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一种用于评估电压骤降条件下毫米波衰减的简单模型。

A Simple Model for Assessing Millimeter-Wave Attenuation in Brownout Conditions.

作者信息

Zilberman Arkadi, Kopeika Natan

机构信息

School of Electrical and Computer Engineering, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.

Gaza Envelope R&D Center, P.O. Box 100, Netivot 8771002, Israel.

出版信息

Sensors (Basel). 2022 Nov 17;22(22):8889. doi: 10.3390/s22228889.

Abstract

Flying helicopters in adverse environmental conditions, such as low heights in arid regions, can be dangerous, especially during landing and take-off, since during hovering, the rotors produce a dust cloud of particles. This phenomenon is known as the "brownout" condition. Unlike visible and infrared systems, the radar devices in the microwave or millimeter wave region offer the capability of sufficient transmission through atmospheric obscurants, such as fog, smoke, sand/dust storms, and brownout. In this work, we present a theoretical evaluation of mm-wave (85-100 GHz) attenuation/scattering and power transfer in brownout conditions. The model includes attenuation/scattering prediction and radiant flux, or power collected by the receiver. We are considering the case of sand grain clouds created by helicopter rotor airflow during landing in arid areas. The evaluated scenarios are brownout environments over ranges up to 50 m. The predicted values from the mathematical model are compared with findings in the field and the literature. A simple model for mm-wave power transfer estimation shows satisfactory agreement with the measured values.

摘要

在不利环境条件下飞行直升机,比如在干旱地区低空飞行,可能会很危险,尤其是在着陆和起飞期间,因为在悬停时,旋翼会产生颗粒尘埃云。这种现象被称为“尘卷风”状况。与可见光和红外系统不同,微波或毫米波区域的雷达设备具备透过大气遮蔽物(如雾、烟、沙尘暴和尘卷风)进行充分传输的能力。在这项工作中,我们对毫米波(85 - 100吉赫兹)在尘卷风条件下的衰减/散射和功率传输进行了理论评估。该模型包括衰减/散射预测以及辐射通量,即接收器收集的功率。我们考虑的是直升机在干旱地区着陆时旋翼气流产生沙粒云的情况。评估的场景是范围达50米的尘卷风环境。将数学模型的预测值与实地及文献中的研究结果进行了比较。一个用于毫米波功率传输估计的简单模型与测量值显示出令人满意的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d87d/9692578/70d9319e35ce/sensors-22-08889-g001.jpg

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