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Unified Channel Management for Cognitive Radio Sensor Networks Aided Internet of Things

机译:认知无线电传感器网络辅助物联网的统一通道管理

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摘要

Cognitive capabilities are indispensable for the Internet of Things (IoT) not only to equip them with learning, thinking, and decision-making capabilities but also to cater to their unprecedented huge spectrum requirements due to their gigantic numbers and heterogeneity. Therefore, in this paper, a novel unified channel management framework (CMF) is introduced for cognitive radio sensor networks (CRSNs), which comprises an (1) opportunity detector (ODR), (2) opportunity scheduler (OSR), and (3) opportunity ranker (ORR) to specifically address the immense and diverse spectrum requirements of CRSN-aided IoT. The unified CMF is unique for its type as it covers all three angles of spectrum management. The ODR is a double threshold based multichannel spectrum sensor that allows an IoT device to concurrently sense multiple channels to maximize spectrum opportunities. OSR is an integer linear programming (ILP) based channel allocation mechanism that assigns channels to heterogeneous IoT devices based on their minimal quality of service (QoS) requirements. ORR collects feedback from IoT devices about their transmission experience and generates special channel-sensing order (CSO) for each IoT device based on the data rate and idle-time probabilities. The simulation results demonstrate that the proposed CMF outperforms the existing ones in terms of collision probability, detection probability, blocking probability, idle-time probability, and data rate.
机译:认知功能对于物联网(IoT)来说是必不可少的,不仅使他们具备学习,思考和决策的能力,而且由于其巨大的数量和异构性,还可以满足其前所未有的巨大频谱需求。因此,在本文中,针对认知无线电传感器网络(CRSN)引入了一种新颖的统一信道管理框架(CMF),该框架包括(1)机会检测器(ODR),(2)机会调度器(OSR)和(3)机会排名(ORR),专门解决CRSN辅助物联网的巨大且多样化的频谱需求。统一的CMF具有独特的类型,因为它涵盖了频谱管理的所有三个角度。 ODR是基于双阈值的多通道频谱传感器,允许IoT设备同时检测多个通道,以最大程度地利用频谱。 OSR是基于整数线性规划(ILP)的信道分配机制,可根据其最小服务质量(QoS)要求将信道分配给异构IoT设备。 ORR收集来自IoT设备的传输体验反馈,并根据数据速率和空闲时间概率为每个IoT设备生成特殊的信道感知命令(CSO)。仿真结果表明,所提出的CMF在碰撞概率,检测概率,阻塞概率,空闲时间概率和数据速率方面均优于现有的CMF。

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