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Code division multiplexing lightwave networks based upon optical code conversion

机译:基于光码转换的码分复用光波网络

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Lightwave networks realized through code division multiple access techniques are extensively studied to determine their ultimate capabilities. Here, these concepts are extended to network implementation by introducing an optical code division multiplexing (OCDM) multihop strategy using optical coding. It is shown that this approach is effective in scaling up existing wavelength division multiplexing (WDM) networks without a significant drain of the wavelength resources. The concept of a virtual optical code path (VOCP) is introduced within the transport layer of the network. It is demonstrated that this is a potential solution to wavelength path (WP) allocation problems which may plague WDM based transport networks of the future. Crucial to the VOCP concept is optical code conversion. The interplay between this added functionality and the optical cross-connect is highlighted; the optical cross-connect serves to establish VOCP/VWP (virtual wavelength path) in the hybrid transport layer. An example of optical code conversion is introduced. It is based on coherent OCDM principles in which bipolar phase-shift keyed (PSK) optical pulse sequences are used as the signature codes. Error-free code conversion using a four-chip optical encoder/decoder is successfully performed at 1.24 Gbit/s. The results show the feasibility of high bit rate OCDM transmission with optical code conversion.
机译:通过码分多址技术实现的光波网络已得到广泛研究,以确定其最终功能。在这里,通过引入使用光学编码的光学码分复用(OCDM)多跳策略,将这些概念扩展到网络实现。结果表明,该方法可有效地扩展现有的波分复用(WDM)网络,而不会大量消耗波长资源。虚拟光代码路径(VOCP)的概念是在网络的传输层中引入的。事实证明,这是解决波长路径(WP)分配问题的潜在方法,它可能困扰未来基于WDM的传输网络。 VOCP概念的关键是光学代码转换。突出显示了此附加功能和光学交叉连接之间的相互作用;光交叉连接用于在混合传输层中建立VOCP / VWP(虚拟波长路径)。介绍光代码转换的示例。它基于相干OCDM原理,其中双极性相移键控(PSK)光脉冲序列用作签名代码。使用四芯片光学编码器/解码器的无错误代码转换已成功以1.24 Gbit / s的速度执行。结果表明,通过光码转换实现高比特率OCDM传输的可行性。

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