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Impact of BER in fragmentation-aware routing and spectrum assignment in elastic optical networks

机译:BER对弹性光网络中分段感知路由和频谱分配的影响

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摘要

Routing and spectrum assignment (RSA) in elastic optical network (EON) is a challenging task as an inefficient RSA may result in spectral and spatial fragmentation, leading to under-utilization of spectrum and increased connection blocking. Previous fragmentation-aware RSA algorithms, based on the assumption of an ideal physical layer, are not suitable for the performance evaluation of practical networks, where quality of the optical signal degrades while travelling long distances through the optical fiber links. Therefore, while running a RSA algorithm, it is necessary to consider the impact of all noise components to evaluate receiver bit-error rate (BER) on the fly, so that each connection is setup only when the estimated BER remains below an acceptable limit. This problem, hitherto unexplored in EONs though more significant and complex as compared to the conventional optical networks, is taken into consideration in this paper while framing fragmentation-aware RSA algorithm. In particular, we present a novel BER-cum-fragmentation-aware RSA algorithm, by using online estimates of BER values while executing fragmentation-aware RSA. The simulation results show that awareness of BER increases the connection blocking, which can however be addressed favorably by increasing transmit power, as much as possible from the available transmitter modules. Finally, we present a histogram of number of established connections versus delay-bandwidth product of the connections, leading to an assessment of the proposed algorithm in respect of the ability to allow long-haul connections with large bandwidth requests.
机译:弹性光网络(EON)中的路由和频谱分配(RSA)是一项艰巨的任务,因为效率低下的RSA可能会导致频谱和空间碎片化,从而导致频谱利用不足和连接阻塞增加。基于理想物理层的假设,先前的感知碎片的RSA算法不适用于实际网络的性能评估,在实际网络中,光信号的质量会在通过光纤链路长距离传输时降低。因此,在运行RSA算法时,必须考虑所有噪声成分的影响,以动态评估接收器误码率(BER),以便仅在估计的BER保持在可接受的限制以下时才建立每个连接。尽管构架了感知分片的RSA算法,但仍考虑到了这个问题,尽管与传统的光网络相比,它在EON中尚待探讨,尽管它更为重要和复杂。特别是,我们通过在执行分片感知型RSA时使用BER值的在线估计,提出了一种新颖的BER兼分片感知型RSA算法。仿真结果表明,对BER的了解增加了连接阻塞,但是可以通过增加发射功率来尽可能地利用可用的发射器模块来解决此问题。最后,我们给出了建立的连接数与连接的延迟带宽乘积的直方图,从而就允许具有大带宽请求的长距离连接的能力对提出的算法进行了评估。

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