首页> 外文会议>56th International Astronautical Congress 2005 vol.2 >GEOSYNCHRONOUS SYNTHETIC APERTURE RADAR: CONCEPT DESIGN, PROPERTIES AND POSSIBLE APPLICATIONS
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GEOSYNCHRONOUS SYNTHETIC APERTURE RADAR: CONCEPT DESIGN, PROPERTIES AND POSSIBLE APPLICATIONS

机译:地球同步合成孔径雷达:概念设计,特性和可能的​​应用

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Geosynchronous orbits have the unique characteristic that their orbital period is equal to one sidereal day. This configuration does provide coverage on a regional scale. This is a potential advantage in terms of system usage as the demand for some satellite services is concentrated in certain regions of the globe. This paper investigates both active and passive configurations, highlighting their different features and advantages. A synthetic aperture radar (SAR) simulator has been developed to study the influence of integration time on SAR processing in both Low Earth Orbit (LEO) and geosynchronous SAR (GeoSAR) configurations. Different scenarios with targets affected by noise sources with various correlation lengths have been simulated in order to test the system response. Simulations show that in a geosynchronous SAR the long integration time averages out non-stationary signals within the resolution cell converting their influence to background clutter. Indeed, noise rejection is effective even if noise amplitude is one order of magnitude larger than the signal itself. The features that have been demonstrated via numerical simulations could be exploited in new SAR applications. SAR interferometry can benefit of the increased temporal correlation as all the high frequency components of interferometric phase noise have been previously filtered out. Fine temporal sampling is a feature that might be exploited for disaster management and might lead to major advances in the understanding of rapidly evolving phenomena on the ground surface. Future applications can be foreseen also in soil moisture retrieval and other related agricultural applications.
机译:地球同步轨道具有独特的特征,即它们的轨道周期等于一个恒星日。此配置确实提供了区域范围的覆盖范围。就系统使用而言,这是一个潜在的优势,因为对某些卫星服务的需求集中在全球的某些地区。本文研究了主动和被动配置,重点介绍了它们的不同特征和优势。已经开发了合成孔径雷达(SAR)模拟器,以研究低地球轨道(LEO)和地球同步SAR(GeoSAR)配置中积分时间对SAR处理的影响。为了测试系统响应,已经模拟了目标受受各种相关长度的噪声源影响的不同场景。仿真表明,在地球同步SAR中,较长的积分时间可以使分辨率单元内的非平稳信号平均化,从而将其影响转化为背景杂波。实际上,即使噪声幅度比信号本身大一个数量级,噪声抑制也是有效的。通过数值模拟证明的功能可以在新的SAR应用中使用。 SAR干涉测量法可以提高时间相关性,因为干涉式相位噪声的所有高频成分都已事先滤除。精细的时间采样是可以用于灾难管理的功能,并且可以在理解地面上迅速发展的现象方面取得重大进展。还可以预见在土壤水分回收和其他相关农业应用中的未来应用。

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