论文标题

量子网络的多键入路由框架

A Multiple-Entanglement Routing Framework for Quantum Networks

论文作者

Nguyen, Tu N., Ambarani, Kashyab J., Le, Linh, Djordjevic, Ivan, Zhang, Zhi-Li

论文摘要

量子网络在在各个域中找到应用程序正在获得动力。但是,很少的研究研究了量子网络框架的潜力,以实现高度可靠的通信。这项工作的目的是调查和设计多条形路由框架,即kentangled路由。特别是,$ k $ entangled路由将启用连接网络中所有需求(源用途对)的k路径。为了设计$ k $ entangled的路由,我们提出了两种算法,这些算法称为顺序多路程调度算法和基于最小的多路径调度算法。此外,我们通过逼真的量子网络模拟器NetSquid评估了提出的算法和模型的性能,该模拟器对量子通信的随机过程进行了建模。结果表明,拟议的算法(SMPSA和MCSA)在很大程度上增强了网络的流量灵活性。拟议的范例将奠定基础,以进一步研究纠缠路由区域。

Quantum networks are gaining momentum in finding applications in a wide range of domains. However, little research has investigated the potential of a quantum network framework to enable highly reliable communications. The goal of this work is to investigate and design the multiple-entanglement routing framework, namely k-entangled routing. In particular, the $k$-entangled routing will enable k paths connecting all demands (source-destination pairs) in the network. To design the $k$-entangled routing, we propose two algorithms that are called Sequential Multi-path Scheduling Algorithm and Min-Cut-based Multi-path Scheduling Algorithm. In addition, we evaluate the performance of the proposed algorithms and models through a realistic quantum network simulator, NetSquid, that models the stochastic processes underlying quantum communications. The results show that the proposed algorithms (SMPSA and MCSA) largely enhance the network's traffic flexibility. The proposed paradigms would lay the foundation for further research on the area of entanglement routing.

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