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作 者:李永飞 郭瑞明 赵航芳[1,3,4,5] Li Yong-Fei;Guo Rui-Ming;Zhao Hang-Fang(College of Information Science and Electronic Engineering,Zhejiang University,Hangzhou 310027,China;Department of Electronic Engineering,The Chinese University of Hong Kong,Hong Kong 999077,China;Laboratory of Ocean Observation-Imaging Testbed of Zhejiang Province,Zhoushan 316021,China;Engineering Research Center of Oceanic Sensing Technology and Equipment,Ministry of Education,Zhoushan 316021,China;State Key Laboratory of Fluid Power and Mechatronic Systems,Zhejiang University,Hangzhou 310007,China)
机构地区:[1]浙江大学信息与电子工程学院,杭州310027 [2]香港中文大学电子工程系,中国香港999077 [3]浙江省海洋观测-试验区重点实验室,舟山316021 [4]海洋感知技术与装备教育部工程研究中心,舟山316021 [5]流体动力与机电系统国家重点实验室,杭州310007
出 处:《物理学报》2023年第7期235-245,共11页Acta Physica Sinica
基 金:国家自然科学基金(批准号:62071429);国家重点研发计划(批准号:2016YFC1400100)资助的课题.
摘 要:针对浅海内波引起的干涉条纹“扭曲”问题,利用耦合模理论,提出了一种声场干涉条纹的稀疏重建方法.该方法主要分为两个步骤:(1)将干涉条纹近似为几组二维正弦的和,并用向量有限新息率方法重建;(2)根据耦合模理论,未耦合模对的二维频率不随内波位置变化,而耦合模对的频率随内波位置变化.因此,二维频率可以分为两部分:未耦合模对包含了波导的信息,可用于背景环境规则干涉条纹的重建和波导不变量的估计;耦合模对包含了内波的位置信息,可用于内波的追踪.仿真结果表明,本文方法在内波环境下能够提供有效的干涉条纹重建、波导不变量估计和内波的追踪.To reduce the distortion of acoustic interference fringes caused by internal waves in shallow water,a sparse reconstruction method of acoustic interference fringes is proposed in this paper according to the coupled mode theory.The proposed method consists of two steps:(1)The interference fringes are approximated to the sum of several two-dimension sinusoids,which are sparsely reconstructed by the vector finite rate of innovation method.(2)According to coupled mode theory,two-dimension frequencies related to uncoupled mode pairs do not vary with the location of internal waves.However,two-dimension frequencies related to coupled mode pairs vary with the location of internal waves.So these frequencies are classified into two parts.The uncoupled mode pairs are used to recover the regular interference fringes and estimate the waveguide invariant in the background environment.The coupled mode pairs are used to track the locations of internal waves.The simulation results show that the proposed method can effectively provide interference fringe reconstruction,waveguide invariant estimation,and internal wave tracking in the internal wave environment.
分 类 号:P733.2[天文地球—物理海洋学]
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