...
首页> 外文期刊>IEEE Transactions on Communications >Harvesting Devices’ Heterogeneous Energy Profiles and QoS Requirements in IoT: WPT-NOMA vs BAC-NOMA
【24h】

Harvesting Devices’ Heterogeneous Energy Profiles and QoS Requirements in IoT: WPT-NOMA vs BAC-NOMA

机译:收获设备的异构能量型材和IOT的QoS要求:WPT-NOMA与BAC-NOMA

获取原文
获取原文并翻译 | 示例
           

摘要

The next generation Internet of Things (IoT) exhibits a unique feature that IoT devices have different energy profiles and quality of service (QoS) requirements. In this paper, two energy and spectrally efficient transmission strategies, namely wireless power transfer assisted non-orthogonal multiple access (WPT-NOMA) and backscatter communication (Back-Com) assisted NOMA (BAC-NOMA), are proposed by utilizing this feature of IoT and employing spectrum and energy cooperation among the devices. In particular, the use of NOMA ensures that the devices with different QoS requirements can share the same spectrum, and WPT and Back-Com are employed to utilize the cooperation among the devices with different energy profiles, which avoids the use of a dedicated power beacon. Furthermore, for the proposed WPT-NOMA scheme, the application of hybrid successive interference cancelation (SIC) decoding order is also considered, and analytical results are developed to demonstrate that WPT-NOMA can avoid outage probability error floors and realize the full diversity gain. Unlike WPT-NOMA, BAC-NOMA suffers from an outage probability error floor, and the asymptotic behavior of this error floor is analyzed in the paper by applying the extreme value theory. In addition, the effect of a unique feature of BAC-NOMA, i.e., employing one device's signal as the carrier signal for another device, is studied, and its impact on the diversity gain is revealed. Simulation results are also provided to compare the performance of the proposed strategies and verify the developed analytical results.
机译:下一代事物(IOT)展示了IoT设备具有不同的能量配置文件和服务质量(QoS)要求的独特功能。在本文中,通过利用该特征,提出了两个能量和光谱有效的传输策略,即无线电力传输辅助非正交多址(WPT-NOMA)和反向散射通信(BAC-NOMA)物联网和在设备中使用频谱和能量合作。特别地,利用NOMA的使用确保了具有不同QoS要求的设备可以共享相同的频谱,并且WPT和Back-Com用于利用具有不同能量配置文件的设备之间的合作,这避免了专用电源标识的使用。此外,对于所提出的WPT-NOMM方案,还考虑了混合连续的干扰消除(SIC)解码顺序的应用,并开发了分析结果以证明WPT-NOMA可以避免停电概率误差地板并实现全部多样性增益。与WPT-NOMM不同,BAC-NOMA患有停电概率误差底板,通过应用极值理论,在纸上分析了该误差地板的渐近行为。另外,研究了BAC-NOMA的独特特征,即采用一个设备的信号作为另一个设备的载波信号的影响,并揭示了对多样性增益的影响。还提供了仿真结果以比较拟议策略的性能,并验证发达的分析结果。

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