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Challenges and Limitations in Automating the Design of MAC Protocols Using Machine-Learning

机译:机器学习自动化MAC协议设计的挑战和限制

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To cope with the emergence of new technologies, various device characteristics and application requirements, complex and custom design of high performance networking protocols is much needed. Networking protocols, practically, are designed through long-time and hard-work human efforts. However, these designed protocols, typically, have limited flexibility that results in non-optimal performance under several network scenarios and conditions. Therefore, replacing this inefficient human based designing process by a novel paradigm that enables rapid design of efficient, flexible and high performance protocols that intelligently adapt to different device characteristics, application requirements, user objectives, and network conditions is highly desired. In this paper, we motivate the importance of a shift from human-driven protocol design process to a machine-based design. We propose a novel, self-managing and self-adaptive framework for automating MAC protocol design. As an example of such a framework, We design, implement, and evaluate AlphaMAC framework that learns to automate the design of efficient simple MAC protocols. We decouple MAC into a set of building blocks, and we are interested to see what blocks are selected by AlphaMAC in different scenarios, and whether the designed protocol is efficient. Our results show that AlphaMAC is able to select the efficient set of building blocks from ALOHA protocol building block set such that the designed protocol outperforms conventional ALOHA. We also discuss some of the challenges and limitations of realizing such a framework. We believe that the impact of the automated design of networking protocols on the network research and industrial community, and on developing networking services and applications would be significant.
机译:为了应对新技术的出现,需要各种设备特性和应用要求,很需要高性能网络协议的复杂和定制设计。网络协议实际上是通过长期和勤劳的人力努力设计的。然而,这些设计的协议通常具有有限的灵活性,导致在若干网络方案和条件下的非最佳性能。因此,通过一种新的范例替换基于低效的基于人类的设计过程,该过程能够快速设计智能地适应不同设备特性,应用要求,用户目标和网络条件的高效,灵活和高性能协议的快速设计。在本文中,我们激励了从人机协议设计过程转变为基于机器的设计的重要性。我们提出了一种新颖,自我管理和自适应框架,用于自动化MAC协议设计。作为这种框架的示例,我们设计,实现和评估了学习自动化高效简单MAC协议的设计的AlphaMac框架。我们将MAC解耦为一组构建块,我们有兴趣查看alphamac在不同场景中选择的块,以及设计的协议是否有效。我们的结果表明,AlphaMAC能够从Aloha协议构建块集中选择有效的构建块组,使得设计的协议优于传统的Aloha。我们还讨论了实现这样一个框架的一些挑战和局限。我们认为,网络协议自动化设计对网络研究和工业界的影响,以及开发网络服务和应用程序将是显着的。

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