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100G波分复用传输的环网保护技术分析
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作者 王丽华 李卉仙 《中国新通信》 2018年第7期73-73,共1页
随着互联网技术的不断进步与发展,互联网用户不断增多,人们对宽带的需求不断提升,各大运营商在光纤宽带业务方面的竞争也越来越积累。在这种情况下,传统的10G/40G传输承载网不能有效的满足超宽带的要求,100G波分复用传输技术应运而生。1... 随着互联网技术的不断进步与发展,互联网用户不断增多,人们对宽带的需求不断提升,各大运营商在光纤宽带业务方面的竞争也越来越积累。在这种情况下,传统的10G/40G传输承载网不能有效的满足超宽带的要求,100G波分复用传输技术应运而生。100G波分复用传输技术的环网保护技术在城市通信中应用广泛。本文重点研究了100G波分复用传输技术的环网保护技术,旨在促进城市通信的发展。 展开更多
关键词 100G 波分复用传输技术 环网保护技术
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传输、获取与显示用光电子技术 被引量:1
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作者 王启明 《电子产品世界》 1998年第12期20-22,共3页
超大容量传输领域由于技术上和造价上的原因,电磁波(或电子)作载体来传输信息流已走到极限,即使采用代价很高的同轴电缆,其传输带宽也只能做到500MHz,难以满足未来 T(10<sup>12</sup>)b/s 超大容量传输的需求。光波的本... 超大容量传输领域由于技术上和造价上的原因,电磁波(或电子)作载体来传输信息流已走到极限,即使采用代价很高的同轴电缆,其传输带宽也只能做到500MHz,难以满足未来 T(10<sup>12</sup>)b/s 超大容量传输的需求。光波的本征带宽高达200T(10<sup>12</sup>)Hz,低损耗石英光纤1.55μm 展开更多
关键词 光电子技术 光孤子技术 复用传输技术
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波分复用(WDM)在光传飞控系统中的应用研究
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作者 温瑾 杨一栋 王新华 《航空与航天》 2003年第3期1-6,共6页
本文依据飞控系统的特点,研究了光传飞行控制系统关键技术之一的波分复用多路传输技术,给出了可应用于飞控系统的波分复用多路光纤传输系统的具体实现方法,介绍了波分复用光电器件的选取,硬件电路的设计方法,并从工程应用角度出发... 本文依据飞控系统的特点,研究了光传飞行控制系统关键技术之一的波分复用多路传输技术,给出了可应用于飞控系统的波分复用多路光纤传输系统的具体实现方法,介绍了波分复用光电器件的选取,硬件电路的设计方法,并从工程应用角度出发,将其应用于舰载飞机着舰的可视化仿真平台中,仿真结果显示该系统具有良好的性能,为波分复用技术在光传飞控系统中的进一步应用研究提供了基础。 展开更多
关键词 波分复用多路传输技术 光传飞行控制系统 仿真 飞机 操纵品质
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Performance Analysis of Optical Transmission Based on Seven Cores Fiber 被引量:1
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作者 Hang Zhou Fu Wang +2 位作者 Borui Li Ming Tang Xiangjun Xin 《China Communications》 SCIE CSCD 2016年第9期113-120,共8页
This essay designed a kind of new seven-core fiber with lower crosstalk and loss, and made space division multiplexing transmission experiment based on this seven-core fiber. It is known that crosstalk has the most se... This essay designed a kind of new seven-core fiber with lower crosstalk and loss, and made space division multiplexing transmission experiment based on this seven-core fiber. It is known that crosstalk has the most serious influence in multicore fiber transmission process. Before the experiment, the affecting factors of fiber crosstalk were analyzed through simulation, such as core space, bending radius, and fiber length. Combined with the simulation analysis, the design scheme of multicore fiber with low crosstalk was obtained. Before the fiber design, various factors of influence crosstalk such as the core- to-core distance, bending radius, fiber length and so on. Based on the simulation analysis, conclusion has made on the design scheme of multi-core optimal fiber with low crosstalk. The space division multiplexing and wavelength division multiplexing technology, was adopted to conduct seven-core optical fiber transmission of 58.7kin.The crosstalk of adjacent core was suppressed to as low as 45dB / km, the attenuation of inner core was 0.24dB/ km, the outer cores' 0.32dB/km. Different bit error rate (BER) performances were also studied under different conditions, through reasonably designing the system to reduce the error rate, improve the performance of the system, and realize long distance and large capacity transmission with fiber. 展开更多
关键词 multicore fiber CROSSTALK space division multiplexing
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