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Parameter Selection in Cross-Correlation-Based Velocimetry Using Circular Electrostatic Sensors

机译:圆形静电传感器基于互相关测速的参数选择

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Cross-correlation methods combined with electrostatic sensing technology offer a promising solution to the online continuous measurement of velocity of particulate solids in pneumatic pipelines. To obtain accurate velocity, the selections of sampling frequency and integral time are critical. The selection of sampling frequency is strongly influenced by the frequency characteristic of the signal. By using finite-element modeling (FEM), the frequency characteristic of the electrostatic sensor was analyzed. To illustrate the particle distribution and the velocity profiles' influence on the frequency characteristic of the electrostatic signal, an electrostatic velocimetry calibration apparatus was built. Based on the foregoing analysis and taking the measurement error of the transit time and the real application requirement into account, the principles of the selection of sampling frequency and integral time were described.
机译:互相关方法与静电感应技术相结合,为在线连续测量气动管道中固体颗粒的速度提供了有希望的解决方案。为了获得准确的速度,选择采样频率和积分时间至关重要。采样频率的选择在很大程度上受到信号频率特性的影响。通过使用有限元建模(FEM),分析了静电传感器的频率特性。为了说明粒子分布和速度分布对静电信号频率特性的影响,建立了静电测速仪校准装置。在以上分析的基础上,考虑了渡越时间的测量误差和实际应用需求,阐述了采样频率和积分时间的选择原则。

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