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A Bistatic SAR for Earth Observation

机译:用于地球观测的双站SAR

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摘要

Bistatic radar is an active microwave sensor operating with separated transmitting and receiving antennae. This paper deals with a spaceborne mission of a bistatic synthetic aperture radar based on a small satellite flying in formation with ENVISAT along parallel orbits, and equipped with a receiving only microwave system, which catches the ASAR echoes. The proposed system does not require any modification of existing ENVISAT design and operation; in fact it is assumed that ENVISAT is non-cooperative. After an introduction to the original scientific activities and applications achievable using bistatic data as further input thanks to the capability of a multi-angle observation, the paper presents numerical results of a simulation aimed at characterising some radiometric and geometric aspects of bistatic imagery. In particular, the effects of a frequency offset, caused by differences in local oscillators, and of variable bistatic geometry, caused by spacecraft separation along the orbit, are put in evidence.
机译:双基地雷达是一种有源微波传感器,带有分开的发射和接收天线。本文涉及双基地合成孔径雷达的星载任务,该雷达基于一个小型卫星,该小型卫星与ENVISAT一起沿着平行轨道飞行,并装有仅接收微波系统,可捕获ASAR回波。拟议的系统不需要对现有的ENVISAT设计和操作进行任何修改;实际上,假设ENVISAT是不合作的。在介绍了利用多角度观测的能力将双基地数据作为进一步的输入可以实现的原始科学活动和应用之后,本文介绍了旨在表征双基地影像的某些辐射和几何特征的模拟数值结果。特别是,由本地振荡器的差异引起的频率偏移的影响,以及由航天器沿轨道分离造成的可变双基地几何结构的影响得到了证明。

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