...
首页> 外文期刊>Physical Communication >Bit and Packet Error Rate evaluations for Half-Cycle stage cooperation on 6G wireless networks
【24h】

Bit and Packet Error Rate evaluations for Half-Cycle stage cooperation on 6G wireless networks

机译:在6G无线网络上的半周期阶段合作的位和数据包错误率评估

获取原文
获取原文并翻译 | 示例
           

摘要

The excellent features of the sixth generation (6G) of wireless technology enthuses researchers to apply advanced and complex techniques on mobile communication networks, which is what this paper explores. As a result of the ability of 6G to exchange vast data rates and network programming, the Cooperative Network Coding (CoNC) technique can be implemented to improve the connectivity and diversity within 6G applications.Though CoNC is usually implemented at the second stage, this paper proposes dividing the first stage into two Half-Cycle stages, and then applying CoNC at the second Half-Cycle stage. The resulting Bit Error Rate (BER) behaviour is investigated on the physical layer for direct data exchange in 6G local mobile networks over an Additive White Gaussian Noise (AWGN) channel. Partial Unit Turbo Code (PUTC) (4,2,1,4) and (8,4,3,8) are used by each mobile node as the forward error correction technique, which means that each mobile acts as a Base Station (BS) for other mobiles in the local network by applying CoNC on the received packets, and then each mobile node (or BS), either Amplify-and-Forward (AF), or Decode-re-encode-amplify and Forward (DF), acts. When full connectivity is not achieved at the end of the first two Half-Cycle stages, new Half-Cycle stage transmissions follow, and the BER behaviour for all additional Half-Cycle stages is obtained. The results illustrate that applying CoNC at the second Half-Cycle stage of the first general stage produces a limited BER loss. To mitigate the damage in the BER, a soft-decision PUMTC decoder is also proposed. (C) 2020 Elsevier B.V. All rights reserved.
机译:六代(6G)的无线技术的优秀特点,研究人员在移动通信网络上应用高级和复杂的技术,这是本文探讨的。由于6G交换巨大数据速率和网络编程的能力,可以实现协作网络编码(CHEC)技术,以提高6G应用内的连接和分集。虽然浓度通常在第二阶段实现,但是本文通常在第二阶段实现提出将第一阶段划分为两个半周期阶段,然后在第二半周期阶段施加仙。在物理层上研究了所得到的误码率(BER)行为,以通过添加白色高斯噪声(AWGN)信道在6G本地移动网络中直接数据交换。每个移动节点使用部分单元涡轮码(PUTC)(4,2,1,4)和(8,4,3,8)作为前向纠错技术,这意味着每个移动充当基站( BS)通过在接收的数据包上应用CONC,然后对每个移动节点(或BS),或者放大(AF)或解码 - 重新编码放大和前进(DF)中的每个移动节点(或BS)中的其他移动设备,行为。当在前两个半周期阶段的末端未实现完全连接时,遵循新的半周期阶段传输,并且获得所有额外的半周期级的BER行为。结果说明了第一通用阶段的第二半周期阶段的施加浓度产生有限的BER损失。为了减轻BER中的损坏,还提出了一种软判决PUMTC解码器。 (c)2020 Elsevier B.v.保留所有权利。

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