首页> 外文会议>Conference on Optical Interconnects for Telecommunication and Data Communications 8-10 November 2000 Beijing, China >Homodyne Crosstalk Analysis in Integrative OADM/OXC in WDM Optical Transport Networks
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Homodyne Crosstalk Analysis in Integrative OADM/OXC in WDM Optical Transport Networks

机译:WDM光传输网络中集成OADM / OXC中的Homodyne串扰分析

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Optical add/drop multiplexer (OADM) and optical cross-connect (OXC) are key network elements in wavelength division multiplexing (WDM) optical transport networks. Homodyne crosstalk, due to the non-ideal performance of the demultiplexers/multiplexers and the switches, is introduced in OADMs and OXCs and causes system performance degradation. In this paper, we propose a low crosstalk structure for integrative OADM/OXC that implements the function of OADM and OXC simultaneously. For joined adding and dropping, we place a set of 2x2 switches between the demultiplexers and the cross-connect array instead of using larger dimensional cross-connect array. We also theoretical compared the impact of the homodyne crosstalk in the proposed structure and in the conventional integrative OADM/OXC. Simulation result shows that the power penalty caused by homodyne crosstalk can be decreased significantly in the proposed structure. Since the add/drop and cross-connect state of the integrative OADM/OXC changes from time to time for reconfiguration and restoration, and the polarization state of the signals varies constantly due to the thermal and mechanical fluctuations, we statistically analyzed the power penalty distribution. It can be obtaiend that the power penalty in the proposed structure distributes in a smaller range. This is very helpful to the planning and design of the optical trnasport networks.
机译:光分插复用器(OADM)和光交叉连接(OXC)是波分复用(WDM)光传输网络中的关键网络元素。由于解复用器/复用器和开关的非理想性能,Homodyne串扰被引入到OADM和OXC中,并导致系统性能下降。在本文中,我们为集成OADM / OXC提出了一种低串扰结构,该结构可同时实现OADM和OXC的功能。对于联合添加和删除,我们在解复用器和交叉连接阵列之间放置一组2x2开关,而不是使用较大尺寸的交叉连接阵列。我们还从理论上比较了零差串扰对拟议结构和常规集成OADM / OXC的影响。仿真结果表明,在该结构中,由零差串扰引起的功率损失可以大大降低。由于集成OADM / OXC的添加/断开和交叉连接状态会不时更改以进行重新配置和恢复,并且信号的极化状态会由于热和机械波动而不断变化,因此我们对功率损失分布进行了统计分析。可以理解,所提出的结构中的功率损失分布在较小的范围内。这对光传输网络的规划和设计非常有帮助。

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