首页> 外文期刊>IEEE Transactions on Cognitive Communications and Networking >Hybrid Energy Harvesting-Based Cooperative Spectrum Sensing and Access in Heterogeneous Cognitive Radio Networks
【24h】

Hybrid Energy Harvesting-Based Cooperative Spectrum Sensing and Access in Heterogeneous Cognitive Radio Networks

机译:异构认知无线电网络中基于混合能量收集的协作频谱感知和访问

获取原文
获取原文并翻译 | 示例

摘要

In order to design energy efficient and energy harvesting (EEH) cooperative spectrum sensing (EEH-CSS), four fundamental constraints must be considered: 1) collision constraint to protect primary users from the collision with secondary users (SUs); 2) energy-causality constraint which states that the energy harvested by a time instant must be greater than or equal to the consumed energy until that time instant; 3) energy half-duplex (EHD) constraint which prevents the batteries from charging and discharging at the same time; and 4) correlation constraint which limits the information about the primary channel (PC) state of next time slot can be extracted from the current PC state. In this regard, we consider a hybrid energy harvesting SU (EH-SU) model which can harvest energy from both renewable sources, e.g., solar and ambient radio frequency signals. A heterogeneous EEH-CSS scheme is first proposed to handle EH-SUs with nonidentical harvesting, sensing, and reporting characteristics by permitting them to sense and report at different sensing accuracy. Formulating the energy state evolution of EH-SUs with and without EHD constraint, we analyze the asymptotic activity behavior of a single EH-SU by deriving the theoretical upper bound for the chance of being active to sense and transmit. Thereafter, we develop a convex framework to find maximum achievable total throughput by optimizing the asymptotic active probability, sensing duration, and detection threshold of each SU subject to above constraints. Given a potential set of SUs, determining the optimal subset of cooperating EH-SUs is of the essence to achieve maximum achievable total throughput. Since EH-SU selection is inherently a combinatorial problem, a fast yet high performance solution is proposed based on SUs’ energy harvesting, sensing, and reporting attributes. Finally, a myopic access procedure is developed to determine the active set of EH-SUs given the best subset of SUs.
机译:为了设计节能和能量收集(EEH)协作频谱感应(EEH-CSS),必须考虑四个基本约束:1)冲突约束,以保护主要用户免受与次要用户(SU)的冲突; 2)能量因果关系约束条件,该条件约束条件是某个时刻收集的能量必须大于或等于该时刻之前消耗的能量; 3)能量半双工(EHD)约束,防止电池同时充电和放电; 4)可以从当前的PC状态中提取限制下一个时隙的主信道(PC)状态信息的相关约束。在这方面,我们考虑一种混合能量收集SU(EH-SU)模型,该模型可以从可再生资源(例如太阳能和环境射频信号)中收集能量。首先提出一种异构EEH-CSS方案,通过允许EH-SU以不同的传感精度进行传感和报告,从而处理具有不相同的采集,传感和报告特性的EH-SU。在有和没有EHD约束的情况下,公式化EH-SU的能量状态演化,我们通过得出理论上的激活和感知传递机会的上限来分析单个EH-SU的渐近活动行为。此后,我们开发了一个凸框架,通过优化受上述约束的每个SU的渐近活动概率,感测持续时间和检测阈值,来找到最大可实现的总吞吐量。给定一个可能的SU集,确定协作EH-SU的最佳子集对于实现最大可实现的总吞吐量至关重要。由于EH-SU选择本质上是一个组合问题,因此,基于SU的能量收集,传感和报告属性,提出了一种快速而高性能的解决方案。最后,开发了近视访问程序,以确定给定SU最佳子集的EH-SU的活动集。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号