An autoregressive model for a single-hop relay channel

T. Ghirmai
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Abstract

In this paper, we developed a mathematical model for a single-hop relay-based communication channel. Assuming the transmitter-to-relay and receiver-to-relay channels are non-line-of-sight flat fading channels, we show that the real and imaginary components of the combined single channel have Laplace probability density functions. We, therefore, develop a complex Laplace autoregressive process (AR) that captures the statistical characteristics of the fading process of the relay channel. Such an AR model makes channel simulations simple, and eases formulation of such problems as data detection in a state-space form for convenient application of well-known algorithms. Furthermore, the autocorrelation of the developed Laplace AR model has Yule-Walker type of properties that enables us to configure its parameters to match to the second-order statistical characteristics of the channel through autocorrelation matching. The derivation of the channel model is illustrated through an example and computer simulations.
单跳中继信道的自回归模型
本文建立了基于单跳中继的通信信道的数学模型。假设发射机到中继和接收机到中继信道是非视距平坦衰落信道,我们证明了组合单信道的实分量和虚分量具有拉普拉斯概率密度函数。因此,我们开发了一个复杂的拉普拉斯自回归过程(AR),它捕获了中继信道衰落过程的统计特征。这样的AR模型使信道仿真变得简单,并且简化了以状态空间形式表述数据检测等问题,方便了已知算法的应用。此外,所开发的拉普拉斯AR模型的自相关具有Yule-Walker类型的属性,使我们能够通过自相关匹配配置其参数以匹配信道的二阶统计特征。通过算例和计算机仿真说明了通道模型的推导过程。
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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