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A Novel Speed Compensation Method for ISAR Imaging with Low SNR

机译:低信噪比的ISAR成像速度补偿新方法

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摘要

In this paper, two novel speed compensation algorithms for ISAR imaging under a low signal-to-noise ratio (SNR) condition have been proposed, which are based on the cubic phase function (CPF) and the integrated cubic phase function (ICPF), respectively. These two algorithms can estimate the speed of the target from the wideband radar echo directly, which breaks the limitation of speed measuring in a radar system. With the utilization of non-coherent accumulation, the ICPF-based speed compensation algorithm is robust to noise and can meet the requirement of speed compensation for ISAR imaging under a low SNR condition. Moreover, a fast searching implementation strategy, which consists of coarse search and precise search, has been introduced to decrease the computational burden of speed compensation based on CPF and ICPF. Experimental results based on radar data validate the effectiveness of the proposed algorithms.
机译:本文基于立方相位函数(CPF)和积分立方相位函数(ICPF),提出了两种在低信噪比(SNR)条件下用于ISAR成像的新型速度补偿算法,分别。这两种算法可以直接从宽带雷达回波中估计目标的速度,这打破了雷达系统中速度测量的限制。通过利用非相干累积,基于ICPF的速度补偿算法对噪声具有鲁棒性,可以满足低SNR条件下ISAR成像的速度补偿要求。此外,提出了一种由粗略搜索和精确搜索组成的快速搜索实现策略,以减少基于CPF和ICPF的速度补偿的计算负担。基于雷达数据的实验结果验证了所提算法的有效性。

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