A packet-level model for MIMO spatial multiplexing channels in indoor environments

Ruonan Zhang, Jianping Zhao, Zhimeng Zhong, Heng Qin
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Abstract

Directional transmission and reception using multiple-input multiple-output (MIMO) technologies allows spatial multiplexing in a wireless network. However, multipath propagations in radio channels usually result in the angular spread of signal power, which causes interference among the sectors. Moreover, the random movement of the nodes leads to the variation of the interference. An accurate and mathematically tractable packet-level channel model is a key issue to evaluate the capacity and performance of the spatial multiplexing networks. In this paper, we have considered an indoor mobile ad hoc network where the sink node is equipped with an antenna array for beamforming. First, based on the angular power spectral density (APSD) of the indoor channels obtained by our field measurements, the interference among two nodes is evaluated. Second, by assuming two-dimensional random walk of the network nodes, a finite state Markov chain (FSMC) model is proposed to present the random variation of the signal-to-interference ratio (SIR) of the directional links from the nodes to the sink. The closed-form expressions of the state transition probabilities and steady state distributions are derived. Simulation results are also presented to demonstrate the channel evolution process. The proposed packet-level channel model can be conveniently incorporated into analytical frameworks and fast simulations of upper-layer network protocols.
室内环境下MIMO空间复用信道的分组级模型
使用多输入多输出(MIMO)技术的定向传输和接收允许无线网络中的空间多路复用。然而,无线电信道中的多径传播通常会导致信号功率的角扩散,从而导致扇区之间的干扰。此外,节点的随机运动导致了干扰的变化。一个精确的、数学上易于处理的分组级信道模型是评估空间复用网络容量和性能的关键问题。在本文中,我们考虑了一种室内移动自组织网络,其中汇聚节点配备了用于波束形成的天线阵列。首先,基于现场测量得到的室内信道的角功率谱密度(APSD),评估了两个节点之间的干扰;其次,通过假设网络节点的二维随机行走,提出了一个有限状态马尔可夫链(FSMC)模型来表示节点到汇聚点的定向链路的信干扰比(SIR)的随机变化。导出了状态转移概率和稳态分布的封闭表达式。仿真结果显示了信道的演化过程。所提出的包级信道模型可以方便地集成到上层网络协议的分析框架和快速仿真中。
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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