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Study of Electromagnetism Compatibility of Single-chip Switching Power Supply and Suppression Technique 被引量:2
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作者 HE Hong JIN Shijiu +3 位作者 ZHANG Dajian MENG Hui ZHU Xianwei TANG Lu 《现代电子技术》 2007年第2期159-161,共3页
As for the Domino effect dv/dt and electromagnetic interference during the rapid switching course of single-chip switching power supply,this article firstly analyzes electromagnetic interference source,and then diagno... As for the Domino effect dv/dt and electromagnetic interference during the rapid switching course of single-chip switching power supply,this article firstly analyzes electromagnetic interference source,and then diagnoses the essential interaction relationship between interference and switching activity based on the timely and area measured waveform,analyzes and studies the production mechanism and coupling path of interference mode,and sets up circuit model according to the features of transverse mode interference and common mode interference.Put forward different suppression methods finally. 展开更多
关键词 switching power electromagnetism compatibility common mode interference transverse mode interference coupling path
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Extracting the interference components of normal modes in shallow water waveguide using singular value decomposition method
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作者 GAO Wei 《Chinese Journal of Acoustics》 CSCD 2016年第2期111-124,共14页
The normal mode interference characteristic in shallow water waveguide is a valu- able topic in the fields of underwater acoustic. A method for extracting the interference components of normal modes from broadband aco... The normal mode interference characteristic in shallow water waveguide is a valu- able topic in the fields of underwater acoustic. A method for extracting the interference components of normal modes from broadband acoustic propagation data recorded by a single hy- drophone without any prior information is present in this paper. First, a Hermitian matrix is formed by the power spectral density. Second, a singular value decomposition (SVD) is performed on the Hermitian matrix to obtain the orthonormal eigenvectors, which are proportional to the interference components of normal modes. The fundamental equations of the new extracting method are derived based on normal mode and waveguide invariant theory. And the validity of the present method is verified by the numerical simulation and experimental results. In addition, the extracted results of normal-mode interference components are intended to be used for passive ranging of broadband sources. 展开更多
关键词 Extracting the interference components of normal modes in shallow water waveguide using singular value decomposition method mode
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An oscillation phenomenon of low frequency reverberation in the shallow water and its physical explanation 被引量:5
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作者 LI Fenghua LIU Jianjun +1 位作者 LI Zhenglin ZHANG Renhe 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2005年第4期413-421,共9页
An oscillation phenomenon of the low frequency reverberation intensity was observed in several shallow water reverberation experiments. This phenomenon cannot be explained by the widely used incoherent reverberation t... An oscillation phenomenon of the low frequency reverberation intensity was observed in several shallow water reverberation experiments. This phenomenon cannot be explained by the widely used incoherent reverberation theory. In this paper, to explain the observed oscillation phenomenon, a normal mode based coherent reverberation theory is presented. The theoretical analysis and numerical results show that modal interference can cause the regular oscillation phenomenon of the low frequency reverberation intensity, and the oscillation frequency is determined by the normal mode eigen-values. A new method to estimate the bottom sound speed based on the oscillation frequency of reverberation intensity was presented in this paper. The experimental results at three different sites indicate that the bottom sound speed estimated from the oscillation frequency of reverberation intensity agrees with that inverted from Matched Field Processing (MFP) well. 展开更多
关键词 REVERBERATION OSCILLATION normal mode interference inversion. DOI: 10.1360/142004-156
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