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Forced oscillation to reduce zero flow error and thermal drift for non-reciprocal operating liquid ultrasonic flow meters

机译:强制振荡可减少不可逆操作的液体超声波流量计的零流量误差和热漂移

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摘要

A new method using forced oscillation excitation for transit-time difference (TTD) measurement is proposed to improve the accuracy and stability in ultrasonic flow metering under non-reciprocal operating conditions. Forced oscillation guarantees the frequencies of the received signals in both directions constant and known, thus the TTD can be measured as the phase difference. Choosing the driving frequency slightly off the resonance of the transducers can considerably decrease the long-term drift of the TTD results caused by temperature variations, and minimize the zero flow error. In the simulations and experiments, the proposed method showed good performance in the non-reciprocal metering system, the zero flow error and the thermal drift on the TTD measurement results were reduced.
机译:提出了一种使用强制振荡激励进行渡越时间差(TTD)测量的新方法,以提高在非互操作条件下超声流量计量的准确性和稳定性。强制振荡可确保两个方向上接收信号的频率恒定且已知,因此可以将TTD测量为相位差。选择稍微偏离换能器共振的驱动频率可以显着降低温度变化引起的TTD结果的长期漂移,并使零流量误差最小。在仿真和实验中,所提出的方法在单向计量系统中表现出良好的性能,零流量误差和热漂移对TTD测量结果的影响都得到了降低。

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