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QoS-Aware Energy Management and Node Scheduling Schemes for Sensor Network-Based Surveillance Applications

机译:基于传感器网络的监视应用的QoS感知能量管理和节点调度方案

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Recent advances in wireless technologies have led to an increased deployment of Wireless Sensor Networks (WSNs) for a plethora of diverse surveillance applications such as health, military, and environmental. However, sensor nodes in WSNs usually suffer from short device lifetime due to severe energy constraints and therefore, cannot guarantee to meet the Quality of Service (QoS) needs of various applications. This is proving to be a major hindrance to the widespread adoption of WSNs for such applications. Therefore, to extend the lifetime of WSNs, it is critical to optimize the energy usage in sensor nodes that are often deployed in remote and hostile terrains. To this effect, several energy management schemes have been proposed recently. Node scheduling is one such strategy that can prolong the lifetime of WSNs and also helps to balance the workload among the sensor nodes. In this article, we discuss on the energy management techniques of WSN with a particular emphasis on node scheduling and propose an energy management life-cycle model and an energy conservation pyramid to extend the network lifetime of WSNs. We have provided a detailed classification and evaluation of various node scheduling schemes in terms of their ability to fulfill essential QoS requirements, namely coverage, connectivity, fault tolerance, and security. We considered essential design issues such as network type, deployment pattern, sensing model in the classification process. Furthermore, we have discussed the operational characteristics of schemes with their related merits and demerits. We have compared the efficacy of a few well known graph-based scheduling schemes with suitable performance analysis graph. Finally, we study challenges in designing and implementing node scheduling schemes from a QoS perspective and outline open research problems.
机译:无线技术的最新进展导致无线传感器网络(WSNS)的部署增加,以实现诸如健康,军事和环境的多种不同监视应用。然而,WSN中的传感器节点通常由于严重的能量限制而遭受短设备寿命,因此不能保证满足各种应用的服务质量(QoS)。这证明这是对此类申请的广泛采用WSN的主要障碍。因此,为了延长WSN的寿命,优化通常部署在远程和敌对地形中的传感器节点中的能量使用至关重要。为此,最近提出了几种能源管理计划。节点调度是一种这样的策略,可以延长WSN的使用寿命,并且还有助于平衡传感器节点之间的工作量。在本文中,我们讨论了WSN的特定强调节点调度的能量管理技术,并提出了能量管理生命周期模型和节能金字塔来扩展WSN的网络寿命。我们在满足基本QoS要求的能力方面提供了对各种节点调度方案的详细分类和评估,即覆盖范围,连接,容错和安全性。我们认为在分类过程中的网络类型,部署模式,传感模型等基本设计问题。此外,我们已经讨论了具有相关优点和缺点的计划的操作特征。我们已经将少数众所周知的基于图形的调度方案的功效与合适的性能分析图进行了比较。最后,我们在QoS透视和概述开放研究问题中研究了设计和实施节点调度方案的挑战。

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