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首页> 外文期刊>Journal of Lightwave Technology >Physical-Layer Security in MCF-Based SDM-EONs: Would Crosstalk-Aware Service Provisioning be Good Enough?
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Physical-Layer Security in MCF-Based SDM-EONs: Would Crosstalk-Aware Service Provisioning be Good Enough?

机译:基于MCF的SDM-EON中的物理层安全性:足够了解串扰的服务提供了吗?

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摘要

In this paper, we consider a multicore fiber (MCF)-enabled elastic optical network, in which certain nodes have a lower trust level than the others, and study how to provision lightpaths with considerations of the impairments and security vulnerabilities caused by intercore crosstalk. We propose attack-aware routing, spectrum, and core assignment algorithms that give priority to avoiding physical-layer security threats and then try to reduce the crosstalk-induced impairments. Specifically, both static network planning and dynamic network provisioning are investigated. For static planning, we first formulate an integer linear programming (ILP) model to optimize the spectrum utilization and intercore crosstalk level jointly and then propose a time-efficient heuristic. Simulation results confirm that the proposed heuristic can approximate the ILP's performance with much higher time efficiency in a small-scale network and outperform an existing benchmark in large networks. For dynamic provisioning, we design a heuristic to balance the tradeoff between blocking probability and crosstalk and conduct extensive simulations to verify its effectiveness.
机译:在本文中,我们考虑了启用多芯光纤(MCF)的弹性光网络,其中某些节点的信任级别低于其他节点,并研究如何在考虑到因核心间串扰而造成的损害和安全漏洞的前提下提供光路。我们提出了具有攻击意识的路由,频谱和核心分配算法,这些算法优先考虑避免物理层安全威胁,然后尝试减少串扰引起的损害。具体地说,研究了静态网络规划和动态网络供应。对于静态规划,我们首先制定一个整数线性规划(ILP)模型以共同优化频谱利用率和内核间串扰级别,然后提出一种高效的启发式方法。仿真结果证实,所提出的启发式方法可以在小型网络中以更高的时间效率近似ILP的性能,并优于大型网络中的现有基准。对于动态配置,我们设计了一种启发式方法来平衡阻塞概率和串扰之间的折衷,并进行广泛的仿真以验证其有效性。

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