NRT: ORBIT: Open-Access Research Testbed for Next-Generation Wireless Networks
NRT: ORBIT: Open-Access Research Testbed for Next-Generation Wireless Networks
批准号:
0335244
负责人:
Dipankar Raychaudhuri
金额:
$545.31万
依托单位国家:
美国
项目类别:
Cooperative Agreement
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-01 至 2008-08-31
中文摘要
这项合作研究计划的重点是建立一个大规模的无线网络测试平台,这将有助于对下一代协议和应用概念进行广泛的实验研究。人们认识到,便携式计算和通信的强大技术和市场趋势意味着无线接入在下一代互联网中的作用日益重要。与此同时,新的传感器和普适计算应用有望推动通过新型短程无线网络互连的嵌入式计算设备的大规模部署。无线网络领域的技术创新速度可以通过开发一个灵活的、开放访问的无线网络测试平台来显著提高,该测试平台可以由整个网络社区的实验研究人员共享。(下一代无线网络开放存取研究测试平台)系统是一个双层实验室仿真器/现场试验网络测试平台,旨在实现实验的可重复性,同时还支持在真实世界环境中对协议和应用的评估。特别是,基于实验室的无线网络仿真器将使用一种新的方法,涉及一个大的二维网格的静态和移动的802.11x无线电节点,可以动态互连到指定的拓扑结构与可再生的无线信道模型。系统中的所有无线电设备提供开放的API,其允许终端用户下载无线电链路、MAC和网络层协议以构建特定的联网场景。一旦基本协议或应用概念在实验室仿真器平台上得到验证,用户就可以将其实验迁移到现场测试网络,该网络在真实环境中提供高速蜂窝(3G)和802.11x无线接入的可配置组合。将提供广泛的测量工具,以支持研究评估,包括网络流量和无线电链路/频谱使用方面,除了开发ORBIT无线试验台基础设施外,该项目还包括一套全面的“实验工作包”,旨在产生设计要求,并作为正在开发的系统的最终用户应用驱动程序。具体的研究课题将涵盖在这个项目的过程中:1。802.11x WLAN场景中的Ad hoc网络[Raychaudhuri,Seskar; Rutgers Acharya; IBM]2.基于消息的多媒体交付[Schulzrinne,哥伦比亚;耶茨,罗格斯]3.移动的信息服务的基于XML的内容组播[Ott,Raychaudhuri; Rutgers]4.基于位置的移动的网络服务[Schulzrinne;哥伦比亚]5.传感器网络的普适计算软件模型[Parashar,Zhang; Rutgers]6.下一代无线网络的安全协议[小林;普林斯顿特拉普;罗格斯]7.智能网络中间件(INM)的移动的服务[保罗;朗讯贝尔实验室]8.用于VoIP和IM的对等基础设施[Acharya,Saha; IBM Research]9.向便携式平台提供功率/带宽高效的媒体传输[Ramaswamy,Wang; Thomson R D]该项目将作为纽约/新泽西州地区的几个大学研究小组之间的合作努力进行:罗格斯大学、哥伦比亚大学和普林斯顿大学,沿着还有工业合作伙伴朗讯贝尔实验室、IBM研究院和Thomson。无线网络测试平台将由罗格斯大学WINLAB开发和运营,使用位于罗格斯新玩法校区和该地区合作伙伴站点的设施。该试验台将可供全国其他研究小组远程或现场访问,但须遵守NSF的使用指南。在该计划的过程中,将寻求更多的合作伙伴,用于测试平台基础设施的开发和研究合作。拟议项目的科学/技术优点是:推进灵活和可扩展的无线网络测试平台的设计和实施的最新技术,以及下一代无线网络的新架构,协议和服务概念的实验研究。更广泛的影响是通过为研究界提供一个共享使用的实验平台,加速无线网络的研发周期,并促进在研究和教学中更多地使用实验方法。
英文摘要
This collaborative research proposal is focused on the creation of a large-scale wireless network testbed which will facilitate a broad range of experimental research on next-generation protocols and application concepts. It is recognized that powerful technology and market trends towards portable computing and communication imply an increasingly important role for wireless access in the next-generation Internet. At the same time, new sensor and pervasive computing applications are expected to drive large-scale deployments of embedded computing devices interconnected via new types of short-range wireless networks. The speed of technology innovation in the wireless networking field can be significantly increased with the development of a flexible, open-access wireless network testbed that can be shared by experimental researchers across the networking community.The proposed ORBIT (Open Access Research Testbed for Next-Generation Wireless Networks) system is a two-tier laboratory emulator/field trial network testbed designed to achieve reproducibility of experimentation, while also supporting evaluation of protocols and applications in real-world settings. In particular, the laboratory-based wireless network emulator will be constructed using a novel approach involving a large two-dimensional grid of static and mobile 802.11x radio nodes which can be dynamically interconnected into specified topologies with reproducible wireless channel models. All radio devices in the system provide open API's that permit end-users to download radio link, MAC and network layer protocols to construct a specific networking scenario. Once the basic protocol or application concepts have been validated on the lab emulator platform, users can migrate their experiments to the field test network which provides a configurable mix of both high-speed cellular (3G) and 802.11x wireless access in a real-world setting. Extensive measurement tools will be provided to support research evaluation, including both network traffic and radio link/spectrum usage aspects.In addition to the development of the ORBIT wireless testbed infrastructure, this project includes a comprehensive set of "experimental work packages" intended to generate design requirements and serve as end-user application drivers for the system being developed. Specific research topics to be covered during the course of this project are:1. Ad hoc networking in 802.11x WLAN scenarios [Raychaudhuri, Seskar; Rutgers & Acharya; IBM]2. Message-based multimedia delivery [Schulzrinne, Columbia; Yates, Rutgers]3. XML-based content multicasting for mobile information services [Ott, Raychaudhuri; Rutgers]4. Location-based mobile network services [Schulzrinne; Columbia]5. Pervasive computing software models for sensor networks [Parashar, Zhang; Rutgers]6. Security protocols for next-generation wireless networks [Kobayashi; Princeton & Trappe; Rutgers]7. Intelligent network middleware (INM) for mobile services [Paul; Lucent Bell Labs]8. Peer-to-peer infrastructure for VoIP and IM [Acharya, Saha; IBM Research]9. Power/bandwidth efficient media delivery to portable platforms [Ramaswamy, Wang; Thomson R&D]The project will be conducted as a collaborative effort between several university research groups in the NY/NJ region: Rutgers, Columbia, and Princeton, along with industrial partners Lucent Bell Labs, IBM Research and Thomson. The wireless network testbed will be developed and operated by Rutgers WINLAB, using facilities located at the Rutgers New Brunswick campus and at partner sites in the area. The testbed will be available for remote or on-site access by other research groups nationally, subject to NSF guidelines for use. Additional partners will be sought during the course of the program both for testbed infrastructure development and for research collaboration.The scientific/technical merits of the proposed project are: advancing the state-of-the-art in design andimplementation of flexible and scalable wireless network testbeds, and experimental investigation of novelarchitectures, protocols and service concepts for next-generation wireless networks. Broader impacts are inacceleration of the R & D cycle for wireless networking by providing the research community with a shared-use experimental platform, and in fostering increased use of experimental methods in both research and teaching.
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