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FTTH网络的ODN结构分析 被引量:2
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作者 沈敬忠 《邮电设计技术》 2012年第2期65-69,共5页
通过对FTTH网络中的ODN结构分析,指出了不同ODN结构适合的不同场景,提出了FTTH网络中的光缆线路设计方法。
关键词 纤接入网 纤到户 配网络 千兆无源网络 一级结构 二级分光结构
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FTTH网络的ODN结构分析 被引量:2
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作者 沈宝贵 《江西通信科技》 2016年第1期22-25,共4页
随着通信技术日新月异的发展,人们对网络的需求越来越大,这种需求需要高速的、高带宽的网络来支撑,GPON是目前实现光纤到户的最佳选择。本文从在网络设计的角度出发,针对设计环节存在的一些问题,通过对FTTH光缆网络结构、FTTH光缆网络... 随着通信技术日新月异的发展,人们对网络的需求越来越大,这种需求需要高速的、高带宽的网络来支撑,GPON是目前实现光纤到户的最佳选择。本文从在网络设计的角度出发,针对设计环节存在的一些问题,通过对FTTH光缆网络结构、FTTH光缆网络现实结构以及对GPON网络的ODN一级分光结构、二级分光结构的分析,分别测算了不同场景下采用1:32和1:64的GPON网络的传输距离,对不同结构的应用进行了对比分析。指出了不同ODN结构适合的不同场景,提出了FTTH网络中的光缆线路设计方法。 展开更多
关键词 纤接入网 千兆无源网络 一级结构 二级分光结构
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Analysis of the Secondary Structure of the Transmembrane Domain of SARS CoV E Protein Using FTIR Spectroscopy
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作者 Qasem Abu-Remeleh Abd-Alkareem Alsharif Mutaz Akkawi 《Journal of Chemistry and Chemical Engineering》 2010年第6期8-14,共7页
One of the major obstacles facing the field of structural biology in the post genomic era is the inherent difficulty of analyzing the structure of membrane proteins under native conditions. The method of choice for st... One of the major obstacles facing the field of structural biology in the post genomic era is the inherent difficulty of analyzing the structure of membrane proteins under native conditions. The method of choice for studying such proteins is FTIR spectroscopy. Following the outbreaking of the severe acute respiratory syndrome (SARS) virus, in 2003, extensive work has been directed at elucidating the structure of the E transmembrane proteins of the SARS coronavirus. In this study, the secondary structure of the transmembrane a-helical bundles was analysised using the biophysical method site specific infrared dichroism (SSID). Sixteen amino acids were isotopically labeled with (~3C=180) at different positions of the primary structure of the synthesized E protein CoV. The secondary structure was studied using Attenuated Total Internal Reflection (ATR) FTIR spectroscopy. Based on our findings, the presence of two possible H-bonding interactions between the carbonyl oxygen of two residues 26 and 31 (Phe and Leu) respectively with water molecules which may be trapped within the helix structure were postulatesed. These interactions may cause a change in this structure. 展开更多
关键词 SARS CoV a-helix SSID ATR- FTIR H-bonding interactions.
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