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Correction of platform motion effects in airborne downward-looking thinned array 3D SAR

机译:机载向下看减薄阵列3D SAR中平台运动效应的校正

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General side-looking SAR can not obtain scattering information of the observed scenes which are constrained by lay over and shading effects [1∼2]. Downward-looking thinned array 3D SAR can be placed on small and mobile platform, allows for acquisition of full 3D microwave images and overcomes the restrictions of shading and lay over effects in side-looking SAR [3]. Downward-looking thinned array 3D SAR can be developed for various applications, such as city planning, environmental monitoring, DEM generation, disaster relief, surveillance and reconnaissance. In this paper, the thinned array we used is composed of multiple transmitting array elements and multiple receiving array elements placed sparsely along cross-track dimension that work on time-divided mode [4]. As there are dozens of array elements in the thinned array, the whole transmitting-and-receiving procedure is quite long that the conventional stop-and-go approximation used in general side-looking SAR can be not valid anymore, therefore the platform motion during time-divided transmitting-and-receiving procedure needs to be taken into account [4∼5]. Analytical development, starting from downward-looking thinned array 3D SAR signal model signal model and take the platform motion during time-divided transmitting-and-receiving procedure, is presented in this paper. The effect of the platform motion during the transmitting-and-receiving procedure, if not compensated for, can become seriously degrading for the 3D SAR image quality. The platform motion correction is then verified by numerical simulations.
机译:一般的侧视SAR无法获得受覆盖和阴影效应约束的观测场景的散射信息[1〜2]。向下看的细化阵列3D SAR可以放置在小型移动平台上,可以获取完整的3D微波图像,并克服了侧视SAR中阴影和覆盖效果的限制[3]。向下看的细阵列3D SAR可以开发用于各种应用,例如城市规划,环境监测,DEM生成、,灾,监视和侦察。在本文中,我们使用的细化阵列由多个发送阵列元素和多个接收阵列元素组成,这些元素沿交叉轨道维度稀疏放置,并以时分模式工作[4]。由于细化阵列中有数十个阵列元素,因此整个发送和接收过程相当长,以至于一般侧视SAR中使用的常规停走逼近法不再有效,因此,平台运动在需要考虑时分的收发过程[4〜5]。本文提出了从向下看的细化阵列3D SAR信号模型信号模型开始,并在时分收发过程中进行平台运动的分析开发。如果不进行补偿,平台运动在发送和接收过程中的影响可能会严重降低3D SAR图像质量。然后,通过数值模拟验证平台运动校正。

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