基于SDR平台的实时协同MIMO性能研究

Hassaan Ajaz, Omer Ihsan, Usman Javed, Moaaz Ali Hafeez, A. Khan, S. Irteza
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引用次数: 1

摘要

衰落仍然是无线通信的主要问题,而且并非在任何地方都能实现视距通信。多输入多输出(MIMO)是一种用于减轻多径衰落效应的技术,通过物理放置多个天线来创建独立的信道实现。而协作式MIMO则是通过网络内分布式无线节点的协作来产生MIMO的效果。本文确定了在传统SISO和多个并置天线阵列系统的协作通信网络的帧错误率与平均信噪比方面实现的性能增益。在软件定义无线电(SDR)平台上开发了一个实验测试平台,该平台由三个分布式网络节点组成,工作在2.4GHz免许可ISM频段。开发并建立了节点间的选择性解码转发(DF)合作协议。结果已被评估的多样性增益,测量从实验曲线与平均信噪比。对比分析表明,在信噪比一定的情况下,CMIMO通信系统的误码率小于SISO、SIMO和单天线合作网络。
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Performance of real time cooperative MIMO using an SDR platform
Fading remains the prime problem in wireless communications, and line of sight communication is not possible everywhere. Multiple Input Multiple Output (MIMO) is a technique used to mitigate multi path fading effects by physically placing multiple antennas to create independent channel realizations. Cooperative MIMO on the other hand generates the effect of MIMO through cooperation of distributed radio nodes within the network. The paper identifies performance gains achieved in terms of frame error rate versus average signal to noise ratio of cooperative communication networks over conventional SISO and multiple collocated antenna array systems. An experimental testbed is developed on a Software Defined Radio (SDR) platform comprising of three distributed network nodes operating in the 2.4GHz unlicensed ISM band. A Selective Decode and Forward (DF) cooperative protocol is developed and established between the nodes. The results have been evaluated in terms of diversity gains as measured from the experimental curves of FER versus average SNR. A comparative analysis reflects that at a fixed value of SNR the FER of CMIMO communication systems is less than SISO, SIMO and single antenna cooperation networks.
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