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NeTS: Small: Collaborative Research: Studying Internet Interconnections in the Era of Cloud Computing

NeTS: Small: Collaborative Research: Studying Internet Interconnections in the Era of Cloud Computing
NeTS:小型:协作研究:研究云计算时代的互联网互连
批准号:
1717187
负责人:
Bruce Maggs
金额:
$11.63万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-08-01 至 2020-07-31

项目摘要

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中文摘要
翻译
网络或自治系统(AS)对之间的互连图,例如互联网提供商,对于诸如网络研究人员和网络运营商等广泛的各方来说很重要,他们的活动取决于对互联网及其互连的准确看法。众所周知,系统地绘制这些互连是一个出了名的难题。这里,术语‘映射’指的是首先推断互连的存在和类型(例如,公共对等与私有对等),然后将它们地理定位到提供和使用互连的托管设施。最近,“虚拟专用互联”(VPIS)的引入和不断增长的需求对任何这类测绘工作都造成了特别的破坏。VPIS是一种新的互联服务,在一些主要的主机托管设施提供商(如Equinix和CoreSite)已经开始在其主要市场运营的称为“云交换”的新兴基础设施中提供。通过提供VPIS,这些云交易所使传统参与者(例如,使用AS编号运营的网络)以及非传统参与者(例如,不拥有AS编号的企业)能够连接到交易所中存在的任何云提供商,从而使云服务相关流量能够绕过公共互联网。此外,与传统的互联选择不同,VPIS可以通过使用基于网络的门户实时提供。大量非传统互联网参与者以VPIS的形式建立互联的能力,以及这种类型的互联日益动态的性质,使得对当今互联网互联的系统映射变得更加具有挑战性。不仅现有的互联网互连测绘技术不能检测VPIS,而且即使应用于传统类型的互连,其适用性和准确性仍在很大程度上未知。随着越来越多的网络使用云服务,同时使用传统互联和云交换提供的VPIS的情况变得越来越普遍,这就需要一种新的方法来发现这种“混合”连接,研究其动态,并对由当今互联网的“云化”所推动的“服务对服务”连接类型进行首个同类评估。这一研究项目的主要目标是开发这样一种新的方法和设计,并严格评估由此产生的一套新技术和开源工具,用于推断和定位一般的互联,特别是云交换和某些IXP(互联网交换点)的VPIS。作为该项目的一部分,将开发一个在线门户,提供有用的可视化能力,并提供对地球感知的互连地图的大型档案。该项目还将使其他研究小组能够为这一重要的绘图工作做出贡献,鼓励不同研究小组对结果进行交叉验证,并最终制作更准确的互联网互连地图,预计这些地图将为检测潜在的互联网漏洞和性能瓶颈的新方法提供独特的见解。该项目得到了一项教育和推广计划的补充,该计划包括:(I)为新课程和研究生级别的研讨会制定课程,(Ii)硕士和本科生参与拟议的工作(例如,测量、可视化),以及(Iii)组织K-12推广活动,CS学生自愿向当地小学、初中和高中的学生教授基本编程概念,作为课外计划的一部分。
英文摘要
Maps of the interconnections between pairs of networks or Autonomous Systems (ASes), such as Internet providers, are important to a wide range of parties, such as network researchers and network operators, whose activities depend on an accurate view of the Internet and its interconnections. Systematically mapping these interconnections is known to be a notoriously difficult problem. Here, the term 'mapping' refers to first inferring the presence and type of interconnections (e.g., public vs. private peering) and then geolocating them to the colocation facility where the interconnections are provided and utilized. Recently, the introduction of and growing demand for "virtual private interconnections" (VPIs) has been particularly disruptive for any such mapping efforts. VPIs are a new interconnection service that is offered at newly emerging infrastructures called "cloud exchanges" that some of the major colocation facility providers (e.g., Equinix and CoreSite) have started to operate in their major markets. By offering VPIs, these cloud exchanges enable traditional players (e.g., networks operating with an AS number) as well as non-traditional players (e.g., enterprises that do not own an AS number) to connect to any cloud provider that is present at the exchange, thereby enabling cloud-service-related traffic to bypass the public Internet. Moreover, in contrast to the traditional interconnection options, VPIs can be provisioned in real-time via the use of web-based portals. The ability of a large pool of non-traditional Internet players to establish interconnections in the form of VPIs and the increasingly dynamic nature of this type of interconnection have made the systematic mapping of today's Internet interconnections even more challenging. Not only are the existing techniques for mapping Internet interconnections incapable of detecting VPIs, but even when applied to the traditional types of interconnections, their applicability and accuracy remain largely unknown. As more networks utilize cloud services, the concurrent use of traditional interconnections and cloud-exchange-provided VPIs is becoming more common and requires a new approach for discovering this 'hybrid' connectivity, studying its dynamics, and providing a first-of-its-kind assessment of the type of 'service-to-service' connectivity that is fueled by the 'cloudification' of today's Internet. The main goal of this research project is to develop such a new approach and design and rigorously evaluate the resulting suite of new techniques and open-source tools for inferring and geolocating interconnections in general, and VPIs at both cloud exchanges and certain IXPs (Internet eXchange Points), in particular. An online portal that offers useful visualization capabilities and provides access to a large archive of geo-aware interconnection maps will be developed as part of this project. The project will also enable other research groups to contribute to this important mapping effort, encourage the cross-validation of results by different research groups, and ultimately produce more accurate maps of the Internet's interconnections that can be expected to offer unique insights into new ways of detecting potential Internet vulnerabilities and performance bottlenecks. The project is complemented by an education and outreach plan that includes (i) the development of a curriculum for a new course and graduate level seminars, (ii) the participation of Masters level and undergraduate students in the proposed work (e.g., measurement, visualization), and (iii) the organization of a K-12 outreach activity where CS students volunteer to teach basic programming concepts to students at local elementary, middle, and high schools as part of after-school programs.
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