基于双阵元超声波接收阵列的风矢量测量
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TH765

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国家自然科学基金( 61571462)、吉林省教育厅科学技术项目( JJKH20190590KJ,JJKH20190591KJ)、长春理工大学青年科学基金(XQNJJ- 2017-12)项目资助


Wind vector measurement using dual sensors ultrasonic receiving array
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    摘要:

    针对当前超声波测风仪测量精度不高及抑制噪声干扰能力不强的问题,提出了一种双阵元超声波接收阵列结构及基于 该结构的风矢量测量方法。 首先,设计了一种基于超声波测风原理的风速风向测量系统结构,该结构中包含一个超声波发射阵 元和两个超声波接收阵元;然后,依据该系统结构给出了一种基于相关方法的超声波时延估计算法,根据超声波传输时间与风 矢量之间的关系可直接获得风速风向值。 最后,通过仿真实验对所提方法的可行性与有效性进行了验证,且通过搭建的双阵元 超声波阵列测风系统对所提方法进行了实测数据验证。 实验结果表明:设计的结构简单易实现,算法稳定计算复杂度低,并且 具有较高的噪声抑制能力。 实测环境下风速测量的最大相对误差为 2. 3% 、风向角测量的最大测量误差为-1. 5°,基本达到了 风矢量测量仪的技术要求。

    Abstract:

    To improve the property of measuring accuracy and noise suppression of the current ultrasonic anemoscope, a measurement method of wind vector is proposed, which is based on the structure of ultrasonic receiving array with dual sensors. Firstly, a structure of wind speed and direction measurement system is designed by using the principle of ultrasonic wind measurement. It consists of an ultrasonic transmitting sensor and two ultrasonic receiving sensors. Then, an ultrasonic time delay estimation algorithm based on the correlation detection is proposed. The wind speed and direction can be obtained directly via the relation between ultrasonic transmission time and wind vector. Finally, the feasibility and effectiveness of the proposed method are evaluated by several simulation experiments. The actual measured data are also utilized through establishing a wind measurement system with dual-sensor ultrasonic array. Experimental results show that the proposed method has the advantages of simple structure, stable algorithm, low computational complexity and good noise suppression performance. The practical test experiments show that the maximum relative error of wind speed measurement is 2. 3% , and the maximum error of wind direction angle measurement is -1. 5°. The technical requirements of wind vector measuring instrument can be meet basically.

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单泽彪,刘小松,鲁胜麟,史红伟.基于双阵元超声波接收阵列的风矢量测量[J].仪器仪表学报,2021,(2):228-234

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  • 在线发布日期: 2023-06-28
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