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A Cross-Layer QoS-Aware Communication Framework in Cognitive Radio Sensor Networks for Smart Grid Applications

机译:智能电网应用的认知无线电传感器网络中的跨层QoS感知通信框架

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摘要

Electromagnetic interference, equipment noise, multi-path effects and obstructions in harsh smart grid environments make the quality-of-service (QoS) communication a challenging task for WSN-based smart grid applications. To address these challenges, a cognitive communication based cross-layer framework has been proposed. The proposed framework exploits the emerging cognitive radio technology to mitigate the noisy and congested spectrum bands, yielding reliable and high capacity links for wireless communication in smart grids. To meet the QoS requirements of diverse smart grid applications, it differentiates the traffic flows into different priority classes according to their QoS needs and maintains three dimensional service queues attributing delay, bandwidth and reliability of data. The problem is formulated as a Lyapunov drift optimization with the objective of maximizing the weighted service of the traffic flows belonging to different classes. A suboptimal distributed control algorithm (DCA) is presented to efficiently support QoS through channel control, flow control, scheduling and routing decisions. In particular, the contributions of this paper are three folds; employing dynamic spectrum access to mitigate with the channel impairments, defining multi-attribute priority classes and designing a distributed control algorithm for data delivery that maximizes the network utility under QoS constraints. Performance evaluations in ns-2 reveal that the proposed framework achieves required QoS communication in smart grid.
机译:恶劣的智能电网环境中的电磁干扰,设备噪声,多径效应和障碍物使得服务质量(QoS)通信对于基于WSN的智能电网应用而言是一项艰巨的任务。为了解决这些挑战,已经提出了基于认知通信的跨层框架。所提出的框架利用新兴的认知无线电技术来减轻噪声和拥挤的频谱带,从而为智能电网中的无线通信提供可靠且高容量的链路。为了满足各种智能电网应用的QoS要求,它根据流量的QoS需求将流量分为不同的优先级类别,并维护归因于延迟,带宽和数据可靠性的三维服务队列。该问题被表述为Lyapunov漂移优化,其目的是使属于不同类别的交通流的加权服务最大化。提出了一种次优的分布式控制算法(DCA),以通过通道控制,流控制,调度和路由决策有效地支持QoS。特别是,本文的贡献是三方面的:使用动态频谱访问来缓解信道损伤,定义多属性优先级类别并设计用于数据传递的分布式控制算法,从而在QoS约束下最大化网络效用。 ns-2中的性能评估表明,提出的框架可实现智能电网中所需的QoS通信。

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