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A New Double-Directional Channel Model Including Antenna Patterns, Array Orientation, and Depolarization

机译:一个新的双向信道模型,包括天线方向图,阵列方向和去极化

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摘要

Multiple-input–multiple-output (MIMO) wireless channel models are often too simplistic to accurately model wireless propagation effects or too complex and/or site specific to be used for analytical purposes. In this paper, we develop a double-directional MIMO channel model that accounts for important propagation effects like scattering, clustering, and channel depolarization and antenna effects like antenna diversity, cross polarization, and random array orientation, while still retaining an intuitive representation. The proposed model can be parameterized using channel measurements obtained from site-specific measurement campaigns or from standard-based channel models. We show, using simulations, that the proposed model captures channel and antenna effects not included in other models, like the third-generation partnership program (3GPP) spatial channel model, the WINNER, and the IEEE 802.11n channel model. We use the model to study the impact of random orientation and channel depolarization on the data rates of a MIMO system.
机译:多输入多输出(MIMO)无线通道模型通常过于简单以至于无法准确地模拟无线传播效果,或者过于复杂和/或特定于站点而无法用于分析目的。在本文中,我们开发了双向MIMO信道模型,该模型考虑了重要的传播效应(如散射,聚类和信道去极化)以及天线效应(如天线分集,交叉极化和随机阵列方向),同时仍保持了直观的表示。可以使用从特定地点的测量活动或基于标准的渠道模型获得的渠道测量参数化建议的模型。我们通过仿真显示,所提出的模型捕获了其他模型(例如第三代合作伙伴计划(3GPP)空间信道模型,WINNER和IEEE 802.11n信道模型)中未包含的信道和天线效应。我们使用该模型研究随机方向和信道去极化对MIMO系统数据速率的影响。

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