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Influence of the stop-and-hop assumption on synthetic aperture sonar imagery

机译:停跳假设对合成孔径声纳成像的影响

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Stop-and-hop (S&H) assumption is usually exploited by most multiple receiver synthetic aperture sonar (SAS) imaging geometries, which are the basis of the SAS image formation algorithms. It is a reasonable approximation for the target focusing with a slow sonar platform speed. However, it is not suitable for the systems with a fast speed at far range as this assumption would deteriorate the target focusing performances. This paper firstly analyzes the error of S&H approximation in the 2-D space domain, which shows the necessity of the compensation for this approximation error. Based on back projection (BP) algorithm, simulated data is processed with and without the S&H approximation, respectively. The experiments are carried out with two sonar platform velocities, i. e. slow and fast sonar platform velocities. The processing results further indicate that the S&H error should be compensated when the system is operated with a fast speed.
机译:大多数多接收机合成孔径声纳(SAS)成像几何通常采用停跳(S&H)假设,这是SAS图像形成算法的基础。对于声纳平台速度较慢的目标聚焦而言,这是一个合理的近似值。但是,它不适合在较远的范围内具有较快速度的系统,因为此假设会使目标聚焦性能恶化。本文首先分析了二维空间域中S&H逼近的误差,这说明了对此逼近误差进行补偿的必要性。基于背投影(BP)算法,分别在有和没有S&H近似的情况下处理模拟数据。实验是用两种声纳平台速度进行的,即e。声纳平台速度的快慢。处理结果进一步表明,当系统以高速运行时,应该补偿S&H误差。

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