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A Survey on Radio Resource Allocation in Cognitive Radio Sensor Networks

机译:认知无线电传感器网络中无线电资源分配的调查

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摘要

Wireless sensor networks (WSNs) use the unlicensed industrial, scientific, and medical (ISM) band for transmissions. However, with the increasing usage and demand of these networks, the currently available ISM band does not suffice for their transmissions. This spectrum insufficiency problem has been overcome by incorporating the opportunistic spectrum access capability of cognitive radio (CR) into the existing WSN, thus giving birth to CR sensor networks (CRSNs). The sensor nodes in CRSNs depend on power sources that have limited power supply capabilities. Therefore, advanced and intelligent radio resource allocation schemes are very essential to perform dynamic and efficient spectrum allocation among sensor nodes and to optimize the energy consumption of each individual node in the network. Radio resource allocation schemes aim to ensure QoS guarantee, maximize the network lifetime, reduce the internode and internetwork interferences, etc. In this paper, we present a survey of the recent advances in radio resource allocation in CRSNs. Radio resource allocation schemes in CRSNs are classified into three major categories, i.e., centralized, cluster-based, and distributed. The schemes are further divided into several classes on the basis of performance optimization criteria that include energy efficiency, throughput maximization, QoS assurance, interference avoidance, fairness and priority consideration, and hand-off reduction. An insight into the related issues and challenges is provided, and future research directions are clearly identified.
机译:无线传感器网络(WSN)使用未经许可的工业,科学和医学(ISM)频段进行传输。但是,随着这些网络的使用和需求的增加,当前可用的ISM频段不足以进行传输。通过将认知无线电(CR)的机会频谱访问功能合并到现有的WSN中,克服了这种频谱不足的问题,从而催生了CR传感器网络(CRSN)。 CRSN中的传感器节点取决于电源能力有限的电源。因此,先进和智能的无线电资源分配方案对于在传感器节点之间执行动态和有效的频谱分配以及优化网络中每个单独节点的能耗至关重要。无线电资源分配方案旨在确保QoS保证,最大化网络寿命,减少节点间和互联网络干扰等。在本文中,我们对CRSN中无线电资源分配的最新进展进行了概述。 CRSN中的无线电资源分配方案被分为三个主要类别,即集中式,基于集群和分布式。在性能优化标准的基础上,该方案又分为几类,包括能效,吞吐量最大化,QoS保证,避免干扰,公平和优先考虑以及减少切换。提供了对相关问题和挑战的见解,并明确了未来的研究方向。

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