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Energy harvesting empowered cognitive metro-cellular networks

机译:能量收集增强了认知城域网络

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Harvesting energy from natural (solar, wind, vibration etc.) and synthesized (microwave power transfer) sources is envisioned as a key enabler for realizing green wireless networks. Energy efficient scheduling is one of the prime objectives of cognitive radio platforms. To that end, in this article, we present a comprehensive analytical framework to characterize the performance of a cognitive metro-cellular network empowered by solar energy harvesting. The proposed model considers both spatial and temporal dynamics of the energy field and the mobile user traffic. Channel uncertainties are also captured in terms of large scale path-loss and small-scale Rayleigh fading. A new metric called ‘energy outage probability’ which characterizes the self-sustainable operation of the base stations under energy harvesting is proposed and quantified. It is shown that the energy outage probability is strongly coupled with the path-loss exponent, required quality-of-service, base station and user density. Moreover, the energy outage probability varies both on daily and yearly basis depending on the solar geoemtry. It is shown that even in winter time BSs can run for 10–15 hours without any purchase of energy from the power grid.
机译:从自然(太阳,风,振动等)和合成(微波功率传输)源中收集能量被设想为实现绿色无线网络的关键推动力。节能调度是认知无线电平台的主要目标之一。为此,在本文中,我们提出了一个综合的分析框架,以表征由太阳能收集支持的认知城域蜂窝网络的性能。提出的模型考虑了能量场的空间和时间动态以及移动用户流量。信道不确定性也可以通过大规模路径损耗和小规模瑞利衰落来捕获。提出并量化了一种称为“能量中断概率”的新指标,该指标表征了基站在能量收集下的自我可持续运行。结果表明,能量中断概率与路径损耗指数,所需的服务质量,基站和用户密度密切相关。此外,能源中断的可能性每天和每年都取决于太阳地质工程。结果表明,即使在冬季,BS也可以运行10-15个小时,而无需从电网购买任何能量。

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