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Development of wideband radio channel measurement and modeling techniques for future radio systems

机译:为未来的无线电系统开发宽带无线电信道测量和建模技术

摘要

This thesis discusses the development of micro- and millimeterwave wideband radio channel measurement and modeling techniques for future radio networks. Characterization of the radio channel is needed for radio system, wireless network, and antenna design. A radio channel measurement system was designed for 2.154, 5.3 GHz and 60 GHz center frequencies, and completed at the two lower frequencies. The sounder uses a pseudonoise code in the transmitter. In the receiver, first a sliding correlator, and later direct digital sampling, where the impulse response is detected by digital post processing, were realized. Certain implementation questions, like link budget, effects of phase noise on impulse response and direction of arrival estimation, and achievable performance using the designed concept, are discussed.Measurement campaigns included in this thesis were realized at 5.3 GHz frequency in micro- and picocells. A comprehensive measurement campaign performed inside different buildings was thoroughly analyzed. Propagation mechanisms were studied and empirical models for both large scale fading and multipath propagation were developed. Propagation through walls, diffraction through doorways, and propagation paths outside the building were observed. Pathloss in LOS was lower than the free space pathloss, due to wave guiding effects. In NLOS situation difference in the pathloss models in different buildings was significant. Behavior of the spatial diversity was estimated on the basis of spatial correlation functions extracted from the measurement data; an antenna separation of a fraction of a wavelength gives sufficient de-correlation for significant diversity gain in indoor environments at 5.3 GHz in NLOS.
机译:本文讨论了未来无线电网络的微毫米波和毫米波宽带无线电信道测量和建模技术的发展。无线电系统,无线网络和天线设计需要无线电信道的特性描述。设计了一个无线电信道测量系统,用于2.154、5.3 GHz和60 GHz中心频率,并在两个较低的频率处完成。发声器在发射机中使用伪噪声代码。在接收机中,首先实现了一个滑动相关器,然后实现了直接数字采样,通过数字后处理检测脉冲响应。讨论了某些实现问题,例如链路预算,相位噪声对脉冲响应和到达方向估计的影响以及使用该设计概念可实现的性能。本文所包含的测量活动是在5.3 GHz频率下在微蜂窝和微微小区中实现的。全面分析了在不同建筑物内进行的全面测量活动。研究了传播机理,并建立了大规模衰落和多径传播的经验模型。观察到通过墙的传播,通过门口的衍射以及建筑物外部的传播路径。由于波导效应,LOS中的路径损耗低于自由空间路径损耗。在非视距情况下,不同建筑物的路径损耗模型差异很大。根据从测量数据中提取的空间相关函数,估算了空间多样性的行为;在非视距(NLOS)中,在5.3 GHz的室内环境中,只有一小部分波长的天线间隔可以提供足够的去相关,以实现明显的分集增益。

著录项

  • 作者

    Kivinen Jarmo;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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