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Sixty gigahertz indoor radio wave propagation prediction method based on full scattering model

机译:基于全散射模型的60 GHz室内电波传播预测方法

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摘要

In radio system deployment, the main focus is on assuring sufficient coverage, which can be estimated with path loss models for specific scenarios. When more detailed performance metrics such as peak throughput are studied, the environment has to be modeled accurately in order to estimate multipath behavior. By means of laser scanning we can acquire very accurate data of indoor environments, but the format of the scanning data, a point cloud, cannot be used directly in available deterministic propagation prediction tools. Therefore, we propose to use a single-lobe directive model, which calculates the electromagnetic field scattering from a small surface and is applicable to the point cloud, and describe the overall field as fully diffuse backscattering from the point cloud. The focus of this paper is to validate the point cloud-based full diffuse propagation prediction method at 60 GHz. The performance is evaluated by comparing characteristics of measured and predicted power delay profiles in a small office room and an ultrasonic inspection room in a hospital. Also directional characteristics are investigated. It is shown that by considering single-bounce scattering only, the mean delay can be estimated with an average error of 2.6% and the RMS delay spread with an average error of 8.2%. The errors when calculating the azimuth and elevation spreads are 2.6° and 0.6°, respectively. Furthermore, the results demonstrate the applicability of a single parameter set to characterize the propagation channel in all transmit and receive antenna locations in the tested scenarios.
机译:在无线电系统部署中,主要重点是确保足够的覆盖范围,这可以通过针对特定场景的路径损耗模型进行估算。当研究更详细的性能指标(例如峰值吞吐量)时,必须对环境进行准确建模,以估计多径行为。通过激光扫描,我们可以获得室内环境的非常准确的数据,但是扫描数据的格式(点云)无法直接在可用的确定性传播预测工具中使用。因此,我们建议使用单瓣指令模型,该模型可计算从小表面散射的电磁场并适用于点云,并将整体场描述为从点云完全扩散的反向散射。本文的重点是验证60 GHz下基于点云的全扩散传播预测方法。通过比较小型办公室和医院的超声波检查室中测得的功率延迟曲线和预测的功率延迟曲线的特性来评估性能。还研究了方向特性。结果表明,仅考虑单反射散射,平均延迟可以估计为2.6%的平均误差,RMS延迟扩展可以估计为8.2%的平均误差。计算方位角和仰角扩展时的误差分别为2.6°和0.6°。此外,结果证明了在测试情况下,单个参数集可用于表征所有发射和接收天线位置中的传播信道。

著录项

  • 来源
    《Radio Science》 |2014年第4期|293-305|共13页
  • 作者

    J. Jaervelaeinen; K. Haneda;

  • 作者单位

    Department of Radio Science and Engineering, School of Electrical Engineering, Aalto University, Espoo, Finland;

    Department of Radio Science and Engineering, School of Electrical Engineering, Aalto University, Espoo, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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