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Stack Architectures and Protocols for Emerging Wireless Networks.

机译:新兴无线网络的堆栈体系结构和协议。

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摘要

Recent devices developed for emerging wireless networks, such as 4G cellular networks, wireless mesh networks, and mobile ad hoc networks, support multiple communication substrates and require execution of multiple protocols within a layer, which cannot be supported efficiently by traditional layered protocol stack approaches. Our goal in this thesis is to discover the minimal set of requirements for simultaneously supporting the use of multiple protocols in the same stack layer without requiring modifications of the protocols and retaining that the modularity of the stack architecture so that future protocols can easily be incorporated.;To achieve this goal, we propose Universal Protocol Stack (UPS), which provides support for the execution of multiple protocols within a layer simultaneously in a modular way through packet-switching, information-sharing, and memory management. The implementation and simulations of UPS show that the overhead incurred to implement UPS is very low, and little or no modifications are required to adapt existing protocols to the UPS framework, yet there is benefit to the application in terms of reduced traffic or reduced delay/energy. As an example, we develop an approach to support multiple radio interfaces by abstracting all the available interfaces using a single virtual interface within the UPS framework. The selection of the specific physical interface to use per packet is done by the virtual interface, thus ensuring that no modifications of the upper layer protocols are required. This provides the opportunity for algorithms at the virtual interface to optimize the selection of the physical interface to improve the network performance. Results from simulations show that the use of a virtual interface is feasible and can improve the network performance.;While new protocol stack architectures are important to support multiple protocols and communication interfaces, efficient protocols are equally important to support emerging networks. We propose a stateless receiver-based multicast protocol, called RBMulticast (Receiver-Based Multicast), which removes the need for costly multicast tree and neighbor table maintenance, yet provides high success rates and low delay. This makes RBMulticast an excellent choice for multicasting in dynamic networks, where state maintenance is costly. Additionally, using the idea of receiver-based routing for convergecast transmissions, we find the duty cycle of a node as a function of its distance to the sink to minimize the expected energy dissipation.
机译:为新兴的无线网络(例如4G蜂窝网络,无线网状网络和移动自组织网络)开发的最新设备支持多个通信基板,并且需要在一个层内执行多个协议,而传统的分层协议栈方法无法有效地支持这些协议。本文的目的是发现在不要求对协议进行修改的情况下,同时支持在同一堆栈层中同时使用多个协议的最低要求集合,并保持堆栈体系结构的模块化,以便将来的协议可以轻松并入。 ;为了实现此目标,我们提出了通用协议栈(UPS),它通过数据包交换,信息共享和内存管理以模块化方式同时支持在一个层中同时执行多个协议。 UPS的实施和仿真表明,实施UPS所产生的开销非常低,并且几乎不需要修改就无需对现有协议进行修改以使其适应UPS框架,但是在减少通信量或减少延迟/能源。例如,我们通过使用UPS框架内的单个虚拟接口抽象所有可用接口,从而开发了一种支持多个无线电接口的方法。每个数据包要使用的特定物理接口的选择由虚拟接口完成,从而确保不需要修改上层协议。这为虚拟接口上的算法提供了机会,以优化物理接口的选择,从而提高网络性能。仿真结果表明,使用虚拟接口是可行的并且可以提高网络性能。虽然新的协议栈体系结构对于支持多种协议和通信接口很重要,但是有效的协议对于支持新兴网络同样重要。我们提出了一种基于无状态接收器的多播协议,称为RBMulticast(基于接收器的多播),它消除了对昂贵的多播树和邻居表维护的需求,但提供了高成功率和低延迟。这使得RBMulticast成为动态网络中状态维护成本很高的多播的绝佳选择。此外,使用基于接收器的路由进行聚合广播传输的思想,我们发现节点的占空比取决于其到接收器的距离,以最大程度地减少预期的能量耗散。

著录项

  • 作者

    Feng, Chen-Hsiang.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Engineering Computer.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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