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Channel modeling in the next generation mmWave Wi-Fi: IEEE 802.11ay standard

机译:下一代mmWave Wi-Fi的通道建模:IEEE 802.11ay标准

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The IEEE 802.11ay standard is an extension of the previous 802.11ad system in the 60GHz band, with new usage cases and scenarios, which require new approaches to the millimeter-wave channel description. The proposed for the IEEE 802.11ay standard channel modeling approach is based on, so-called, quasi-deterministic (Q-D) methodology exploiting the hybrid deterministic-stochastic description of the environment which allows simple introduction of scenario-specific geometric properties, reflection attenuation, ray blockage and mobility effects, as well as the proper MIMO channel models. In accordance with this methodology the 3D channel impulse response is represented as a sum of a few quasi-deterministic strong rays (D-rays) originating from main scenario-specific large reflecting surfaces and a number of relatively weak random rays (R-rays), which describe the real environment with random relatively small reflecting objects. The beam steerable virtual antenna array with synthetic aperture was applied for available experimental data to prove the efficiency of the Q-D channel modeling methodology.
机译:IEEE 802.11ay标准是60GHz频段中先前802.11ad系统的扩展,具有新的使用案例和方案,需要使用新方法来描述毫米波信道。针对IEEE 802.11ay标准信道建模方法的建议基于所谓的准确定性(QD)方法,该方法利用了环境的混合确定性-随机描述,可以简单地介绍特定于场景的几何特性,反射衰减射线阻挡和移动性影响,以及适当的MIMO信道模型。根据此方法,将3D通道脉冲响应表示为源自特定于场景的主要大反射面的一些准确定性强射线(D射线)和许多相对弱的随机射线(R射线)的总和,它描述了具有相对较小的随机反射对象的真实环境。将具有合成孔径的波束可控虚拟天线阵列用于可获得的实验数据,以证明Q-D信道建模方法的效率。

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