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二维傅立叶变换及其π相移的解相技术研究 被引量:1
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作者 吴禄慎 邵兴意 《南昌大学学报(工科版)》 CAS 2004年第1期1-4,共4页
探讨了二维傅立叶变换和π相移技术用于三维面形的测量,消除了背景光强对频谱图的影响,避免了频谱混叠,有利于一级谱的准确提取,增大了曲面的可测梯度,可用于复杂形面的测量,同时在频域中绕过移频,避免了主频点的漂移.研究结果表明:该... 探讨了二维傅立叶变换和π相移技术用于三维面形的测量,消除了背景光强对频谱图的影响,避免了频谱混叠,有利于一级谱的准确提取,增大了曲面的可测梯度,可用于复杂形面的测量,同时在频域中绕过移频,避免了主频点的漂移.研究结果表明:该方法测量精度较高,简单、有效. 展开更多
关键词 二维傅立叶变换 π相移 移频 解相技术 非接触三维物体 表面轮廓测量
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PLL DEMODULATION TECHNIQUE FOR M-RAY POSITION PHASE SHIFT KEYING 被引量:10
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作者 Qi Chenhao Wu Lenan 《Journal of Electronics(China)》 2009年第3期289-295,共7页
The paper presents a kind of transmission system which employs M-ary Position Phase Shift Keying(MPPSK) to send data and Phase Locked Loop(PLL) based techniques for data retrieve.With a single PLL, MPPSK demodulation ... The paper presents a kind of transmission system which employs M-ary Position Phase Shift Keying(MPPSK) to send data and Phase Locked Loop(PLL) based techniques for data retrieve.With a single PLL, MPPSK demodulation is achieved, as well as carrier recovery and symbol synchronization.Firstly, MPPSK modulation method is briefly introduced.2PPSK's PSD expression is given with its optimization result.Orthogonal Phase Detector(PD) and static threshold are used for the purpose of wider phase range and simplicity in demodulation.The data rate is alterable, which is 4.65 kbps for 2PPSK and 9.3 kbps for 4PPSK in the paper.Then some indicative comparisons in Signal to Noise Ratio Symbol Error Rate(SNR-SER) are made among 2PPSK, 3PPSK and 4PPSK, of which 4PPSK has proved to be optimal in ten slots each symbol conditions.And finally, it is demonstrated by system simulations that lower than 10-4 Symbol Error Rate(SER) performance can be obtained at 13 dB symbol SNR. 展开更多
关键词 Phase Locked Loop (PLL) M-ary Position Phase Shift Keying (MPPSK) Phase Detector (PD) Power Spectrum Density (PSD)
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Atomistic simulation of the coupled adsorption and unfolding of protein GB1 on the polystyrenes nanoparticle surface 被引量:1
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作者 HuiFang Xiao Bin Huang +7 位作者 Ge Yao WenBin Kang Sheng Gong Hai Pan Yi Cao Jun Wang Jian Zhang Wei Wang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2018年第3期56-64,共9页
Understanding the processes of protein adsorption/desorption on nanopartieles' surfaces is important for the development of new nanotechnology involving biomaterials; however, an atomistic resolution picture for thes... Understanding the processes of protein adsorption/desorption on nanopartieles' surfaces is important for the development of new nanotechnology involving biomaterials; however, an atomistic resolution picture for these processes and for the simultaneous protein conformational change is missing. Here, we report the adsorption of protein GB 1 on a polystyrene nanoparticle surface using atomistic molecular dynamic simulations. Enabled by metadynamics, we explored the relevant phase space and identified three protein states, each involving both the adsorbed and desorbed modes. We also studied the change of the secondary and tertiary structures of GB 1 during adsorption and the dominant interactions between the protein and surface in different adsorption stages. The results we obtained from simulation were found to be more adequate and complete than the previous one. We believe the model presented in this paper, in comparison with the previous ones, is a better theoretical model to understand and explain the experimental results. 展开更多
关键词 protein adsorption atomistic simulations free energy landscape BIOMATERIALS NANOMATERIALS METADYNAMICS
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