论文标题

通过有效利用过滤函数进行应答器噪声抑制的应答器聚合器

A Transponder Aggregator with Efficient Use of Filtering Function for Transponder Noise Suppression

论文作者

Suzuki, Kenya, Moriwaki, Osamu, Hadama, Koichi, Yamaguchi, Keita, Taniguchi, Hiroki, Kisaka, Yoshiaki, Ogawa, Daisuke, Takeshita, Makoto, Camatel, Stefano, Ma, Yiran, Fukutoku, Mitsunori

论文摘要

无色,无方向和无争议的可重构光学添加/丢弃多路复用(CDC-roadm)提供了高度灵活的物理层网络配置。这种CDC-ROADM必须在多个波长频段中运行,这些波长频段正在越来越多地在光学传输系统中实现。 C+L频段中的操作要求CDC-ROADM中使用的开关设备也能够进行多播操作。关于波长施用多路复用(WDM)系统的最新研究指出了由不同波长的信号产生的放大自发发射(ASE)噪声的影响,这会导致OSNR降解。因此,当在发射机侧多多重波长时,特别是在具有非波长选择性组合器(例如方向耦合器和多播开关)的系统中,需要过滤来自不同传输器的ASE噪声。对于此滤波,将应答器聚合器与过滤功能(例如M X N波长选择性开关(WSS))相比,可用于此滤波。但是,这些设备的缺点是很难提供经济的多功能支持。因此,我们通过允许一定量的ASE叠加并减少过滤功能的数量来提出经济的应答器聚合器的配置。在本文中,我们通过将基于二氧化硅的平面光波电路技术和C+L频段WSS结合并通过传输实验验证其可行性,制造了提议的应答器聚合器的原型。新型的应答器聚合器是具有改善OSNR性能的多频道CDC-ROADM系统的实用解决方案。

Colorless, directionless, and contentionless reconfigurable optical add/drop multiplexing (CDC-ROADM) provides highly flexible physical layer network configuration. Such CDC-ROADM must operate in multiple wavelength bands which are being increasingly implemented in optical transmission systems. The operation in C+L bands requires switch devices used in CDC-ROADM to also be capable of multiband operation. Recent studies on wavelength division multiplexing (WDM) systems have pointed out the impact of amplified spontaneous emission (ASE) noise generated by signals of different wavelengths, which causes OSNR degradation. Therefore, it is desirable to filter out the ASE noise from different transponders when multiplexing multiple wavelengths at the transmitter side, especially in a system with non-wavelength selective combiners such as directional couplers and multicast switches. The use of transponder aggregators with filtering functions, such as the M x N wavelength selective switch (WSS), is preferable for this filtering. However, the downside of these devices is that it is difficult to provide economical multiband support. Therefore, we propose an economical transponder aggregator configuration by allowing a certain amount of ASE superposition and reducing the number of filtering functions. In this paper, we fabricated a prototype of the proposed transponder aggregator by combining silica-based planar lightwave circuit technology and C+L band WSS, both commercially available, and verified its feasibility through transmission experiments. The novel transponder aggregator is a practical solution for a multiband CDC-ROADM system with improved OSNR performance.

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