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5G城市微蜂窝场景的信道测量与建模

Channel Measurement and Modeling for 5G Urban Microcellular Scenarios.

作者信息

Peter Michael, Weiler Richard J, Göktepe Barış, Keusgen Wilhelm, Sakaguchi Kei

机构信息

Department of Wireless Communications and Networks, Fraunhofer Heinrich Hertz Institute, Berlin 10587, Germany.

Department of Electrical and Electronic Engineering, Tokyo Institute of Technology, Tokyo 152-8552, Japan.

出版信息

Sensors (Basel). 2016 Aug 20;16(8):1330. doi: 10.3390/s16081330.

Abstract

In order to support the development of channel models for higher frequency bands, multiple urban microcellular measurement campaigns have been carried out in Berlin, Germany, at 60 and 10 GHz. In this paper, the collected data is uniformly analyzed with focus on the path loss (PL) and the delay spread (DS). It reveals that the ground reflection has a dominant impact on the fading behavior. For line-of-sight conditions, the PL exponents are close to free space propagation at 60 GHz, but slightly smaller (1.62) for the street canyon at 10 GHz. The DS shows a clear dependence on the scenario (median values between 16 and 38 ns) and a strong distance dependence for the open square and the wide street canyon. The dependence is less distinct for the narrow street canyon with residential buildings. This behavior is consistent with complementary ray tracing simulations, though the simplified model tends to overestimate the DS.

摘要

为了支持更高频段信道模型的发展,在德国柏林于60GHz和10GHz开展了多次城市微蜂窝测量活动。本文对收集到的数据进行了统一分析,重点关注路径损耗(PL)和延迟扩展(DS)。结果表明,地面反射对衰落行为有主导影响。在视距条件下,60GHz时PL指数接近自由空间传播,但10GHz时街道峡谷的PL指数略小(1.62)。DS明显依赖于场景(中值在16至38ns之间),并且对开放广场和宽阔街道峡谷有很强的距离依赖性。对于有住宅建筑的狭窄街道峡谷,这种依赖性不太明显。尽管简化模型往往会高估DS,但这种行为与互补射线追踪模拟结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95c9/5017494/565f4cc0a10f/sensors-16-01330-g001.jpg

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