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利用散射光的翅膀拍动调制对蜜蜂进行距离分辨光学检测以定位地雷。

Range-resolved optical detection of honeybees by use of wing-beat modulation of scattered light for locating land mines.

作者信息

Hoffman David S, Nehrir Amin R, Repasky Kevin S, Shaw Joseph A, Carlsten John L

机构信息

Electrical and ComputerEngineering, Cobleigh Hall Room 610, Montana State University, Bozeman, Montana 59717, USA.

出版信息

Appl Opt. 2007 May 20;46(15):3007-12. doi: 10.1364/ao.46.003007.

Abstract

An imaging lidar instrument with the capability of measuring the frequency response of a backscattered return signal up to 3.6 kHz is demonstrated. The instrument uses a commercial microchip frequency-doubled pulsed Nd:YAG laser with a 7.2 kHz pulse repetition rate, a pulse duration of less than 1 ns, and a pulse energy of greater than 10 microJ. A 15.2 cm commercial telescope is used to collect the backscattered signal, and a photomultiplier tube is used to monitor the scattered light. This instrument is designed for range- and angle-resolved optical detection of honeybees for explosives and land-mine detection. The instrument is capable of distinguishing between the scattered light from honeybees and other sources through the frequency content of the return signal caused by the wing-beat modulation of the backscattered light. Detection of honeybees near a bee hive and spatial mapping of honeybee densities near feeders are demonstrated.

摘要

展示了一种成像激光雷达仪器,它能够测量高达3.6千赫兹的后向散射回波信号的频率响应。该仪器使用商业微芯片倍频脉冲Nd:YAG激光器,其脉冲重复率为7.2千赫兹,脉冲持续时间小于1纳秒,脉冲能量大于10微焦。使用一个15.2厘米的商业望远镜收集后向散射信号,并使用光电倍增管监测散射光。该仪器设计用于对蜜蜂进行距离和角度分辨的光学检测,以用于爆炸物和地雷探测。该仪器能够通过后向散射光的翅膀拍动调制所引起的回波信号的频率成分,区分来自蜜蜂和其他来源的散射光。展示了在蜂巢附近对蜜蜂的检测以及喂食器附近蜜蜂密度的空间映射。

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