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Debugging the Internet of Things: A 6L0WPAN/C0AP Testbed Infrastructure

机译:调试物联网:6L0WPAN / C0AP测试平台基础架构

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This paper is based on two fundamental assumptions about a future Internet of Things (IoT): i) The amount of wireless, resource-constrained devices will outnumber the amount of devices in the current internet by several orders of magnitude and ii) those devices will be connected to the Internet over multi-hop wireless links. We argue that the experimental validation in testbeds is imperative to make those networks robust. However, there are only limited means to support researchers in "debugging" the actual communication on the wireless medium and often developers can only guess why their protocols don't work in a given environment. In this paper, we present such a framework which extends the WISEBED testbed federation. Our contribution allows an easy-to-use browser-based experimentation and evaluation of wireless multi-hop protocols in all WISEBED-compatible testbeds (nine testbeds with 1000 sensor nodes and the SmartSantander [17] smart city testbed which will offer up to 20,000 IoT devices). Using a generic packet tracking framework for multiple platforms, researchers can easily detect hotspots and bottlenecks in the network and follow the routes of individual packets as they are forwarded. Experiment configurations can be shared on the web so that experiments can easily be repeated to verify published results. We demonstrate the usability of our approach by means of a real-world use-case.
机译:本文基于有关未来物联网(IoT)的两个基本假设:i)受资源限制的无线设备数量将比当前互联网中的设备数量高几个数量级,并且ii)这些设备将通过多跳无线链接连接到Internet。我们认为,在测试平台上进行实验验证对于使这些网络变得可靠至关重要。但是,只有有限的方法来支持研究人员“调试”无线介质上的实际通信,并且开发人员通常只能猜测为什么他们的协议在给定的环境中不起作用。在本文中,我们提出了一个扩展WISEBED测试平台联盟的框架。我们的贡献使我们能够在所有WISEBED兼容的测试台(九个具有1000个传感器节点的测试台和SmartSantander [17]智能城市测试台,将提供多达20,000个IoT)的基于浏览器的易于使用的实验以及无线多跳协议的评估中进行评估设备)。使用针对多个平台的通用数据包跟踪框架,研究人员可以轻松检测网络中的热点和瓶颈,并在转发单个数据包时跟踪它们的路由。可以在网络上共享实验配置,以便可以轻松地重复实验以验证发布的结果。我们通过一个真实的用例演示了我们方法的可用性。

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