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Energy and throughput efficient cooperative spectrum sensing in cognitive radio sensor networks

机译:认知无线电传感器网络中的能量和吞吐量有效的合作频谱传感

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The sensing-throughput trade-off and the sensing-energy trade-off for cooperative spectrum sensing have been the subject of recent research. Two important, but often conflicting, design objectives for low-power devices are throughput and energy efficiency. These have not been comprehensively investigated jointly in cognitive radio networks for the design of spectrum sensing algorithms. This paper examines the energy-throughput trade-off for cooperative spectrum sensing and formulates an optimisation problem for the trade-off between energy and throughput for secondary users based on spectrum sensing efficiency. The objective is to minimise the energy consumed in spectrum sensing, reporting cooperative decisions to a central entity and data transmission while satisfying reliability constraints and providing a given throughput to secondary users. A heuristic solution is developed that determines the optimal sensing, reporting and transmission duration. Analysis and simulation results reveal the optimal value for sensing, reporting and transmission duration in order to achieve the best trade-off between energy consumption and throughput for secondary users. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:最新研究的主题一直是合作频谱感测的传感折衷和合作频谱传感的传感能量折衷。低功率设备的两个重要但经常相互矛盾的设计目标是吞吐量和能源效率。这些尚未在认知无线电网络中全面研究,以设计频谱传感算法。本文研究了合作频谱传感的能源通量权衡,并根据频谱传感效率为二级用户的能源和吞吐量之间的权衡提出了优化问题。目的是最大程度地减少频谱传感中消耗的能量,向中央实体和数据传输报告合作决策,同时满足可靠性约束并为二级用户提供给定的吞吐量。开发了一种启发式解决方案,该解决方案确定最佳感测,报告和传输持续时间。分析和仿真结果揭示了感应,报告和传输持续时间的最佳价值,以实现二级用户能源消耗和吞吐量之间的最佳权衡。版权(C)2014 John Wiley&Sons,Ltd。

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