DYAMAND: DYnamic, Adaptive MAnagement of Networks and Devices

J. Nelis, Tom Verschueren, D. Verslype, Chris Develder
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引用次数: 21

Abstract

Consumer devices increasingly are “smart” and hence offer services that can interwork with and/or be controlled by others. However, the full exploitation of the inherent opportunities this offers, is hurdled by a number of potential limitations. First of all, the interface towards the device might be vendor and even device specific, implying that extra effort is needed to support a specific device. Standardization efforts try to avoid this problem, but within a certain standard ecosystem the level of interoperability can vary (i.e. devices carrying the same standard logo are not necessarily interoperable). Secondly, different application domains (e.g. multimedia vs. energy management) today have their own standards, thus limiting trans-sector innovation because of the additional effort required to integrate devices from traditionally different domains into novel applications. In this paper, we discuss the basic components of current so-called service discovery protocols (SDPs) and present our DYAMAND (DYnamic, Adaptive MAnagement of Networks and Devices) framework. We position this framework as a middleware layer between applications and discoverable/controllable devices, and hence aim to provide the necessary tool to overcome the (intra- and inter-domain) interoperability gaps previously sketched. Thus, we believe it can act as a catalyst enabling transsector innovation.
动态的,自适应的网络和设备管理
消费设备越来越“智能”,因此提供的服务可以与他人交互和/或由他人控制。然而,充分利用这方面提供的固有机会受到一些潜在限制的阻碍。首先,设备的接口可能是供应商的,甚至是特定于设备的,这意味着需要额外的努力来支持特定的设备。标准化努力试图避免这个问题,但是在一个特定的标准生态系统中,互操作性的水平可能会有所不同(例如,带有相同标准徽标的设备不一定是可互操作的)。其次,今天不同的应用领域(例如多媒体与能源管理)有自己的标准,因此限制了跨部门的创新,因为将传统不同领域的设备集成到新应用中需要额外的努力。在本文中,我们讨论了当前所谓的服务发现协议(sdp)的基本组件,并提出了我们的DYAMAND(动态,自适应管理的网络和设备)框架。我们将此框架定位为应用程序和可发现/可控设备之间的中间件层,因此旨在提供必要的工具来克服前面概述的(域内和域间)互操作性差距。因此,我们相信它可以作为跨部门创新的催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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