Examination of the fifth-generation vehicular simultaneous wireless information and power transfer cooperative non-orthogonal multiple access network in military scenarios considering time-varying and imperfect channel state information conditions

Sharnil Pandya, Patteti Krishna, Ravi Shankar, Ankur Singh Bist
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引用次数: 4

Abstract

In a defense scenario, the communicating nodes are mobile and, due to this, the fading channel links become time selective in nature. Non-orthogonal multiple access (NOMA) is a promising technique in modern wireless communication systems, and it is employed in a variety of defense ad hoc wireless communication scenarios where nodes are mobile and it is difficult to estimate the channel coefficients perfectly. NOMA contributes to increased spectral efficiency (SE), firstly by enabling fifth-generation new radio deployment in the 3.5 GHz frequency range, and secondly by employing a simultaneous wireless information and power transfer (SWIPT) time switching and power splitting-based cooperative NOMA (C-NOMA) network where simple radio frequency circuitry is used for energy harvesting. NOMA together with the selective decode-and-forward (S-DF) protocol will increase the SE and energy efficiency simultaneously. The outage probability performance is evaluated for various values of the fading severity parameter and node velocity forming the channel error. It is significant to note that digital S-DF-based SWIPT C-NOMA performs much better than an analog amplify-and-forward-based C-NOMA SWIPT system.
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考虑时变和不完全信道状态信息条件的军用第五代车载同步无线信息与功率传输协同非正交多址网络研究
在防御场景中,通信节点是移动的,因此,衰落信道链路在本质上具有时间选择性。非正交多址(NOMA)是现代无线通信系统中一种很有发展前途的技术,它被应用于各种节点移动且信道系数难以完美估计的防御自组织无线通信场景中。NOMA有助于提高频谱效率(SE),首先是通过在3.5 GHz频率范围内实现第五代新无线电部署,其次是通过采用同步无线信息和功率传输(SWIPT)时间交换和基于功率分割的合作NOMA (C-NOMA)网络,其中使用简单的射频电路进行能量收集。NOMA与选择性解码转发(S-DF)协议将同时提高SE和能效。对形成信道误差的衰落严重参数和节点速度的不同取值进行了中断概率性能评估。值得注意的是,基于s - df的数字SWIPT C-NOMA比基于模拟放大和前向的C-NOMA SWIPT系统性能要好得多。
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来源期刊
CiteScore
2.80
自引率
12.50%
发文量
40
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