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首页> 外文期刊>Procedia Computer Science >Multiple Peer Chord Rings Approach for Device Discovery in IoT Environment
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Multiple Peer Chord Rings Approach for Device Discovery in IoT Environment

机译:物联网环境中设备发现的多对等弦环方法

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摘要

Recently, with the advances of information and electrical technologies, Internet of Thing (IoT) has moved from being a far vision to an increasing market reality. IoT promises to connect all physical “things” via a dynamic global network infrastructure and create intelligent behaviors in different contexts without human manipulations. In line with this development, the number of IoT solutions also have augmented exponentially covering many domains from health care, urban management to life quality improvement and so forth. However, separate appearances of these solutions today has led to barriers in enlarging smart environments because they lack a mechanism for integration. It is well-known that in the very near future, IoT requires the capabilities of high scale and dynamic adaptation with linking many new and existing smart contexts together. Hence, the need of having a comprehensive management method for the large-scale IoT environments is urgent at the time. In this paper, we focus on designing an overlay management architecture based on Chord algorithm to manage things in heterogeneous space. The architecture is a collection of multiple peer Chord rings, and thus each of these rings is considered as a smart context. We also bring forward operation mechanisms for the architecture such as thing identification, key insert/remove, key lookup and node joining/leave. Our proposed architecture is simulated and evaluated with diverse properties. The gained results showed the feasibility of our approach in reality meeting scalability, robustness and maintainability requirements applying to manage and control cyber-physical systems.
机译:最近,随着信息和电气技术的发展,物联网(IoT)已从遥远的愿景转变为日益增长的市场现实。物联网承诺通过动态的全球网络基础架构连接所有物理“物”,并在不需人工干预的情况下在不同的环境中创建智能行为。随着这一发展,IoT解决方案的数量也呈指数增长,覆盖了从医疗保健,城市管理到生活质量改善等许多领域。但是,由于这些解决方案缺乏集成机制,因此如今这些解决方案的单独出现已导致扩大智能环境的障碍。众所周知,在不久的将来,物联网需要将许多新的和现有的智能环境链接在一起的大规模和动态适应能力。因此,当时迫切需要针对大规模物联网环境的综合管理方法。在本文中,我们专注于设计基于Chord算法的覆盖管理体系结构来管理异构空间中的事物。该体系结构是多个对等Chord环的集合,因此,这些环中的每一个都被视为智能上下文。我们还提出了体系结构的操作机制,例如事物识别,密钥插入/删除,密钥查找和节点加入/离开。我们提出的体系结构经过仿真和评估,具有多种属性。获得的结果表明,在满足可扩展性,健壮性和可维护性要求(适用于管理和控制网络物理系统)方面,我们的方法可行。

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