The capacity of discrete-time Gaussian MIMO channels with periodic characteristics

Nir Shlezinger, R. Dabora
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引用次数: 7

Abstract

In many communications scenarios the channel exhibits periodic characteristics. Periodicity may be expressed as a periodically time-varying channel transfer function as well as an additive noise with periodically time-varying statistics. Examples for such scenarios include interference-limited communications, both wireless and wireline, and also power line communications (PLC). In this work, we characterize the capacity of discrete-time, finite-memory Gaussian multiple-input multiple-output (MIMO) channels with periodic characteristics. The derivation transforms the periodic MIMO channel into an extended time-invariant MIMO channel, for which we obtain a closed-form capacity expression. It is shown that capacity can be achieved by an appropriate waterfilling scheme. The capacity expression obtained is numerically evaluated for practical PLC scenarios, and compared to the achievable rate of an ad-hoc orthogonal frequency division multiplexing based scheme, and the gains from optimally handling the periodicity of the channel are quantified.
具有周期特性的离散时间高斯MIMO信道容量
在许多通信场景中,信道表现出周期性特征。周期性可以表示为周期性时变信道传递函数以及具有周期性时变统计量的加性噪声。此类场景的示例包括无线和有线的干扰限制通信,以及电力线通信(PLC)。在这项工作中,我们描述了离散时间,有限记忆高斯多输入多输出(MIMO)信道具有周期性特性的容量。该推导将周期MIMO信道转化为扩展时不变MIMO信道,得到了一个封闭形式的容量表达式。结果表明,采用适当的充水方案可以达到充水的目的。在实际的PLC场景中对所得到的容量表达式进行了数值评估,并与基于自组织正交频分复用的方案的可实现速率进行了比较,并量化了最优处理信道周期性的增益。
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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