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Efficient allocation of resources in multiple heterogeneous Wireless Sensor Networks

机译:在多个异构无线传感器网络中高效分配资源

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摘要

Wireless Sensor Networks (WSNs) are useful for a wide range of applications, from different domains. Recently, new features and design trends have emerged in the WSN field, making those networks appealing not only to the scientific community but also to the industry. One such trend is the running different applications on heterogeneous sensor nodes deployed in multiple WSNs in order to better exploit the expensive physical network infrastructure. Another trend deals with the capability of accessing sensor generated data from the Web, fitting WSNs in novel paradigms of Internet of Things (loT) and Web of Things (WoT). Using well-known and broadly accepted Web standards and protocols enables the interoperation of heterogeneous WSNs and the integration of their data with other Web resources, in order to provide the final user with value-added information and applications. Such emergent scenarios where multiple networks and applications interoperate to meet high level requirements of the user will pose several changes in the design and execution of WSN systems. One of these challenges regards the fact that applications will probably compete for the resources offered by the underlying sensor nodes through the Web. Thus, it is crucial to design mechanisms that effectively and dynamically coordinate the sharing of the available resources to optimize resource utilization while meeting application requirements. However, it is likely that Quality of Service (QoS) requirements of different applications cannot be simultaneously met, while efficiently sharing the scarce networks resources, thus bringing the need of managing an inherent tradeoff. In this paper, we argue that a middleware platform is required to manage heterogeneous WSNs and efficiently share their resources while satisfying user needs in the emergent scenarios of WoT. Such middleware should provide several services to control running application as well as to distribute and coordinate nodes in the execution of submitted sensing tasks in an energy-efficient and QoS-enabled way. As part of the middleware provided services we present the Resource Allocation in Heterogeneous WSNs (SACHSEN) algorithm. SACHSEN is a new resource allocation heuristic for systems composed of heterogeneous WSNs that effectively deals with the tradeoff between possibly conflicting QoS requirements and exploits heterogeneity of multiple WSNs.
机译:无线传感器网络(WSN)可用于来自不同域的广泛应用。最近,WSN领域中出现了新的功能和设计趋势,这使得这些网络不仅吸引了科学界,而且也吸引了业界。一种趋势是在部署在多个WSN中的异构传感器节点上运行不同的应用程序,以便更好地利用昂贵的物理网络基础结构。另一个趋势涉及从Web访问传感器生成的数据的能力,从而使WSN适应物联网(loT)和物联网(WoT)的新颖范例。使用众所周知且广为接受的Web标准和协议可以实现异构WSN的互操作以及它们的数据与其他Web资源的集成,从而为最终用户提供增值信息和应用程序。多个网络和应用程序互操作以满足用户的高级要求的这种新兴场景将在WSN系统的设计和执行中带来一些变化。这些挑战之一涉及以下事实:应用程序可能会通过Web争夺底层传感器节点提供的资源。因此,至关重要的是设计一种机制,该机制可以有效且动态地协调可用资源的共享,以在满足应用程序要求的同时优化资源利用率。但是,可能无法同时满足不同应用程序的服务质量(QoS)要求,同时又无法有效共享稀缺的网络资源,从而带来了管理固有折衷的需求。在本文中,我们认为需要一个中间件平台来管理异构WSN并有效共享它们的资源,同时在WoT的新兴场景中满足用户需求。这样的中间件应该提供几种服务,以控制运行中的应用程序,以及以节能和启用QoS的方式在提交的传感任务的执行中分布和协调节点。作为中间件提供的服务的一部分,我们提出了异构WSN(SACHSEN)算法中的资源分配。 SACHSEN是一种用于由异构WSN组成的系统的新资源分配试探法,它可以有效处理可能冲突的QoS要求之间的折衷,并利用多个WSN的异构性。

著录项

  • 来源
    《Journal of Parallel and Distributed Computing》 |2014年第1期|1775-1788|共14页
  • 作者单位

    Centre for Distributed and High Performance Computing, School of Information Technologies, The University of Sydney, NSW 2006, Australia;

    DCC/IM, Federal University of Rio de Janeiro, RJ 20001-970, Brazil;

    DCC/IM, Federal University of Rio de Janeiro, RJ 20001-970, Brazil;

    Centre for Distributed and High Performance Computing, School of Information Technologies, The University of Sydney, NSW 2006, Australia;

    Centre for Distributed and High Performance Computing, School of Information Technologies, The University of Sydney, NSW 2006, Australia;

    DCC/IM, Federal University of Rio de Janeiro, RJ 20001-970, Brazil;

    DCC/IM, Federal University of Rio de Janeiro, RJ 20001-970, Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wireless sensor network; Resource allocation; Task allocation;

    机译:无线传感器网络;资源分配;任务分配;

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