首页> 外文期刊>Quality Control, Transactions >Impact of Relay Location of STANC Bi-Directional Transmission for Future Autonomous Internet of Things Applications
【24h】

Impact of Relay Location of STANC Bi-Directional Transmission for Future Autonomous Internet of Things Applications

机译:Stanc双向传输中继位置对未来自主互联网的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Wireless communication using existing coding models poses several challenges for RF signals due to multipath scattering, rapid fluctuations in signal strength and path loss effect. Unlike existing works, this study presents a novel coding technique based on Analogue Network Coding (ANC) in conjunction with Space Time Block Coding (STBC), termed as Space Time Analogue Network Coding (STANC). STANC achieves the transmitting diversity (virtual MIMO) and supports big data networks under low transmitting power conditions. Furthermore, this study evaluates the impact of relay location on smart devices network performance in increasing interfering and scattering environments. The performance of STANC is analyzed for Internet of Things (IoT) applications in terms of Symbol Error Rate (SER) and the outage probability that are calculated using analytical derivation of expression for Moment Generating Function (MGF). In addition, the ergodic capacity is analyzed using mean and second moment. These expressions enable effective evaluation of the performance and capacity under different relay location scenario. Different fading models are used to evaluate the effect of multipath scattering and strong signal reflection. Under such unfavourable environments, the performance of STANC outperforms the conventional methods such as physical layer network coding (PNC) and ANC adopted for two way transmission.
机译:由于多径散射,使用现有编码模型的无线通信对RF信号构成了几个挑战,信号强度和路径损耗效果的快速波动。与现有工作不同,本研究介绍了一种基于模拟网络编码(ANC)的新型编码技术,与空间时间块编码(STBC)结合,称为空间时间模拟网络编码(Stanc)。 Stanc实现了发射分集(虚拟MIMO)并在低发射功率条件下支持大数据网络。此外,该研究评估了中继位置对越来越多的干扰和散射环境中的智能设备网络性能的影响。在符号错误率(SER)和使用Dights Modering Function(MGF)的分析推导(MGF)计算的情况下,分析Stanc的互联网(SER)和停电概率来分析State的性能。此外,使用平均值和第二时刻分析遍历能力。这些表达式可以有效地评估不同继电器位置方案下的性能和容量。不同的衰落模型用于评估多径散射和强信号反射的效果。在这种不利的环境下,Stanc的性能优于传统方法,例如物理层网络编码(PNC)和ACC用于双向传输。

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