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首页> 外文期刊>IEEE systems journal >Outage Analysis of Energy-Harvesting-Based Relay-Assisted Random Underlay Cognitive Radio Networks With Multihop Primary Transmissions
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Outage Analysis of Energy-Harvesting-Based Relay-Assisted Random Underlay Cognitive Radio Networks With Multihop Primary Transmissions

机译:具有多跳初级传输的能量收集的中继辅助随机衬砌无线电网络的中断分析

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摘要

This article exploits the recent advances in wireless energy harvesting to develop a framework for the outage probability of energy harvesting underlay cognitive radio networks. In this model, N-hop primary users are equipped with constant energy source while secondary users (SUs) harvest energy from the transmissions of primary devices. The transmit power of secondary users is regulated to ensure that it does not violate the target end-to-end outage probability constraint of the N-hop primary network. Potential relays that have harvested sufficient energy are eligible to relay data for other SUs within the network. Using this model, we reveal the impacts of the number of primary hops on the relay selection region and harvested energy. An expression for the total outage probability that encapsulates the impact of N primary hops is also derived. Moreover, the effects of other relevant parameters on the outage probability are shown in detail.
机译:本文利用了最近的无线能量收集的进步,为能源收集底层认知无线电网络的停电概率开发框架。 在该模型中,N-Hop主用户配备了恒定的能源,而二级用户(SUS)从主设备的传输收获能量。 调节辅助用户的发射功率以确保它不会违反N-Hop主网络的目标端到端中断概率约束。 收获足够能量的潜在继电器有资格在网络内的其他SUS中继数据。 使用此模型,我们揭示了主跳数对继电器选择区域和收获能量的影响。 还导出了封装N原发跳的影响的总停职概率的表达。 此外,详细示出了其他相关参数对中断概率的影响。

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