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Designing a High-Precision AC Current Source to Measure the nm-Scale Displacements in Mechanical Systems

机译:设计高精度交流电流源以测量机械系统中的NM级位移

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Measuring the dynamics of a continuously moving target, at the nanoscale level, such as of a bearing raceway or any other vibrating element, requires a contactless measurement. A mission that can be easily carried out by a capacitive probe. The current flowing through the sensor has to remain constant regardless of the changes in the sensors’ output impedance. In this manner, the voltage across the probe is proportional to the distance between the probe and the target. However, the high impedance of the probe cannot be disregarded in comparison to the output impedance of the Howland source. To overcome this problem, we designed a voltage-controlled AC current source (VCCS). The new design consists of implementing two nested loops and uses two cascaded controllers, a fast but imprecise internal control loop tuned by a slow but precise outer control loop in order to obtain a high-precision AC output current. The performance of this device has been compared with the improved quad op-amp current source (IQOA). The results obtained during the numerical validation confirm the relevance of this device.
机译:测量连续移动目标的动态,如轴承滚道或任何其他振动元件的纳米级水平需要非接触式测量。可以通过电容探针轻松执行的任务。无论传感器输出阻抗的变化如何,流过传感器的电流都必须保持恒定。以这种方式,探针两端的电压与探针和目标之间的距离成比例。然而,与榴弹兰来源的产出阻抗相比,探针的高阻抗不能忽略。为了克服这个问题,我们设计了一个电压控制的交流电流源(VCCs)。新设计包括实现两个嵌套环,并使用两个级联控制器,快速但不精确的内部控制回路,慢速但精确的外部控制回路调整,以获得高精度的交流输出电流。将该设备的性能与改进的Quad OP-AMP电流源(IQOA)进行了比较。在数值验证期间获得的结果证实了该设备的相关性。

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