摘要
综合星型及环形拓扑结构的优点,提出一种具有超高速实时光纤网络结构的飞行器光传操纵设计方案。所给出的余度设计及分布式共享内存策略增强了整个光传系统的可靠性及容错性能。应用动态数据分组技术既提高了小数据量的传输效率又提高了大数据量突发传输时的吞吐量。性能测试及地面飞行仿真验证表明,系统数据传输速率可达2.12Gb/s,具有很强的实时性及信息传输确定性,适应了机载环境下光传飞行控制及航空电子系统不断发展的需求。
A real-time Ultrahigh-speed optical fiber network design concept was proposed for fly-by-light aircraft in this paper. The advantages of the star and ring topology structure were integrated. Redundancy design technology and distributed shared memory strategy were used to enhance the reliability and fault-tolerance capability of the whole system. The built-in dynamic data packet concept can not only increase the efficiency of little data transfers, but also increase the throughput of burst data transfers. Performance testing and ground flight simulation indicates that, the system has excellent real-time and deterministic capability at rates up to 2.12Gb/s; it can meet the increasing requirements of fly-by-light and avionics system.
出处
《光通信技术》
CSCD
北大核心
2006年第1期26-29,共4页
Optical Communication Technology
基金
国防基础科研基金(K1603060319)资助项目
"十五"国防预研基金(A0404-031)资助项目
关键词
光传操纵
飞行控制
反射内存
光纤网络
机载局域网
fly-by-light
flight control
reflective memory
fiber optic network
airborne LAN