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Towards smart-pixel-based implementation of wideband active sonar echolocation system for multi-target detection

机译:迈向基于智能像素的宽带有源声纳回声定位系统的多目标检测

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摘要

A modified adaptive noise cancelling (ANC) hybrid algorithm incorporating techniques of optimal wideband FIR filtering operation and the trimmed mean (TM)-levelization, a dynamic level-based thresholding process, is described in this paper for wideband active sonar echolocation system. This novel technique performs effective suppression of unwanted part of the training data thus localizing potentials of target returns. Furthermore, due to a massive parallelism in the system although the current electronic processing units such as GPU (graphic processing unit) and GPGPU (general-purpose GPU) work well, we propose the concept of smart-pixel (SP) as a possible solution towards hardware implementation of the above algorithm. In this architecture of parallelism, an array of optical devices is integrated onto one chip and then utilized as a computational cell to provide an alternative solution towards parallel implementation of the ANC hybrid algorithm.
机译:本文针对宽带有源声纳回声定位系统,介绍了一种结合了最佳宽带FIR滤波操作和微调均值(TM)级化技术的改进的自适应噪声消除(ANC)混合算法,该技术是基于动态级的阈值处理过程。这项新颖的技术可以有效地抑制训练数据中不需要的部分,从而定位目标收益的潜力。此外,由于系统中的大规模并行性,尽管当前的电子处理单元(例如GPU(图形处理单元)和GPGPU(通用GPU))运行良好,但我们提出了智能像素(SP)的概念作为可能的解决方案针对上述算法的硬件实现。在这种并行性体系结构中,将光学设备的阵列集成到一个芯片上,然后用作计算单元,为并行实现ANC混合算法提供替代解决方案。

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