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Static Lightpath Establishment with Transmission Impairments Consideration in WDM All-Optical Networks

机译:静态光路建立WDM全光网络中的传输障碍考虑

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Providing ultra high-speed end-to-end connectivity in core optical networks while satisfying the requirements for quality of service is a topic of intense research. In an optical network, a connection is set up to carry a data signal via an all-optical channel (lightpath) from its source to destination nodes. The analog nature of the signal transmission through the network links and nodes leads to signal quality degradation due to impairments accumulation. Such degradation should be taken into account when considering the Routing and Wavelength Assignment (RWA) problem. Most of preceding studies carried out on RWA neglect the impact of the physical layer impairments. In this paper, three physical layer impairment aware RWA algorithms are developed. We explicitly consider the effect of four physical layer impairments namely Chromatic Dispersion (CD), Polarization Mode Dispersion (PMD), Optical Signal to Noise Ratio (OSNR) and Nonlinear Phase Shift (Φ{sub}(NL))-Taking into account physical impairments when solving the RWA problem intuitively should affect the computed solution: the selection of a suitable path and suitable wavelength may fail to meet the minimum transmission requirement. To the best of our knowledge, this is the first attempt to include, simultaneously, the four aforementioned transmission impairments when dealing with the RWA problem. We here propose a function that computes the Q-factor based on Eye-Opening Penalties (EOP) instead of using variances. This should lead to a better Bit Error Rate (BER) estimation. Few studies considered EOP in the last years when dealing with such a problem. The performance of the proposed algorithms is demonstrated to be promising through illustrative numerical examples.
机译:在核心光网络中提供超高速端到端连接,同时满足服务质量要求是一个激烈的研究主题。在光网络中,建立连接以通过从其源到目的地节点的全光通道(LIGHTPATP)携带数据信号。通过网络链路和节点的信号传输的模拟性质导致由于损伤累积而导致信号质量劣化。考虑到路由和波长分配(RWA)问题时,应考虑这种劣化。在RWA上进行的前述研究中的大部分研究都忽略了物理层损伤的影响。在本文中,开发了三种物理层损伤意识的RWA算法。我们明确地考虑了四个物理层损伤的效果,即色散(CD),偏振模式色散(PMD),光信号到噪声比(OSNR)和非线性相移(φ{Sub}(NL)) - 考虑到物理在直观地解决RWA问题时损伤应影响计算的解决方案:选择合适的路径和合适的波长可能无法满足最小传输要求。据我们所知,这是第一次尝试在处理RWA问题时同时包括四个上述传动障碍。我们在这里提出了一种计算基于尖端惩罚(EOP)而不是使用差异的Q系数。这应该导致更好的误码率(BER)估计。在处理此类问题时,少数几年考虑了eop很少。所提出的算法的性能被证明是通过说明性数值例子的承诺。

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