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Stages of CoopNet: A Multipath Parallel Link Architecture For Next-Gen Networks

机译:CoopNet的阶段:下一网网络的多径并行链路架构

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Idle spectrum use and dynamic spectrum access are popular topics in academia and industry. Heterogenous networking is more popular than ever, with mobile offloading being the biggest motivator. Current communication implements several new protocols, such as 802.11u WiFi Certified Passpoint, multipath transmission control protocol (MPTCP), 5G Core Access Traffic Steering, Switching, and Splitting (ATSSS), and CoopNet. This paper introduces the primary methods and models included in the first two stages (Discovery and Decision) of the CoopNet multipath architecture defined in [1]. The discovery and decision stages are the fundamental stages necessary as proof of concept for experimental implementation. The results show that implementing just the first two stages improves the local communication throughput, delay, and utility, enabling new features, including introducing infrastructure as a service.
机译:空闲频谱使用和动态频谱访问是学术界和工业的流行主题。 异因网络比以前更受欢迎,移动卸载是最大的动力。 当前通信实现了几种新协议,例如802.11U WiFi认证的Passpoint,多径传输控制协议(MPTCP),5G核心访问流量转向,切换和分离(ATSSS)和COOPNET。 本文介绍了[1]中定义的CoopNet MultiPath架构的前两个阶段(发现和决定)中包含的主要方法和模型。 发现和决策阶段是作为实验实施概念证明所必需的基本阶段。 结果表明,仅实现前两个阶段的实现可提高本地通信吞吐量,延迟和实用程序,实现新功能,包括将基础架构作为服务介绍。

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