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Effect of radiation patterns on WLAN delay spreads for 60 GHz living room environments

机译:辐射模式对60 GHz客厅环境中WLAN延迟扩展的影响

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The Parameters, those can affect an indoor Wireless Local Area Network (WLAN) at 60 GHz, are multi-path reflections, polarization-effects, shadowing, interior of the room, main beam lobe, and side lobe level (SLL) of radiation patterns. RMS Delay Spread (RDS) of a channel can be reduced if SLL of antenna radiation pattern can be minimized. RDS is a measure of channel delay and fading characteristics. Minimum RDS can reduce channel deep-fade and multipath effects. This paper investigates the effect of different level of SLL on RDS characteristics considering two different living room environments. One of the approaches is IEEE 802.11ad living room channel model, and the other is Full-3D ray tracing simulation model of a residential apartment. The investigations show that reduced SLL of radiation pattern can effectively reduce the RDS.
机译:可以影响60 GHz室内无线局域网(WLAN)的参数是多径反射,偏振效应,阴影,房间内部,主波束瓣和辐射方向图的旁瓣电平(SLL) 。如果可以将天线辐射方向图的SLL最小化,则可以减小信道的RMS延迟扩展(RDS)。 RDS是信道延迟和衰落特性的度量。最小的RDS可以减少通道深度衰减和多径效应。本文研究了考虑两种不同客厅环境的不同SLL水平对RDS特性的影响。一种方法是IEEE 802.11ad客厅通道模型,另一种方法是住宅公寓的Full-3D光线跟踪仿真模型。研究表明,减小辐射方向图的SLL可以有效地降低RDS。

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