基于代理的互联网接入服务质量连续测量平台

R. Nunes, R. Pereira, R. Valadas, Sandro Parranca
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引用次数: 3

摘要

互联网服务提供商(isp)宣传他们的产品主要集中在最大可实现的吞吐量和价格。然而,许多其他因素会影响用户对良好服务质量(QoS)的看法。在葡萄牙,电信监管机构ANACOM经常进行研究,以评估葡萄牙各互联网服务提供商提供的互联网接入服务的质量。传统上,这些研究是由精心挑选的用户进行的,这些用户在家中使用特殊用途的设备进行测量测试。这种方法使得研究的建立和运行非常昂贵,特别是在农村地区。在本文中,我们解决了大规模的、用户驱动的、在宽带连接(包括无线和有线)上测量互联网访问QoS的问题。我们的解决方案基于三个组件:一个运行在参与者的计算机或智能手机上的软件代理,它代表参与者执行预定的或按需的测量,一个或多个端点执行测量,一个中央服务器收集和处理测量结果,并允许通过Web门户进行远程配置和报告。该代理尽可能报告地理信息,以便进行全国和区域研究。为了验证我们的建议,我们开发了一个包含所有组件的原型,并对其进行了广泛的测试。结果表明,我们的系统能够正常运行,并且可以很好地扩展到大型部署。这项工作是ANACOM目前部署的测量系统的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Agent-based platform for continuous measurement of Internet access quality of service
Internet Service Providers (ISPs) advertise their products focusing mainly on maximum achievable throughput and price. However, many other factors can influence what users perceive as good Quality of Service (QoS). In Portugal, ANACOM, the telecommunications regulator, performs frequent studies to evaluate the quality of the Internet access service offered by the various Portuguese ISPs. Traditionally, these studies have been carried out by resorting to carefully selected users, which run the measurement tests from their homes using special purpose equipment. This methodology makes the studies very expensive to setup and run, especially in rural areas. In this paper, we address the problem of large-scale, user-driven, measurements of the Internet access QoS on broadband connections, both wireless and wired. Our solution is based on three components: a software agent running on the participant's computer or smartphone, which performs scheduled or on demand measurements on its behalf, one or more endpoints against which the measurements are carried out and a central server that collects and processes the measurement results, and allows remote configuration and reporting through a Web portal. The agent reports geographical information whenever possible, enabling both nationwide and regional studies. To validate our proposal we developed a prototype including all components and tested it extensively. The results indicate that our system is able to operate correctly and scales well to large deployments. This work was the basis for the measurement system currently being deployed by ANACOM.
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