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Solar-Powered Microwave Transmission for Remote Sensing and Communications

机译:用于遥感和通信的太阳能微波传输

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摘要

A solar-powered microwave transmission system is proposed for remote sensing and communications purposes. We present in this paper a proof of concept to operate solar-powered microwave transmission and an investigation of microwave interactions with atmospheric plasmas. In this conceptualized system, a solar thermophotovoltaic system is considered to produce direct current electricity, which is then used to power solid-state microwave transmitters. The results from these simulations provide insights on how to produce an economically and environmentally conscientious energy source, which can be used for remote-sensing and communication applications. However, it is expected that microwaves may interact with ionospheric plasmas, primarily in the $E$-region to induce large-scale fluctuations in plasma density and geomagnetic fields with threshold wave electric-field intensities of $sim$1 V/m. After we determine the instability thresholds, we can use them to set up the safe operation range of solar-powered microwave transmission.
机译:为了遥感和通信的目的,提出了一种太阳能微波传输系统。我们在本文中介绍了操作太阳能微波传输的概念验证以及对微波与大气等离子体相互作用的研究。在这个概念化的系统中,太阳能热光伏系统被认为产生直流电,然后将其用于为固态微波发射器供电。这些模拟的结果提供了有关如何生产经济,环保的能源的见解,该能源可用于遥感和通信应用。但是,可以预料的是,微波可能会与电离层等离子体相互作用,主要是在$ E $区域,引起等离子体密度和地磁场的大规模波动,其阈值电场强度为$ sim $ 1 V / m。确定不稳定性阈值后,可以使用它们来设置太阳能微波传输的安全操作范围。

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