On I/Q imbalance effects in MIMO space-time coded transmission systems

M. Valkama, Yaning Zou, M. Renfors
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引用次数: 23

Abstract

Through the introduction of multiple antennas in future wireless communications systems, the requirements for the power consumption, cost and size of individual radio front-ends become even more challenging than in the current single antenna systems. In this context, the so called direct-conversion front-end architecture is of big interest for building compact radios. One practical issue in this context is the so called I/Q imbalance problem related to the amplitude and phase matching of the I and Q branches of each analog front-end. In this paper, we analyze the I/Q imbalance effects in a multiantenna setup and show that I/Q imbalance is relatively even bigger problem in MIMO systems than in their traditional single antenna counterparts. As an example, the basic 2/spl times/1 Alamouti transmit diversity scheme is examined in detail and a closed-form solution for the resulting signal-to-interference ratio at the output of the receiver combining stage is derived as a function of imbalance properties. The obtained results indicate that I/Q imbalance can easily become a limiting factor in multiantenna systems, and should carefully be mitigated using proper analog or digital signal processing. In general, the analysis results are verified using extensive computer simulations.
MIMO空时编码传输系统中I/Q不平衡效应研究
通过在未来无线通信系统中引入多天线,对单个无线电前端的功耗、成本和尺寸的要求比目前的单天线系统更具挑战性。在这种情况下,所谓的直接转换前端架构对于构建紧凑型无线电具有很大的兴趣。在这种情况下的一个实际问题是所谓的I/Q不平衡问题,与每个模拟前端的I和Q分支的幅度和相位匹配有关。在本文中,我们分析了多天线设置中的I/Q不平衡效应,并表明在MIMO系统中,I/Q不平衡问题比传统的单天线系统更严重。作为一个例子,详细研究了基本的2/spl倍/1 Alamouti发射分集方案,并推导了接收机组合级输出处的信干扰比作为不平衡特性函数的封闭解。得到的结果表明,I/Q不平衡很容易成为多天线系统的限制因素,应该通过适当的模拟或数字信号处理来小心地减轻。一般来说,分析结果是通过广泛的计算机模拟验证的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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