多式模态偏振技术的未来展望,其在世界范围内的快速扩展,以及其大量的多样化应用

W. Boerner
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引用次数: 0

摘要

随着全球人口的持续增长,我们的自然资源受到前所未有的压力,对从中间层到岩石圈的陆地覆盖进行全球昼夜监测变得更加迫切。微波雷达传感器非常适合于空间成像,因为它们几乎与天气无关,而且微波在大气中传播时几乎不会受到云、风暴、雨、雾、气溶胶和雾霾的影响。全球的湿度、雾霾和气溶胶正在以相当快的速度增加,而就在20年前,所有这些只覆盖了全球的48%,今天这些增加到62%左右,在未来20年内,由于不可逆转的原因,可能会超过80%。因此,来自空间的光学遥感,特别是在热带和亚热带植被带的光学遥感已经而且将会变得越来越无效,微波遥感技术现在必须与数字通信技术携手大力和最迅速地发展,因为微波遥感技术在业务上可以更迅速地提供,特别是用于减灾援助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Future perspectives of advancing multimodal polsar technology, its rapid worldwide expansion, and its plethora of diversified applications
With the un-abating global population increase our natural resources are stressed as never before, and the global day/night monitoring of the terrestrial covers from the mesosphere to the litho-sphere becomes all the more urgent. Microwave radar sensors are ideally suited for space imaging because those are almost weather independent, and microwaves propagate through the atmosphere with little deteriorating effects due to clouds, storms, rain, fog aerosol and haze. Globally humidity, haze and aerosols next to cloudiness are increasing at a rather rapid pace, whereas only 20 years ago all of those covered only 48% of the globe, today those have increased to about 62% and within another 20 years may exceed 80% for irreversible reasons. Thus, optical remote sensing from space especially in the tropical and sub-tropical vegetated belts is already and will become ever more ineffective, and microwave remote sensing technology must now be advanced strongly and most rapidly hand in hand with digital communications technology because operationally it is more rapidly available especially for disaster mitigation assistance.
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