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Cross-layer design of networking protocols in wireless local area networks and mobile ad hoc networks.

机译:无线局域网和移动自组织网络中网络协议的跨层设计。

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This Ph.D. dissertation focuses on design and analysis of efficient networking protocols in wireless local area networks and ad hoc networks. Known as WI-FI technology, wireless local area networks have become very popular today as an easy way of wire less access to the Internet. Wireless ad hoc networks also find a lot of applications which need wireless access or require a low cost or an immediate deployment of networked systems, like battlefield communications, public safety networks, disaster rescues, and wireless metropolitan area networks. However, it is a very challenging task to design efficient networking protocols to provide quality of service (QoS) and reliability in these networks. Compared to wired networks, in wireless networks links are not independent any more; bandwidth, power and processing ability are limited; channel errors happen frequently; network topology is subject to constant change; and the network is often self-organized and distributed. These challenges lead to close coupling among various layers in the protocol stack and a complete different medium access control (MAC) layer, and hence call for a cross-layer design between the MAC layer and other layers.; The dissertation conducts a thorough theoretical study on a contention-based MAC standard, IEEE 802.11, and investigates the close coupling between various protocol layers and the MAC layer, features of which have been used to provide QoS and reliability, and design efficient MAC, routing and transport protocols. The theoretical results discover that the contention-based IEEE 802.11 MAC standard can well support Quality of Service and at the same time achieve maximum aggregate throughput by regulating the access traffic. Guided by the theoretical studies, the protocol design demonstrates various novel ways of cross-layer design and their great benefit in improving performance of wireless networks. Unlike prior research on cross-layer design approach in wireless networks which focused on pure theoretical studies and either are too complicated to solve or the resulting solutions become too simple to be practical because of many unpractical assumptions, the theoretical studies and protocol design in this dissertation are based on the widely used IEEE 802.11 standard and hence can achieve immediate impact on products and revolutionize the way that people design networked systems.
机译:本博士论文主要研究和设计了无线局域网和自组织网络中有效的网络协议。无线局域网被称为WI-FI技术,如今已成为一种普及的无线连接方式,它是一种减少有线访问Internet的简便方法。无线自组织网络还发现了许多需要无线访问或需要低成本或立即部署联网系统的应用程序,例如战场通信,公共安全网络,灾难救援和无线城域网。但是,设计有效的网络协议以在这些网络中提供服务质量(QoS)和可靠性是一项非常艰巨的任务。与有线网络相比,无线网络中的链路不再独立。带宽,功率和处理能力受到限制;通道错误经常发生;网络拓扑结构不断变化;网络通常是自组织和分布式的。这些挑战导致协议栈中各个层与一个完​​全不同的媒体访问控制(MAC)层之间的紧密耦合,因此需要在MAC层和其他层之间进行跨层设计。本文对基于竞争的MAC标准IEEE 802.11进行了深入的理论研究,并研究了各种协议层与MAC层之间的紧密耦合,这些协议层的特性已被用来提供QoS和可靠性,并设计了有效的MAC,路由和传输协议。理论结果发现,基于竞争的IEEE 802.11 MAC标准可以很好地支持服务质量,并同时通过调节访问流量来实现最大的总吞吐量。在理论研究的指导下,协议设计展示了各种新颖的跨层设计方法,以及它们在提高无线网络性能方面的巨大好处。与先前针对无线网络中跨层设计方法的研究只关注纯粹的理论研究,或者由于许多不切实际的假设,要么解决起来太复杂,要么所得到的解决方案变得太简单而无法实际应用,本文的理论研究和协议设计基于广泛使用的IEEE 802.11标准,因此可以立即对产品产生影响,并革新人们设计网络系统的方式。

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