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A Zero-Crossing Detection System Based on FPGA to Measure the Angular Vibrations of Rotating Shafts

机译:基于FPGA的过零检测系统,用于测量旋转轴的角振动

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摘要

In this paper, the efficient implementation of a reliable measurement device to measure the angular velocity vibrations of rotating shafts is discussed. The solution is particularly suitable to be fit in measurement embedded systems equipped with field-programmable gate arrays (FPGAs). The proposed measurement method is analyzed from a theoretical point of view, focusing the study on the frequency response of the technique. On the basis of the theoretical results, a reliable and low-complexity design of the measurement device has been proposed. In the adopted solution, the high clock rates of FPGAs are exploited to increase the accuracy of the zero-crossing times estimation, for a given A/D acquisition frequency, using an upsampling approach. The experimental results confirm the validity of the technique. The upsampling method allows an increase of the measurement accuracy and an improvement of about 10 dB for the output signal-to-noise ratio over a wide range of vibration frequencies.
机译:在本文中,讨论了测量旋转轴角速度振动的可靠测量设备的有效实现。该解决方案特别适合安装在具有现场可编程门阵列(FPGA)的测量嵌入式系统中。从理论角度分析了提出的测量方法,将研究重点放在该技术的频率响应上。根据理论结果,提出了一种可靠且低复杂度的测量设备设计。在采用的解决方案中,利用上采样方法,利用FPGA的高时钟速率来提高给定A / D采集频率下过零时间估计的精度。实验结果证实了该技术的有效性。上采样方法可以提高测量精度,并在较宽的振动频率范围内将输出信噪比提高约10 dB。

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