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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Real time time-frequency active sonar processing: a SIMD approach
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Real time time-frequency active sonar processing: a SIMD approach

机译:实时时频有源声纳处理:SIMD方法

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摘要

A paradigm for massively parallel processing of matched filters, replica correlators, ambiguity functions, and time-frequency distributions is presented, using a SIMD (single instruction stream, multiple data stream) programming methodology. It is shown that active sonar detection algorithms, as implemented by frequency domain processing, can be a natural match to a SIMD methodology, meeting the extensive computational needs of enhanced active sonar systems. The decomposition process is presented, and examples are given of the output of the computer program CMASP (Connection Machine Ambiguity Surface Processor). CMASP can provide real-time simultaneous multiple-beam, Doppler, and waveform replica correlations. Synthetic data are processed, and the corresponding CMASP outputs are displayed as three-dimensional ambiguity surfaces on networked graphic workstations. Because of efficient problem decomposition, other time-frequency processing can be exploited. Specifically, real-time instantaneous-like time-frequency distributions have been realized in which the data set is presented and processed as time-varying spectral representations.
机译:提出了一种使用SIMD(单指令流,多数据流)编程方法对匹配滤波器,副本相关器,歧义函数和时频分布进行大规模并行处理的范例。结果表明,通过频域处理实现的有源声纳检测算法可以自然地与SIMD方法匹配,从而满足增强型有源声纳系统的广泛计算需求。给出了分解过程,并给出了计算机程序CMASP(连接机器歧义表面处理器)的输出示例。 CMASP可以提供实时的同时多光束,多普勒和波形副本相关性。处理合成数据,并将相应的CMASP输出显示为联网图形工作站上的三维模糊表面。由于有效的问题分解,可以利用其他时频处理。具体而言,已经实现了实时的类似瞬时的时频分布,其中将数据集作为时变频谱表示形式进行呈现和处理。

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