摘要
为了设计新型双通道互连器件,应用红外无线传输技术和光互连理论建立了一种动态互连模型,给出了动态光场和静态场在轴向距离d、角度偏差θ和离轴偏差L情况下的计算公式.依据动态互连模型设计了一种双通道互连器件,并测试了互连器件的传输速率.实验结果表明:利用动态互连模型设计的器件能够使传输信号通过旋转面,双通道互连器件最高数据传输速率可达到2.14Mb/s.
An efficient model of dynamic interconnection using wireless infrared communication technology and theory of optical interconnections was constructed to design a dual-channel interconnection component. There were three conditions between the rotating optical field and the stationary optical field: end separation, angle misalignment, and lateral misalignment. The calculation formulas were given for these three conditions. A dual-channel optical interconnection component was designed based on the model of dynamic interconnection and the data transmission rate of the component was measured. Experimental results show that the dual-channel optical interconnection component can transmit optical signals through the rotating interface. The maximum transmission rate can reach 2.14 Mb/s.
出处
《天津大学学报》
EI
CAS
CSCD
北大核心
2006年第8期985-988,共4页
Journal of Tianjin University(Science and Technology)
基金
国家自然科学基金(60377031
60577013)
国家重点基础研究发展计划("973计划")项目(2003CB14907)
新世纪优秀人才支持计划资助项目.
关键词
动态互连
红外无线传输
旋转连接
传输速率
dynamic spatial interconnection
wireless infrared communication
rotary joint
transmission rate