QuIP:P4 量子互联网协议原型框架

Wojciech Kozlowski;Fernando A. Kuipers;Rob Smets;Belma Turkovic
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引用次数: 0

摘要

量子纠缠与网络数据包有着本质区别,因此已经提出了几种量子网络协议栈,其中一种甚至已经过实验验证。此外,还开发了几种模拟器,以弥补有限的硬件可用性,并促进量子网络协议的设计和评估。然而,由于缺乏共享工具和社区认可的节点架构,协议实现与其模拟器紧密耦合。这不仅限制了它们在不同模拟器之间的可重用性,还使得在先前结果和模拟的基础上进行构建变得困难。为了解决这个问题,我们开发了 QuIP:基于 P4 的量子互联网协议原型框架,用于量子网络协议设计。QuIP 是一个以平台无关的方式设计和实施量子网络协议的框架。为实现这一目标,它提供了灵活而严谨地定义设备架构的方法,而量子网络协议可以根据这些架构用网络编程语言 $\text{P}4_{16}$ 来实现。QuIP 还配备了必要的工具,以便在现有的量子网络模拟器中执行这些协议。我们通过展示全新的设备架构 V1Quantum,实现链路层和网络层协议,并在现有的模拟器 NetSquid 中对其进行模拟,来演示其用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QuIP: A P4 Quantum Internet Protocol Prototyping Framework
Quantum entanglement is so fundamentally different from a network packet that several quantum network stacks have been proposed; one of which has even been experimentally demonstrated. Several simulators have also been developed to make up for limited hardware availability, and which facilitate the design and evaluation of quantum network protocols. However, the lack of shared tooling and community-agreed node architectures has resulted in protocol implementations that are tightly coupled to their simulators. Besides limiting their reusability between different simulators, it also makes building upon prior results and simulations difficult. To address this problem, we have developed QuIP: a P4-based Quantum Internet Protocol prototyping framework for quantum network protocol design. QuIP is a framework for designing and implementing quantum network protocols in a platform-agnostic fashion. It achieves this by providing the means to flexibly, but rigorously, define device architectures against which quantum network protocols can be implemented in the network programming language $\text{P}4_{16}$ . QuIP also comes with the necessary tooling to enable their execution in existing quantum network simulators. We demonstrate its use by showcasing V1Quantum, a completely new device architecture, implementing a link- and network-layer protocol, and simulating it in the existing simulator NetSquid.
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