Brydegaard Mikkel
Lund Laser Center, Department of Physics, Lund University, Sölvegatan 14, SE 223 62, Lund, Sweden; Centre for Animal Movement Research, Department of Biology, Lund University, Sölvegatan 37, SE 223 62, Lund, Sweden; Hyspex, Norsk Elektro Optikk A/S, Prost Stabels Vei 22, N-2019, Skedsmokorset, Norway.
PLoS One. 2015 Aug 21;10(8):e0135231. doi: 10.1371/journal.pone.0135231. eCollection 2015.
In recent years, the field of remote sensing of birds and insects in the atmosphere (the aerial fauna) has advanced considerably, and modern electro-optic methods now allow the assessment of the abundance and fluxes of pests and beneficials on a landscape scale. These techniques have the potential to significantly increase our understanding of, and ability to quantify and manage, the ecological environment. This paper presents a concept whereby laser radar observations of atmospheric fauna can be parameterized and table values for absolute cross sections can be catalogued to allow for the study of focal species such as disease vectors and pests. Wing-beat oscillations are parameterized with a discrete set of harmonics and the spherical scatter function is parameterized by a reduced set of symmetrical spherical harmonics. A first order spherical model for insect scatter is presented and supported experimentally, showing angular dependence of wing beat harmonic content. The presented method promises to give insights into the flight heading directions of species in the atmosphere and has the potential to shed light onto the km-range spread of pests and disease vectors.
近年来,大气中鸟类和昆虫(空中动物群)的遥感领域取得了长足进展,现代电光方法如今能够在景观尺度上评估害虫和益虫的数量及通量。这些技术有潜力显著增进我们对生态环境的理解,以及量化和管理生态环境的能力。本文提出了一个概念,通过该概念可对大气动物群的激光雷达观测进行参数化处理,并编目绝对截面的表格值,以便研究诸如病媒和害虫等重点物种。翅膀拍动振荡通过一组离散谐波进行参数化,球形散射函数由一组简化的对称球谐函数进行参数化。提出了一种昆虫散射的一阶球形模型,并通过实验得到了支持,该模型显示了翅膀拍动谐波含量的角度依赖性。所提出的方法有望深入了解大气中物种的飞行方向,并有可能揭示害虫和病媒在千米范围内的传播情况。