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PWM Switching Frequency Effects on Eddy Current Sensors for Magnetically Suspended Flywheel Systems

机译:PWM开关频率对磁悬浮飞轮系统涡流传感器的影响

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摘要

A flywheel magnetic bearing (MB) pulse width modulated power amplifier (PWM) configuration is selected to minimize noise generated by the PWMs in the flywheel position sensor system. Two types of noise are addressed: beat frequency noise caused by variations in PWM switching frequencies, and demodulation noise caused by demodulation of high order harmonics of the switching voltage into the MB control band. Beat frequency noise is eliminated by synchronizing the PWM switch frequencies, and demodulation noise is minimized by selection of a switching frequency which does not have harmonics at the carrier frequency of the sensor. The recommended MB PWM system has five synchronized PWMs switching at a non-integer harmonic of the sensor carrier.
机译:选择飞轮磁性轴承(MB)脉宽调制功率放大器(PWM)配置,以最小化飞轮位置传感器系统中PWM产生的噪声。解决了两种类型的噪声:由PWM开关频率的变化引起的拍频噪声,以及由将开关电压的高次谐波解调为MB控制频带而引起的解调噪声。通过同步PWM开关频率,消除了拍频噪声,并且通过选择在传感器的载波频率上不具有谐波的开关频率,将解调噪声最小化。推荐的MB PWM系统具有五个同步PWM,它们以传感器载体的非整数谐波进行开关。

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