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Optimal multi-slot spectrum sensing in energy harvesting cognitive radio systems

机译:能量收集认知无线电系统中的最佳多时隙频谱感知

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In this paper, we consider a cognitive radio (CR) system operating in slotted mode, where the secondary user (SU) has no wired power supplies and is powered exclusively through extracting energy from ambient environment. Due to hardware limitation, the SU can only perform either of energy harvesting, spectrum sensing or data transmission at the same time and we assume that a timeslot is partitioned into three non-overlapping fractions. Considering a generalized multi-slot spectrum sensing paradigm with data fusion rule, we focus on the "saving-sensing-throughput" tradeoff and joint optimization for save-ratio, sensing duration as well as sensing threshold to maximize the SU's expected achievable throughput while keeping primary users (PUs) sufficiently protected. By translating the original optimization problem into a convex one, we show that the optimal solutions for sample number, mini-slot number as well as sensing threshold are non-unique and single-slot spectrum sensing is more practically preferable. We also investigate the impact of system parameters to the optimal sensing strategy.
机译:在本文中,我们考虑了以时隙模式运行的认知无线电(CR)系统,其中次要用户(SU)没有有线电源,并且仅通过从周围环境中提取能量来供电。由于硬件的限制,SU只能同时执行能量收集,频谱感测或数据传输中的任何一个,并且我们假设一个时隙被划分为三个不重叠的部分。考虑到具有数据融合规则的广义多时隙频谱传感范例,我们专注于“节省传感吞吐量”的权衡和联合优化,以实现节省比率,传感持续时间以及传感阈值,以最大程度地提高SU的预期可实现吞吐量,同时保持主要用户(PU)得到充分保护。通过将原始优化问题转化为凸问题,我们表明样本数,小时隙数以及感测阈值的最优解是非唯一的,单时隙频谱感测在实践上更可取。我们还研究了系统参数对最佳传感策略的影响。

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