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mm-Wave SAR demonstrator as a test bed for advanced solutions in microwave imaging

机译:毫米波SAR演示器作为微波成像高级解决方案的测试台

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摘要

The capability of imaging and surveying ground areas with airborne and spaceborne sensors has a very high priority in many applications, both in the civilian and military sectors. One of the most essential uses of this capability is in disaster monitoring, where up-to-date, reliable images and data are vital for the undertaking and coordinating of rescue actions. Sensors in space are very accurate but typically have a long revisit time, and thus their use for continuous monitoring is limited. Manned aircrafts equipped with optical, infrared, and synthetic aperture radar (SAR) are costly, and their operation in poor weather conditions (like heavy storms) are limited due to concerns over pilot safety. Unmanned aerial vehicles (UAV) are ideal candidates for the safe and cheap surveillance and imaging of such areas. They can provide continuous monitoring at very low cost, be deployed very quickly, and pose no risk of the loss of life in the case of a platform malfunction caused by heavy weather conditions, technical problems, or human error. The disadvantage of small, unmanned platforms is that they only offer limited space for payloads and have a low electrical power supply. This lays down the conditions for the design of an airborne sensor for small- and medium-sized UAVs. The cheapest solution for UAV surveillance is the use of visual light cameras. Optical cameras are cheap, light, and require a low supply of power, but their usage is limited to the daytime and good weather conditions. The presence of heavy rain, clouds, fog, or smoke can signifcantly reduce their imaging distance, sometimes down to just a few meters. Far better results can be obtained using much longer electromagnetic waves. The use of far infrared (e.g. in the 10 μ;m region) can provide thermal information and can be used for the detection of people in both day and night conditions, but it does not provide satisfactory images of land and infrastructures. The use of millimeter and centimete- microwaves with active illumination, combined with SAR technology, can provide high resolution images in all weather conditions, day and night, at a distance of several kilometers.
机译:在民用和军事领域的许多应用中,使用机载和星载传感器对地面进行成像和勘测的能力具有很高的优先级。该功能最重要的用途之一是在灾难监视中,其中最新,可靠的图像和数据对于进行和协调救援行动至关重要。太空中的传感器非常精确,但通常需要较长的重新访问时间,因此限制了它们用于连续监视的用途。配备有光学,红外和合成孔径雷达(SAR)的载人飞机价格昂贵,并且由于担心飞行员的安全,其在恶劣天气条件下(如暴风雨)的运行受到限制。无人机(UAV)是对此类区域进行安全廉价的监视和成像的理想选择。它们可以以非常低的成本提供连续的监视,可以非常快速地部署,并且在由于恶劣的天气情况,技术问题或人为错误导致的平台故障的情况下,不会造成生命损失的风险。小型无人驾驶平台的缺点是,它们仅提供有限的有效空间,并且电源低。这为中小型无人机的机载传感器的设计奠定了条件。无人机监视最便宜的解决方案是使用可见光摄像头。光学相机价格便宜,重量轻且需要的电源很少,但其使用仅限于白天和良好的天气条件。大雨,云雾或烟雾的存在会显着缩短其成像距离,有时甚至会缩短到几米。使用更长的电磁波可以获得更好的结果。远红外(例如在10μm区域)的使用可以提供热信息,并且可以用于白天和黑夜情况下的人员检测,但是不能提供令人满意的土地和基础设施图像。将毫米波和厘米微波主动照明与SAR技术结合使用,可以在白天和黑夜的所有天气条件下提供几公里外的高分辨率图像。

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