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基于自适应门限判决的水下多径测距算法研究

An underwater multipath ranging algorithm based on adaptive threshold decision

  • 摘要: 针对浅水及受限水域中边界反射引起的信号多径叠加造成首达路径识别困难的问题,本文提出一种基于自适应门限判决的水下多径测距算法。该算法采用双曲调频(Hyperbolic Frequency Modulation,HFM)信号作为测距激励,利用重叠相加法快速傅里叶变换完成连续接收信号的相关计算,构建动态背景噪声门限与峰值比例门限联合判决模型,并结合连续局部峰值约束实现首达路径检测。试验结果表明:与基本匹配互相关方法相比,本算法在水池多径环境下的平均绝对误差降低约85.2%;在南海800 m级浅海试验中,平均绝对误差为3.41 m,平均绝对误差为3.41 m,平均相对误差为0.41%。结果表明,本文算法能够有效降低强反射路径引起的距离误判概率,为复杂多径环境下的水声测距提供了技术支撑。

     

    Abstract: To address the difficulty in identifying the first-arrival path—caused by signal multipath superposition due to boundary reflections in shallow and confined waters—this paper proposes an underwater multipath ranging algorithm based on adaptive threshold decision. The algorithm employs a hyperbolic frequency-modulated (HFM) signal as the ranging excitation, uses overlap-add FFT to compute the correlation of continuously received signals, constructs a joint decision model that integrates a dynamic background-noise threshold and a peak-ratio threshold, and incorporates a continuous local-peak constraint to detect the first-arrival path. Experimental results show that, compared with the basic matched cross-correlation method, the proposed algorithm reduces the mean absolute error by approximately 85.2% in a multipath test pool environment. In a shallow-water experiment conducted in the South China Sea at a range of approximately 800 m, the mean absolute error was 3.41 m and the mean relative error was 0.41%. These results indicate that the proposed algorithm effectively reduces the probability of range estimation errors induced by strong reflection paths, thereby providing technical support for underwater acoustic ranging in complex multipath environments.

     

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