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用于静电加速器的高频离子源的设计和调试 被引量:6
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作者 詹福如 余增亮 +5 位作者 胡纯栋 胡素华 张束清 李军 陈斌 王绍虎 《真空科学与技术》 CSCD 北大核心 2000年第3期226-228,共3页
研制了一台高频离子源 ,通过实验调试取得了引出电压、聚焦电压及放电气压对引出束流影响的变化曲线 ,从而获得高频离子源的最佳工作条件 。
关键词 高频离子源 束流强度 束径包络 静电加速器
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Instantaneous phase inversion based on an unwrapping algorithm
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作者 Lin Yu-Zhao Li Zhen-Chun +2 位作者 Zhang Kai Ding Ren-Wei Jiang Ping 《Applied Geophysics》 SCIE CSCD 2020年第1期124-132,169,170,共11页
The full-waveform inversion method is a high-precision inversion method based on the minimization of the misfit between the synthetic seismograms and the observed data.However,this method suffers from cycle skipping i... The full-waveform inversion method is a high-precision inversion method based on the minimization of the misfit between the synthetic seismograms and the observed data.However,this method suffers from cycle skipping in the time domain or phase wrapping in the frequency because of the inaccurate initial velocity or the lack of low-frequency information.furthermore,the object scale of inversion is affected by the observation system and wavelet bandwidth,the inversion for large-scale structures is a strongly nonlinear problem that is considerably difficult to solve.In this study,we modify the unwrapping algorithm to obtain accurate unwrapped instantaneous phase,then using this phase conducts the inversion for reducing the strong nonlinearity.The normal instantaneous phases are measured as modulo 2π,leading the loss of true phase information.The path integral algorithm can be used to unwrap the instantaneous phase of the seismograms having time series and onedimensional(1 D)signal characteristics.However,the unwrapped phase is easily affected by the numerical simulation and phase calculations,resulting in the low resolution of inversion parameters.To increase the noise resistance and ensure the inversion accuracy,we present an improved unwrapping method by adding an envelope into the path integral unwrapping algorithm for restricting the phase mutation points,getting accurate instantaneous phase.The objective function constructed by unwrapping instantaneous phase is less affected by the local minimum,thereby making it suitable for full-waveform inversion.Further,the corresponding instantaneous phase inversion formulas are provided.Using the improved algorithm,we can invert the low-wavenumber components of the underneath structure and ensure the accuracy of the inverted velocity.Finally,the numerical tests of the 2 D Marmousi model and 3 D SEG/EAGE salt model prove the accuracy of the proposed algorithm and the ability to restore largescale low-wavenumber structures,respectively. 展开更多
关键词 Instantaneous phase path integral algorithm envelope constraint strongly nonlinear problem
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