Making the Right Connections: Multi-AP Association and Flow Control in 60GHz Band.

IEEE INFOCOM(2018)

引用 31|浏览48
暂无评分
摘要
Emerging network architectures in 60GHz millimeter wave bands will likely use dense deployment of access points (APs) given the high attenuation and frequent line-of-sight related outages. We show in this paper that naively connecting to any available AP, or even multiple APs, may not fully realize the promise of efficiently utilizing the extremely large bandwidths available in this band. This paper holistically addresses these problems through the Multi-AP Association Protocol (MAP) that: (i) indicates ideal durations for beam-searching at the physical/link layers of the protocol stack that will result in minimal interruptions to user-traffic, (ii) devises a Multi-AP association framework based on multipath TCP, which increases the network robustness by allowing immediate redirection of traffic to alternative APs whenever an existing connection is interrupted, and (iii) designs an exploration-exploitation aware flow scheduling algorithm that dynamically activates the sub flows to optimize transport layer performance. MAP is a lightweight, client side system that needs zero modifications to existing protocol stack, though it interacts with the latter to opportunistically trigger standards-defined functions. The paper also presents convergence analysis of throughput, experimental validation on a 60GHz network testbed, and trace-driven simulation studies that shows MAP achieving 5-7x reduction in re-buffering rate in HI) video streaming, rapid convergence to the best possible AP, and fair allocation of resources among clients.
更多
查看译文
关键词
flow control,network architectures,access points,MAP,multiAP association protocol framework,physical-link layers,trigger standards-defined functions,trace-driven simulation,HD video streaming,resource allocation,lightweight client side system,transport layer performance,exploration-exploitation aware flow scheduling algorithm,multipath TCP,user-traffic,beam-searching,line-of-sight related outages,frequency 60.0 GHz
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要