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Performance Analysis of Cognitive Transmission in Dual-Cell Environment and its Application to Smart Meter Communications

机译:双小区环境下认知传输的性能分析及其在智能电表通信中的应用

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ZigBee based smart meter communication system may suffer from severe interference from WiFi hot spots. To avoid the interference, smart meter communication systems can adopt a cognitive implementation strategy, while treating the WiFi system as primary user (PU) of the spectrum. In this paper, we investigate the performance of secondary system (SU) operating in an interweave fashion to explore the spectrum opportunities. We consider the scenario that the secondary system is subjected to two independent PUs. Under the assumption of Poison traffic for PU activities, we apply Markov chain model to characterize the dynamics of the spectrum opportunities for both single and multiple channel cases. Based on these models, we derive the exact mathematical expressions for the performance metrics of average service time and average waiting time of SU transmission. Through selected numerical examples, we examine the effect of different operation parameters on SU system performance. The analytical results can be applied to predict the performance of ZigBee based on smart meter communications under strong WiFi interference.
机译:基于ZigBee的智能电表通信系统可能会受到WiFi热点的严重干扰。为了避免干扰,智能仪表通信系统可以采用认知实现策略,同时将WiFi系统视为频谱的主要用户(PU)。在本文中,我们研究了以交织方式运行的二次系统(SU)的性能,以探索频谱机会。我们考虑了辅助系统受两个独立的PU约束的情况。在PU活动有毒物流量的假设下,我们应用马尔可夫链模型来描述单通道和多通道情况下频谱机会的动态。基于这些模型,我们得出SU传输的平均服务时间和平均等待时间的性能指标的精确数学表达式。通过选择数值示例,我们研究了不同操作参数对SU系统性能的影响。分析结果可用于在强WiFi干扰下基于智能电表通信来预测ZigBee的性能。

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