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Enabling rapid wireless system composition through layer-2 discovery

机译:通过第2层发现实现快速的无线系统组合

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摘要

Although small mobile computers have processors whose capabilities are increasing, often they still are resource constrained in terms of performing many common computing tasks. Composition is a technique that overcomes this limitation by wirelessly connecting several nearby devices together to share their resources to create a logical platform that is better suited to a given task. However, current standards for ad hoc wireless networks were not designed for this goal, and currently, wireless computers cannot discover services on other devices without first making layer- 3 network connections between them. This requires users to engage in a lengthy and repetitive sequential connection process to find these services on the various computers and is a barrier for effective use. In this article, we quantify the layer-3 discovery overhead for both WiFi and Bluetooth and propose a mechanism to address this problem enabling users to rapidly form ad hoc compositions using a layer-2 service discovery mechanism. To achieve this result, we propose extensions to existing wireless standards by adding service information to beacons that typically are used for device discovery. An architecture is described that also enables legacy service information to be aggregated with additional service descriptions specific to composition and further encoded in layer-2 wireless beacons. Finally, we present measurements of layer-2 discovery implemented using the nascent UWB wireless standard, demonstrating its efficacy for composable systems.
机译:尽管小型移动计算机的处理器能力在不断提高,但是在执行许多常见的计算任务方面,它们经常仍然受到资源的限制。组合是通过将多个附近的设备无线连接在一起以共享其资源以创建更适合给定任务的逻辑平台来克服此限制的技术。但是,当前针对ad hoc无线网络的标准并不是为此目的而设计的,当前,无线计算机无法在其他设备上发现服务,而无需先在它们之间建立第3层网络连接。这就要求用户进行冗长而重复的顺序连接过程,以在各种计算机上找到这些服务,这是有效使用的障碍。在本文中,我们将量化WiFi和蓝牙的第3层发现开销,并提出一种解决此问题的机制,使用户能够使用第2层服务发现机制快速形成即席合成。为了获得此结果,我们建议通过将服务信息添加到通常用于设备发现的信标中来扩展现有无线标准。描述了一种架构,该架构还使得能够将遗留服务信息与特定于合成的附加服务描述进行聚合,并在第二层无线信标中进一步进行编码。最后,我们介绍了使用新生的UWB无线标准实施的第2层发现的测量结果,证明了其对可组合系统的有效性。

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