最小曲率噪声压制方法在海洋重力数据处理中的应用

    Application of the minimum curvature noise suppression in marine gravity data processing

    • 摘要: 海洋重力数据的噪声压制是获取重力场有效信号和提升重力场数据精度的关键环节之一,目前常用噪声压制方法存在时间延迟、动态噪声残留等问题。本文将最小曲率方法用于海洋船载重力测量数据的噪声压制,通过实测重力数据的测试分析,验证了该方法在海洋重力数据噪声压制中的适用性和有效性。通过测试不同迭代次数和不同迭代步长参数分析了该方法的噪声压制效果,并在此基础上提出了最小曲率分步噪声压制方法,在提高噪声压制效果的同时改善了数据端点的畸变现象。最小曲率分步噪声压制方法稳定性好、无时间延迟、参数选取灵活,其与FIR低通滤波结果的外符合精度最佳可达到±0.131×10−5 m/s2,具有良好的推广应用价值。

       

      Abstract: Noise suppression of marine gravity data is one of the key steps to obtain real gravity field signals and improve the accuracy of gravity field data. At present, commonly used noise suppression methods suffer from problems such as time delay and residual dynamic noise. Therefore, we applied the minimum curvature method to the noise suppression of marine shipborne gravity measurement data. First, the measured gravity data were tested and analyzed. Secondly, the applicability and effectiveness of this method were verified. Thirdly, the noise suppression performance of the method was evaluated by testing different iteration numbers and iteration step sizes. Finally, a stepwise minimum curvature noise suppression method was proposed. The new method not only improved noise suppression but also mitigated the endpoint distortion phenomenon, and showed advantages of having stable computational results, no time delay, and flexible selection of calculation parameters. The external coincidence accuracy between the results of the method and those of FIR low-pass filtering reached up to ±0.131 × 10−5 m/s2, demonstrating strong potential for application and promotion in future.

       

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