可靠CoAP通信中的拥塞控制

A. Betzler, Carles Gomez, I. Demirkol, J. Aspas
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引用次数: 32

摘要

针对硬件资源有限的无线受限设备的IPv6栈的开发为许多新的应用程序和协议领域铺平了道路。受约束的应用协议(CoAP)是由IETF设计的,以便能够对能够连接到Internet的受约束设备的资源进行操作。由于无线信道容量和硬件资源的限制,拥塞是受限设备网络中的常见现象。CoAP为可靠消息的传输实现了基本的拥塞控制机制。可选的CoAP拥塞控制方法是IETF核心工作组最近感兴趣的一个主题。新的互联网草案讨论了默认拥塞控制机制的局限性,并提出了替代机制,然而,在文献中还没有研究将原始方法与替代方法进行比较。在本文中,我们针对这一关键研究并执行评估,以显示默认和替代拥塞控制机制如何相互比较。我们使用Cooja模拟环境,它是Contiki开发工具集的一部分,在一个完整的协议栈中模拟CoAP,该协议栈在受限网络中使用IETF协议。通过对不同网络拓扑和不同流量负载的模拟,我们展示了草案中提出的高级机制相对于基本拥塞控制机制的表现。
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Congestion control in reliable CoAP communication
The development of IPv6 stacks for wireless constrained devices that have limited hardware resources has paved the way for many new areas of applications and protocols. The Constrained Application Protocol (CoAP) has been designed by the IETF to enable the manipulation of resources for constrained devices that are capable of connecting to the Internet. Due to the limited radio channel capacities and hardware resources, congestion is a common phenomenon in networks of constrained devices. CoAP implements a basic congestion control mechanism for the transmission of reliable messages. Alternative CoAP congestion control approaches are a recent topic of interest in the IETF CoRE Working Group. New Internet-Drafts discuss the limitations of the default congestion control mechanisms and propose alternative ones, yet, there have been no studies in the literature that compare the original approach to the alternative ones. In this paper, we target this crucial study and perform evaluations that show how the default and alternative congestion control mechanisms compare to each other. We use the Cooja simulation environment, which is part of the Contiki development toolset, to simulate CoAP within a complete protocol stack that uses IETF protocols for constrained networks. Through simulations of different network topologies and varying traffic loads, we demonstrate how the advanced mechanisms proposed in the drafts perform relative to the basic congestion control mechanism.
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