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An FPGA-based system for the measurement of frequency noise and resolution of QCM sensors

机译:基于FPGA的系统,用于测量QCM传感器的频率噪声和分辨率

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The use of Quartz Crystal Oscillators (QCM) as high accuracy microbalance sensors is limited by the frequency noise present in the circuit. This work deals with the design and implementation of an FPGA-based system for the real-time measurement of the frequency noise and resolution of QCM sensors. This reconfigurable system integrates the frequency measurement and the mass resolution computation in a single FPGA chip. Parallel processing, pipeline stages and prediction techniques are combined in order to accelerate the computations maintaining a low hardware complexity. By this way, a reconfigurable and low cost QCM sensor system working as a standalone measurement platform with communication capabilities is obtained. The implemented system was validated with a Xilinx Virtex-4 FPGA and a QCM sensor operating in damping media for electrochemical applications.
机译:石英晶体振荡器(QCM)作为高精度微量天平传感器的使用受到电路中存在的频率噪声的限制。这项工作涉及基于FPGA的系统的设计和实现,该系统用于实时测量QCM传感器的频率噪声和分辨率。这个可重新配置的系统将频率测量和质量分辨率计算集成在单个FPGA芯片中。并行处理,流水线阶段和预测技术相结合,以加快计算速度,并保持较低的硬件复杂性。通过这种方式,获得了一种可重构且低成本的QCM传感器系统,该系统用作具有通信功能的独立测量平台。实施的系统已通过Xilinx Virtex-4 FPGA和在阻尼介质中运行的QCM传感器进行了验证,以用于电化学应用。

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