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New fiber-optic ATM switching networks using optical code-division multiple access for broadband communication applications

机译:使用光码分多址的新型光纤ATM交换网络,用于宽带通信应用

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摘要

We design new fiber-optic asynchronous-transfer-mode (ATM) networks which are based on incoherent optical code-division multiple access (CDMA). To eliminate the throughput bottleneck, optical signal processing is used in the proposed switching network to guarantee a high processing speed which is required by incoherent optical CDMA. This in turn can support real-time broadband communication services. Because strict optical orthogonal codes (OOCs) are employed, both cross-correlation and autocorrelation constraints are strictly limited to be "1" for variable-bitrate (VBR) and constant-bit-rate (CBR) data communications. In the VBR case, the use of strict OOCs can guarantee a lower bit error rate than using conventional OOCs. Moreover, the proposed ATM switching network can efficiently support CBR and VBR communications (e.g. HDTV and video conferencing with the MPEG-2 standard), with no increase of system bandwidth and no change of optical CDMA encoder/decoder. Simple theory and code construction of strict OOCs are presented. Moreover, error correction codes are used in fiber-optic CDMA networks to improve the system performance.
机译:我们设计了基于非相干光码分多址(CDMA)的新型光纤异步传输模式(ATM)网络。为了消除吞吐量瓶颈,在所提出的交换网络中使用光信号处理来保证非相干光CDMA所要求的高处理速度。这又可以支持实时宽带通信服务。由于采用严格的光学正交码(OOC),因此对于可变比特率(VBR)和恒定比特率(CBR)数据通信,互相关和自相关约束都严格限制为“ 1”。在VBR情况下,与使用常规OOC相比,使用严格的OOC可以保证更低的误码率。而且,所提出的ATM交换网络可以有效地支持CBR和VBR通信(例如,具有MPEG-2标准的HDTV和视频会议),而不会增加系统带宽,也不会改变光学CDMA编码器/解码器。介绍了简单的理论和严格的OOC的代码构造。而且,在光纤CDMA网络中使用纠错码来改善系统性能。

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