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用于超声共振风速风向传感器的共振态温度补偿方法

Resonance-State Temperature Compensation Method for Ultrasonic Resonance Wind Speed and Direction Sensors.

作者信息

Zeng Xiangbao, Yuan Yupeng, Jiang Zhuoya, Wang Lu, Long Shuai, Yu Hua

机构信息

College of Optoelectronic Engineering, Chongqing University, Chongqing 400040, China.

The 26th Institute of China Electronics Technology Group Corporation, Chongqing 400060, China.

出版信息

Sensors (Basel). 2024 Nov 12;24(22):7217. doi: 10.3390/s24227217.

Abstract

To achieve high-precision wind speed and direction measurements in complex environments, a resonance-state temperature compensation method is proposed based on an ultrasonic resonance principle. This method effectively addresses the issue of sound velocity compensation errors caused by the temperature difference between the internal and external environments when using an internal temperature sensor for temperature compensation. By utilizing an adaptive resonance-state tracking model, the resonance frequency shift issues under varying conditions such as altitude, pressure, and temperature are mitigated. This approach ensures that the resonance frequency is strongly correlated with temperature, enabling temperature compensation through resonance frequency alone, without the need for a temperature sensor. The experimental results indicate that the resonance frequency variation rate with temperature for the resonance-state temperature-compensated ultrasonic resonance wind speed and direction sensor is approximately 0.08 kHz/°C. The wind speed measurement accuracy is ±0.3 m/s (≤15 m/s)/±2.3% (15 m/s50 m/s), which is superior to the measurement accuracy of traditional ultrasonic wind speed and direction sensors (±0.5 m/s (≤15 m/s)/±4% (15 m/s50 m/s)). The consistency of wind speed measurement is ≤±0.3%, representing an improvement of approximately 3% compared to ultrasonic resonance wind speed and direction sensors without resonance-state temperature compensation.

摘要

为了在复杂环境中实现高精度的风速和风向测量,基于超声共振原理提出了一种共振态温度补偿方法。该方法有效解决了使用内部温度传感器进行温度补偿时,因内外环境温差导致的声速补偿误差问题。通过采用自适应共振态跟踪模型,减轻了诸如海拔、压力和温度等变化条件下的共振频率偏移问题。这种方法确保共振频率与温度高度相关,仅通过共振频率即可实现温度补偿,无需温度传感器。实验结果表明,共振态温度补偿型超声共振风速风向传感器的共振频率随温度的变化率约为0.08kHz/°C。风速测量精度为±0.3m/s(≤15m/s)/±2.3%(15m/s50m/s),优于传统超声风速风向传感器的测量精度(±0.5m/s(≤15m/s)/±4%(15m/s50m/s))。风速测量的一致性≤±0.3%,与无共振态温度补偿的超声共振风速风向传感器相比,提高了约3%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/596b/11598491/c3ce6d678cbb/sensors-24-07217-g001.jpg

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