Wideband Frequency-Domain Measurement of Multipath Effects in 2.4 GHz Wireless Channels

A. Kuppusamy, P. Flikkema, T. Weller
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Abstract

The frequency selectivity and time variation of wireless channels will strongly influence signal waveform and receiver design for broadband wireless systems such as wireless local area networks. This paper describes the development and deployment of instrumentation to determine the frequency response of 2.4 GHz indoor wireless channels. The instrumentation is developed around a HP 87146 vector network analyzer and includes the required amplification for measurement of responses at a transmit-receive separation of up to 33 meters. While designed primarily to gather data for development of accurate small-scale multipath models, the setup is calibrated to also provide the absolute signal levels necessary for shadowing and path loss characterization. The system design and link power budget are presented along with the criteria for selecting the individual components. In addition, the methodology for correction of magnitude and phase responses of the components is detailed. Finally, the measurement campaign is described, and sample results are presented that exhibit the frequency- and time-selectivity of these channels.
2.4 GHz无线信道中多径效应的宽带频域测量
无线信道的频率选择性和时变特性将对无线局域网等宽带无线系统的信号波形和接收机设计产生重大影响。本文介绍了用于确定2.4 GHz室内无线信道频率响应的仪器的开发和部署。该仪器是围绕HP 87146矢量网络分析仪开发的,包括在收发距离达33米的情况下测量响应所需的放大。虽然设计主要是为了收集数据,以开发精确的小规模多径模型,但该设置也经过校准,以提供遮蔽和路径损耗表征所需的绝对信号电平。介绍了系统设计和链路功率预算,以及选择各个组件的标准。此外,还详细介绍了各分量的幅值和相位响应的校正方法。最后,描述了测量活动,并给出了显示这些通道的频率和时间选择性的样本结果。
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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