基于NI-USRP的实验室环境下协作通信对直接通信的实验评价

Channa Babar Ali, M. B. Khan, M. Rehman, Shujaat Ali Khan Tanoli
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引用次数: 0

摘要

无线通信系统(WCS)的发展是开发一个更智能、更互联的未来世界的关键,它鼓励万物互联(IoE)、物联网(IoT)、音视频和工业4.0应用。这些对人类社会具有吸引力的服务要求更高的信道容量和系统的可靠性。协作通信是克服多径衰落,获得更高信道容量,保证系统可靠性的一种很有前途的技术。现有的研究大多是通过理论或模拟来研究CC,而这些研究没有结合实际的环境问题。本文在实验环境下对协作通信(CC)和直接通信(DC)的实验性能进行了分析。该装置是在一个实验室中创建的,该实验室包含几个通用软件无线电外设(USRP)和LabVIEW用于实验分析。采用Q-PSK调制方案,采用放大转发(AF)中继方式传输短信。采用最大比合并(MRC)方法对接收端多路信噪比进行合并。比较了直流、单继电器和多继电器对通道容量的影响。此外,本工作旨在通过改变继电器的位置来寻求继电器的最佳位置,从而忽略对接收端的相当大的影响。已经在实验室环境中进行了几个实验来评估整个系统的性能。结果清楚地表明,与单继电器CC和DC相比,多继电器CC提供了更高的通道容量和系统可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NI-USRP based experimental evaluation of cooperative communication over direct communication in lab environment
The development of wireless communication systems (WCS) is the key to develop a much smarter and connected future world encouraging Internet of Everything (IoE), Internet of Things (IoT), Audio-video and Industry 4.0 applications. These attractive services for human society require higher channel capacity and reliability of the system. Cooperative communication (CC) is one of the promising technique to acquire higher channel capacity by overcoming multipath fading and assure the reliability of the system. Most of existing works examine CC through theory or simulation which fails to incorporate real environment problems. The proposed research work analyzes experimental performance of cooperative Communication (CC) in comparison with direct communication (DC) in lab environment. The setup was created in a lab that encompasses several Universal Software Radio Peripheral (USRP) and LabVIEW for experimental analysis. Q-PSK modulation scheme have been used to transmit the text message using amplify and forward (AF) relaying mode. The maximum ratio combining (MRC) method is employed to combine SNR received from multiple paths at the receiver end. Comparison was made among DC, single-relay CC, and multi-relay CC to examine its effect on channel capacity. Besides, this work aims to seek the optimal position of the relays by changing the position of the relay to overlook considerable effects on the receiver end. Several experiments have been made to assess the performance of the overall system in a lab environment. The results clearly reveals that multi relay CC offers increased channel capacity and reliability of the system as compared to single-relay CC and DC.
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