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利用W波段相干雷达对昆虫翅膀拍动频率进行微多普勒测量。

Micro-Doppler measurement of insect wing-beat frequencies with W-band coherent radar.

作者信息

Wang Rui, Hu Cheng, Fu Xiaowei, Long Teng, Zeng Tao

机构信息

School of Information and Electronics, Beijing Institute of Technology, Beijing, 100081, China.

Department of Electronic Engineering, Tsinghua University, Beijing, 100084, China.

出版信息

Sci Rep. 2017 May 3;7(1):1396. doi: 10.1038/s41598-017-01616-4.

Abstract

The wingbeat frequency of insect migrant is regarded potentially valuable for species identification and has long drawn widespread attention in radar entomology. Principally, the radar echo signal can be used to extract wingbeat information, because both the signal amplitude and phase could be modulated by wing-beating. With respect to existing entomological radars, signal amplitude modulation has been used for wingbeat frequency measurement of large insects for many years, but the wingbeat frequency measurement of small insects remains a challenge. In our research, W-band and S-band coherent radars are used to measure the insect wingbeat frequency. The results show that the wingbeat-induced amplitude modulation of W-band radar is more intense than that of the S-band radar and the W-band radar could measure the wingbeat frequency of smaller insects. In addition, it is validated for the first time that the signal phase could also be used to measure the insect wingbeat frequency based on micro-Doppler effect. However, whether the wingbeat frequency measurement is based on the amplitude or phase modulation, it is found that the W-band coherent radar has better performance on both the measurement precision and the measurable minimum size of the insect.

摘要

昆虫迁飞时的振翅频率被认为在物种识别方面具有潜在价值,长期以来一直受到雷达昆虫学领域的广泛关注。原则上,雷达回波信号可用于提取振翅信息,因为信号的幅度和相位都会受到振翅的调制。对于现有的昆虫学雷达,信号幅度调制多年来一直用于测量大型昆虫的振翅频率,但测量小型昆虫的振翅频率仍然是一个挑战。在我们的研究中,使用W波段和S波段相干雷达来测量昆虫的振翅频率。结果表明,W波段雷达因振翅引起的幅度调制比S波段雷达更强烈,且W波段雷达能够测量更小昆虫的振翅频率。此外,首次验证了基于微多普勒效应,信号相位也可用于测量昆虫的振翅频率。然而,无论振翅频率测量是基于幅度调制还是相位调制,都发现W波段相干雷达在测量精度和可测量的昆虫最小尺寸方面都具有更好的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcbc/5431090/cd0f550fc5a9/41598_2017_1616_Fig1_HTML.jpg

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