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Underwater single beam circumferentially scanning detection system using range-gated receiver and adaptive filter

机译:水下单光束周向扫描检测系统使用范围门控接收器和自适应滤波器

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摘要

Underwater target detection and ranging in seawater are of interest in unmanned underwater vehicles. This study presents an underwater detection system that synchronously scans a collimated laser beam and a narrow field of view to circumferentially detect an underwater target. Hybrid methods of range-gated and variable step-size least mean squares (VSS-LMS) adaptive filter are proposed to suppress water backscattering. The range-gated receiver eliminates the backscattering of near-field water. The VSS-LMS filter extracts the target echo in the remaining backscattering and the constant fraction discriminator timing method is used to improve ranging accuracy. The optimal constant fraction is selected by analysing the jitter noise and slope of the target echo. The prototype of the underwater detection system is constructed and tested in coastal seawater, then the effectiveness of backscattering suppression and high-ranging accuracy is verified through experimental results and analysis discussed in this paper.
机译:水下目标检测和海水中的范围对无人水下车辆感兴趣。该研究介绍了一个水下检测系统,其同步扫描准直的激光束和窄视场以沿周向检测水下目标。提出了范围门控和可变步长均值(VSS-LMS)自适应滤波器的混合方法以抑制水反向散射。范围门控接收器消除了近场水的反向散射。 VSS-LMS滤波器在剩余的反向散射中提取目标回波,并且使用恒定的分数鉴别器定时方法来提高测距精度。通过分析目标回声的抖动噪声和斜率来选择最佳恒定分数。水下检测系统的原型在沿海海水中构建和测试,然后通过实验结果和本文讨论的分析验证了反向散射抑制和高距离精度的有效性。

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