用随机气枪信号反演北极双通道声速剖面,仅需单个水听器即可实现快速低成本反演。
Inversion of Arctic dual-channel sound speed profile based on random airgun signal
- 基于折射波导模的色散特性,提出双参数声速剖面表示与结构提取方法。
- 在低频远距离声学实验中验证,反演速度更快、参数更少,可处理水平变化问题。
- 适合海洋声学监测与极地环境研究,部署简单、计算高效,成本低廉。
针对北极加拿大海盆与楚科奇海台独特的双通道声速剖面,基于折射波导模的传播特性,提出一种利用折射波导模反演双通道声速剖面的方法。该方法提出了适配双通道特征的双参数表示方式,并设计了针对折射波导模色散结构特性的提取方法。结合两者,构建出完整的双通道声速剖面反演框架。针对长距离声传播中常见的水平变化问题,进一步提出适用于水平变化双通道声速剖面的反演方法。最后通过北极低频远距离声学传播实验验证了该方法的有效性。相比以往方法,本方法具有参数少、反演快的优点,仅需单个水听器被动接收随机气枪信号即可实现反演,同时解决了声速剖面水平变化的反演难题,具备低成本、易部署、计算速度快等显著优势。
原文摘要 · Abstract (English)
For the unique dual-channel sound speed profiles of the Canadian Basin and the Chukchi Plateau in the Arctic, based on the propagation characteristics of refracted normal modes under dual-channel sound speed profiles, an inversion method using refracted normal modes for dual-channel sound speed profiles is proposed. This method proposes a dual-parameter representation method for dual-channel sound speed profiles, tailored to the characteristics of dual-channel sound speed profiles. A dispersion structure extraction method is proposed for the dispersion structure characteristics of refracted normal modes under dual-channel sound speed profiles. Combining the parameter representation method of sound speed profiles and the dispersion structure extraction method, an inversion method for dual-channel sound speed profiles is proposed. For the common horizontal variation of sound speed profiles in long-distance acoustic propagation, a method for inverting horizontally varying dual-channel sound speed profiles is proposed. Finally, this article verifies the effectiveness of the dual-channel sound speed profile inversion method using the Arctic low-frequency long-range acoustic propagation experiment. Compared with previous sound speed profile inversion methods, the method proposed in this article has the advantages of fewer inversion parameters and faster inversion speed. It can be implemented using only a single hydrophone passively receiving random air gun signals, and it also solves the inversion problem of horizontal variation of sound speed profiles. It has significant advantages such as low cost, easy deployment, and fast computation speed.
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