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Qualitative comparison of GSCMs with single-, mixed- and multiple-bounce schemes

机译:GSCM与单跳,混合和多跳方案的定性比较

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The paper looks for differences in MIMO system capacity when using either single-, mixed- or multiple-bounce geometry-based stochastic channel models (GSCMs). This investigation considers Saleh-Valenzuela temporal indoor model, expanded for angular domain. In model, omnidirectional and idealised sectoral antennas were used as array elements. The single-bounce assumption, combination of single and multiple bounces, and pure random multiple bounces assumption were compared within “temporally the same” environment regarding the overall MIMO capacity. The assumption of clustered scatterers/reflectors is preserved in all cases. The comparison is done in statistical sense, for a large number of randomly generated temporal models. The results show need for GSCMs to be balanced combination of single and multiple bounced rays.
机译:本文使用基于几何的单反弹,混合反弹或多反弹的随机信道模型(GSCM)来寻找MIMO系统容量的差异。这项研究考虑了Saleh-Valenzuela的时态室内模型,并针对角域进行了扩展。在模型中,全向和理想的扇形天线被用作阵列元件。在“临时相同”环境中,就整体MIMO容量比较了单反射假设,单反射和多反射的组合以及纯随机多反射假设。在所有情况下,都保留了群集散射体/反射器的假设。对于大量随机生成的时间模型,以统计意义进行比较。结果表明,对于GSCM,需要平衡单个和多个反弹光线的组合。

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