基于模态干扰的奇异点定位模式分析

IF 0.9 4区 计算机科学 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS
Jian Li Jian Li, Ze-Xi Wang Jian Li, Rong Li Ze-Xi Wang, Guang-Jie Han Rong Li, Jun-Hao Li Guang-Jie Han
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引用次数: 0

摘要

考虑到对奇异点分布的规律性研究不足,对不同影响因素下的奇异点进行了分析。利用正交模理论推导了理想浅波导远场中由干涉模产生的相邻模群奇点的位置。通过仿真验证了奇异点的存在,比较了奇异点与声场的分布。此外,还得出了场干涉结构周期内奇点的数量和分布与阶数(AMG的低阶)和相邻阶数(AMG的两阶之差)有关。上下两点的排列随阶数的增加而增加2,分布在PISF的两端。菱形四点的排列随相邻阶数的增加而增加1,并在PISF两端交替增加。同时,震源深度与奇异点位置之间存在周期性关系。</p>& lt; p>,, & lt; / p>
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Singular Points Location Pattern Analysis based on Modes Interference

Given the lack of research on the regularity of distribution of singular points, the singular points under different influence factors are analyzed. The location of singular points for adjacent modes group (AMG) generated by the interference modes is derived using normal modes theory in the far field of the ideal shallow waveguide. The singular points are verified by simulation, which compares the distribution of the acoustic field and singular points. Moreover, it is concluded that the number and distribution of singular points in the period of the interference structure of the field (PISF) has a relationship with order (lower order of AMG) and adjacent order (difference between two orders of AMG). The arrangement of upper-lower-two-points increases by 2 with each increase of order and is distributed at both ends of PISF. The arrangement of rhombic-four-points increases by 1 with each increase of adjacent order and increases alternately at both ends of PISF. Meanwhile, there is a periodic relationship between the depth of the source and the location of singular points.

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来源期刊
Journal of Internet Technology
Journal of Internet Technology COMPUTER SCIENCE, INFORMATION SYSTEMS-TELECOMMUNICATIONS
CiteScore
3.20
自引率
18.80%
发文量
112
审稿时长
13.8 months
期刊介绍: The Journal of Internet Technology accepts original technical articles in all disciplines of Internet Technology & Applications. Manuscripts are submitted for review with the understanding that they have not been published elsewhere. Topics of interest to JIT include but not limited to: Broadband Networks Electronic service systems (Internet, Intranet, Extranet, E-Commerce, E-Business) Network Management Network Operating System (NOS) Intelligent systems engineering Government or Staff Jobs Computerization National Information Policy Multimedia systems Network Behavior Modeling Wireless/Satellite Communication Digital Library Distance Learning Internet/WWW Applications Telecommunication Networks Security in Networks and Systems Cloud Computing Internet of Things (IoT) IPv6 related topics are especially welcome.
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