首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Optical Scale Polarimetric Device for Nanotube Forest Measurement: An Opportunity to Anticipate Bistatic Polarimetric SAR Images of Tree Trunk Forests at P-Band
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Optical Scale Polarimetric Device for Nanotube Forest Measurement: An Opportunity to Anticipate Bistatic Polarimetric SAR Images of Tree Trunk Forests at P-Band

机译:用于纳米管森林测量的光学标度极化设备:预测P带树干森林双基地极化SAR图像的机会

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This paper investigates a new polarimetric device that produces reduced scale measurements for bistatic radar. The optical scale device is proposed to overcome the lack of real bistatic and full polarimetric radar acquisitions for forest of trunks. It is based on the scale invariant rule that is deduced from the Maxwell equations. From this principle, the electromagnetic (EM) response is kept at the reduced scale if the illumination wavelength is scaled and if the permittivity remains the same. This last condition needs the use of a carefully chosen material at optical scale. Nanoscale scenes are composed of carbon nanotubes (CNTs). They present several advantages: their arrangement is similar to the structure of a forest of trunks, their shape, and density can be controlled, it is possible to create very large scenes composed of thousands of elements, and finally their permittivity at optical wavelength is about the same order of magnitude than the permittivity of the tree trunks at radar wavelength. They are measured under the view of a microscope objective with a 633-nm wavelength laser playing the role of the EM source. The device images at once the forest polarimetric response, for a given transmitter location, and for the entire set of angular positions of reception. Two samples of forests with different densities are measured. They are analyzed using the Cloude and Pottier decomposition and the Lu and Chipman decomposition. The produced results are unprecedented on forest-like environment and it would be very helpful for the radar community.
机译:本文研究了一种新的极化设备,该设备可为双基地雷达产生比例缩小的测量结果。提出光学标尺设备以克服对于树干森林的实际双基地和全极化雷达采集的缺乏。它基于从麦克斯韦方程式推导出的尺度不变规则。根据该原理,如果缩放照明波长并保持介电常数不变,则电磁(EM)响应将保持减小的比例。最后一种情况需要使用光学尺度上精心选择的材料。纳米级场景由碳纳米管(CNT)组成。它们具有几个优点:它们的排列类似于树干的森林,它们的形状和密度可以控制,可以创建由数千个元素组成的非常大的场景,最后它们在光波长下的介电常数约为与树干在雷达波长下的介电常数相同的数量级。在具有EM光源作用的633 nm波长激光的显微镜物镜的观察下测量它们。对于给定的发射器位置以及接收的整个角度位置,设备立即对森林极化响应成像。测量了两个具有不同密度的森林样本。使用Cloude和Pottier分解以及Lu和Chipman分解对它们进行了分析。在类似森林的环境下产生的结果是空前的,这对雷达界将是非常有帮助的。

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