A statistical model of space-time radio propagation in indoor environments

R. Tingley, K. Bahlavan
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引用次数: 5

Abstract

Previously, simulation algorithms based upon the ray tracing technique have provided the only means for developing a detailed description of the joint space-time properties of microwave radio propagation. Although widely accepted, ray tracing suffers several drawbacks, such as the need for an accurate physical database, and precise knowledge of the site-specific construction parameters. This paper describes an empirical study conducted in two distinct indoor environments. The study comprised the acquisition of 500 data sets using an antenna array, and the high-resolution post-processing of each to recover its space-time impulse response. The results of the study are used to derive a new statistical channel model, suitable for performance analysis of smart antenna and geolocation systems. The accuracy of the new model is evaluated by comparing it with the sample statistics, as well as two other models which have been previously proposed.
室内环境下时空无线电传播的统计模型
以前,基于光线追踪技术的模拟算法为详细描述微波无线电传播的联合时空特性提供了唯一的手段。尽管光线追踪技术被广泛接受,但它仍有一些缺点,比如需要精确的物理数据库,以及对特定场地施工参数的精确了解。本文描述了在两个不同的室内环境中进行的实证研究。这项研究包括使用天线阵列采集500组数据,并对每组数据进行高分辨率后处理以恢复其时空脉冲响应。利用研究结果推导出一种新的统计信道模型,该模型适用于智能天线和地理定位系统的性能分析。通过与样本统计量以及之前提出的另外两种模型的比较,对新模型的准确性进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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