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Optimization of Cognitive Radio Secondary Information Gathering Station Positioning and Operating Channel Selection for IoT Sensor Networks

机译:IoT传感器网络认知无线电辅助信息收集站的位置和操作通道选择的优化

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The Internet of Things (IoT) is the interconnection of different objects through the internet using different communication technologies. The objects are equipped with sensors and communications modules. The cognitive radio network is a key technique for the IoT and can effectively address spectrum-related issues for IoT applications. In our paper, a novel method for IoT sensor networks is proposed to obtain the optimal positions of secondary information gathering stations (SIGSs) and to select the optimal operating channel. Our objective is to maximize secondary system capacity while protecting the primary system. In addition, we propose an appearance probability matrix for secondary IoT devices (SIDs) to maximize the supportable number of SIDs that can be installed in a car, in wearable devices, or for other monitoring devices, based on optimal deployment and probability. We derive fitness functions based on the above objectives and also consider signal to interference-plus-noise ratio (SINR) and position constraints. The particle swarm optimization (PSO) technique is used to find the best position and operating channel for the SIGSs. In a simulation study, the performance of the proposed method is evaluated and compared with a random resources allocation algorithm (parts of this paper were presented at the ICTC2017 conference (Wen et al., 2017)).
机译:物联网(IoT)是使用不同的通信技术通过互联网实现不同对象的互连。这些对象配备有传感器和通讯模块。认知无线电网络是物联网的一项关键技术,可以有效地解决物联网应用中与频谱相关的问题。在本文中,提出了一种新的物联网传感器网络方法,以获取二次信息收集站(SIGS)的最佳位置并选择最佳操作通道。我们的目标是在保护主系统的同时最大化辅助系统的容量。此外,我们基于最佳部署和概率,为辅助物联网设备(SID)提出了一个出现概率矩阵,以最大化可安装在汽车,可穿戴设备或其他监视设备中的SID的可支持数量。我们基于上述目标推导出适应度函数,并考虑信噪比(SINR)和位置约束。粒子群优化(PSO)技术用于为SIGS查找最佳位置和操作通道。在仿真研究中,对所提出方法的性能进行了评估,并与随机资源分配算法进行了比较(本文的部分内容在ICTC2017大会上发表(Wen等人,2017))。

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