质量偏心距和气隙对中心轴承的圆盘面内动力学模型,以及两个正弦磁场的​​数学表达式。为了防止地震盘与中心轴承和EM(电磁)极碰撞,通过使用两个查找表来建立防撞控制器,该查找表定义了施加到EM极的电流强度。包括自感测技术,可通过两对正交的EM极来测量光盘的实时偏移和角位置偏差(即进动),而无需任何其他传感器。通过商业软件OrCAD 9进行的大量计算机仿真和实验,验证了SPWM(正弦脉冲宽度调制)操作下的驱动电路和防冲突策略。

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