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Dynamic spectrum allocation under cognitive cell network for M2M applications

机译:用于M2M应用的认知细胞网络下的动态频谱分配

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In machine-to-machine (M2M) communication, smart spectrum management is vital for the system performance since there are a large number of wireless devices sharing the same limited spectrum and the spectrum resource is scarce. For the spectrum sharing, it's not only encountered in ISM band, but also in the networks with dedicated spectrums when the network is under evolution or upgrading, such as the system updating from narrow-band to broadband in SmartGrid communications. In this paper, we summarize the typical methods in wireless cellular network to improve the spectrum utilization and compare their advantages and limitations as applied to M2M communications. Based on the analysis, we propose a novel mechanism for dynamic spectrum allocation in a cognitive radio environment for SmartGrid applications using OFDMA technology and give some evaluations based on field test data. The spectrum allocation we proposed can be divided into two stages: network entry stage based on initial sensing and dynamic interference avoidance stage based on periodical sensing. At the network entry stage, we focus the discussion on the design of optimal spectrum auto planning algorithm and provide a new scheme based on backup list generation and internal/external interference differentiation. After the OFDMA based system enters into normal communication stage, interference avoidance within the allocated spectrum band is the main task of the M2M system. The in-band spectrum will be segmented into several sub-bands and be scheduled by the system based on periodical spectrum sensing results to avoid interferences coming from external devices(SCADA or unknown system) which share the same spectrum with the current system. The spectrum allocation mechanism we proposed has been used in IBM Wireless Internet-of-Thing (IoT) platform and achieved good performance during the field test.
机译:在机对机(M2M)通信中,智能频谱管理对于系统性能至关重要,因为存在大量共享相同有限频谱的无线设备,而且频谱资源稀缺。对于频谱共享,它不仅在ISM频段中遇到,而且在网络正在演进或升级时(例如在SmartGrid通信中从窄带更新为宽带的系统中),在具有专用频谱的网络中也会遇到。在本文中,我们总结了无线蜂窝网络中提高频谱利用率的典型方法,并比较了它们在M2M通信中的优势和局限性。在此基础上,我们提出了一种新的机制,该机制可在基于OFDMA技术的SmartGrid应用的认知无线电环境中实现动态频谱分配,并根据现场测试数据进行一些评估。我们提出的频谱分配可以分为两个阶段:基于初始感知的网络进入阶段和基于周期性感知的动态避免干扰阶段。在网络进入阶段,我们将讨论重点放在最佳频谱自动规划算法的设计上,并提供一种基于备份列表生成和内部/外部干扰区分的新方案。在基于OFDMA的系统进入正常通信阶段之后,在分配的频谱带内避免干扰是M2M系统的主要任务。带内频谱将被分成几个子带,并由系统根据定期频谱感测结果进行调度,以避免来自与当前系统共享相同频谱的外部设备(SCADA或未知系统)产生的干扰。我们提出的频谱分配机制已在IBM无线物联网(IoT)平台中使用,并在现场测试中取得了良好的性能。

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