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A New Range Doppler Algorithm for Processing Squint Multi-Receiver SAS Data

机译:一种用于处理斜视多接收器SAS数据的新系列多普勒算法

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Squint multi-receiver synthetic aperture sonar (SAS) data is more challenging to process than its common side-looking counterpart because its geometry is more complicated. While traditional multi-receiver algorithms handle general side-looking cases, they do not work well for squint cases. No multi-receiver algorithm for handling squint multi-aperture SAS data has been reported. This paper focuses on the imaging algorithm of the squint multi-receiver SAS. Firstly, the "non-stop-go-stop" signal model is established for the squint multi-receiver, and the fourth-order Taylor expansion is used to approximate the accurate instantaneous slant range. Secondly, the system transfer function in the 2-D frequency domain is given. Thirdly, based on the 2-D frequency domain, a new range Doppler algorithm is applied to the squint multi-receiver SAS. Finally, simulations show that the algorithm can handle high squint multi-receiver data.
机译:Squint多接收器合成孔径声纳(SAS)数据比其共同的侧面视图更具挑战性,因为其几何形状更复杂。虽然传统的多接收器算法处理一般的侧面壳体,但它们对斜视案件不起作用。没有报告用于处理Quint Mult-孔径SAS数据的多接收器算法。本文重点介绍了Quint多接收器SA的成像算法。首先,为斜视多接收器建立“非停止停止”信号模型,并且第四阶泰勒膨胀用于近似准确的瞬时倾斜范围。其次,给出了2-D频域中的系统传递函数。第三,基于2-D频域,将新的范围多普勒算法应用于斜视多接收器SAS。最后,仿真表明该算法可以处理高斜视多接收器数据。

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