首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Control packet signaling mechanism using electronic code division multiple access for packet-based networks
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Control packet signaling mechanism using electronic code division multiple access for packet-based networks

机译:基于分组网络的使用电子码分多址的控制分组信令机制

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We propose and experimentally demonstrate the feasibility of a control packet signaling technique using electronic code division multiple access for a wavelength division multiplexing packet-based network, whereby each wavelength channel is assigned a unique electronic code based label on a radio frequency subcarrier. Such a technique allows each wavelength channel to be electronically identified without requiring the use of a WDM demultiplexer. We experimentally demonstrate this technique with two wavelength channels each with 1.25 Gb/s baseband payload data and 10 Mb/s header coded onto an electronic code at 160 Mb/s. A performance study of the electronic code division multiple access based control signaling scheme in a wavelength division multiplexed packet-based access network is also performed in terms of the required power budget to monitor the electronic code division multiple access control signals in the presence of several sources of noise for error-free transmission of both payload data and electronic code division multiple access based control signals. It is shown that the modulation depth of each signal impacts the amount of required optical tap power. As the modulation depth of the electronic code division multiple access based control signal is increased, the required optical tap power is reduced. However, this increases the bit-error-rate for the payload data. Therefore, there lies a maximum and a minimum of the required tap optical power for the successful recovery of both signals. The lower bound of this range is usually determined by the successful recovery of electronic code division multiple access based control signal while the upper bound is determined by the successful recovery of payload data. The required optical tap power is analyzed for different transmission bit rates of the payload data for various receiver architecture scenarios without an optical amplifier at the receiver. The scalability analyses were repeated with an optical amplifier placed in the receiver terminal of the network. The resulting optical tap power that is required for the successful monitoring of the electronic code division multiple access based control signals are compared with that of the case without the amplifier.
机译:我们提出并通过实验证明了针对基于波分复用分组的网络使用电子码分多址的控制分组信令技术的可行性,从而为每个波长信道在射频副载波上分配了唯一的基于电子码的标签。这种技术允许电子识别每个波长通道,而无需使用WDM多路分解器。我们用两个波长信道分别用1.25 Gb / s的基带有效载荷数据和10 Mb / s的报头编码到160 Mb / s的电子代码上,通过实验证明了该技术。还根据所需功率预算对波分复用基于分组的接入网络中基于电子码分多址控制信令方案的性能进行了研究,以在存在多个源的情况下监视电子码分多址控制信号用于有效载荷数据和基于电子码分多址的控制信号的无差错传输的噪声。结果表明,每个信号的调制深度都会影响所需的光抽头功率。随着基于电子码分多址的控制信号的调制深度的增加,所需的光抽头功率减小。但是,这增加了有效载荷数据的误码率。因此,存在用于成功恢复两个信号所需的最大抽头光功率。该范围的下限通常由成功恢复基于电子码分多址的控制信号来确定,而上限由有效负载数据的成功恢复来决定。在接收机没有光放大器的情况下,针对各种接收机架构方案分析了有效载荷数据的不同传输比特率所需的光抽头功率。使用放置在网络接收器终端中的光放大器重复进行可伸缩性分析。将成功监视电子码分多址控制信号所需的最终光抽头功率与没有放大器的情况进行比较。

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