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Mode transformation and united control mechanism supporting wavelength division multiplexing Ethernet passive optical network and orthogonal frequency division multiplexing passive optical network in multi-subsystem-based virtual passive optical network

机译:基于多子系统的虚拟无源光网络中支持波分复用以太网无源光网络和正交频分复用无源光网络的模式转换和联合控制机制

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摘要

In this study, mode transformation and united control mechanism for multiple subsystems in metro-access optical network (MAON) are proposed to realise multi-subsystem-based virtual passive optical network. By combing the characteristics of multi-point control protocols (MPCPs) of wavelength division multiplexing Ethernet passive optical network (WDM-EPON) and orthogonal frequency division multiplexing passive optical network (OFDM-PON), a unified MPCP (U-MPCP) is proposed. Based on the U-MPCP, flexible control node and central node are constructed to achieve asynchronous unified control of multiple subsystems. By designing new control frames, the mode transformation between two subsystems (WDM-EPON and OFDM-PON) can be carried out. It can not only finish the flexible transformation of optical network unit's (ONU's) working modes but also make the MAON have the backward compatibility to the existing access technologies. By creating transformation algorithm of ONU's working modes, the transmission delay of over-load subsystem can be effectively reduced when ONU meets the condition of the mode transformation and finishes the transformation. Finally, by simulation, the effectiveness of the proposed scheme is demonstrated.
机译:本文研究了城域接入光网络(MAON)中多个子系统的模式转换和联合控制机制,以实现基于多子系统的虚拟无源光网络。结合波分复用以太网无源光网络(WDM-EPON)和正交频分复用无源光网络(OFDM-PON)的多点控制协议(MPCP)的特点,提出了统一的MPCP(U-MPCP) 。基于U-MPCP,构造了灵活的控制节点和中央节点,以实现多个子系统的异步统一控制。通过设计新的控制帧,可以在两个子系统(WDM-EPON和OFDM-PON)之间进行模式转换。它不仅可以完成光网络单元(ONU)工作模式的灵活转换,而且可以使MAON对现有接入技术具有向后兼容性。通过创建ONU工作模式的转换算法,可以在ONU满足模式转换条件并完成转换时有效地减少过载子系统的传输延迟。最后,通过仿真验证了该方案的有效性。

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