模拟并测量了WCDMA上行链路性能

H. Holma, D. Soldani, K. Sipilä
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引用次数: 12

摘要

本文通过理论计算、仿真、实验室测量和现场测量,研究了WCDMA移动传输功率及其在快速功率控制下的变化规律。研究了移动速度、多径轮廓线和基站接收天线分集的影响。结果表明,在120 km/h的移动速度下,由于交错提供的时间分集,所需的传输功率比低移动速度时要小。在没有天线分集和多径分集的情况下,发射功率的差异可达2db。测量和仿真结果表明,在3km /h时,ITU车载A信道与ITU行人A信道相比,无天线分集时的多径分集增益为3db,带天线分集时为1db。在较高的移动速度下,多径分集增益较小。基站天线分集增益在ITU车载A信道显示为3-4 dB,在ITU行人A信道显示为4-6 dB。仿真结果与实测结果吻合较好。结果还表明,在实验WCDMA基站接收机中,SIR估计的实现存在不准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulated and measured WCDMA uplink performance
This paper studies the WCDMA mobile transmission power and its variations due to fast power control with theoretical calculations, simulations, laboratory measurements and field measurements. The effect of mobile speed, multipath profile and base station reception antenna diversity is studied. The results show that a mobile speed of 120 km/h requires less transmission power than low mobile speeds because of the time diversity provided by interleaving. With little multipath diversity and without antenna diversity the difference in terms of transmitted power is up to 2 dB. The measurements and simulations show that the multipath diversity gain of the ITU Vehicular A channel compared to ITU Pedestrian A channel is 3 dB without antenna diversity and 1 dB with antenna diversity at 3 km/h. At higher mobile speeds the multipath diversity gains are smaller. The base station antenna diversity gain is shown to be 3-4 dB in ITU Vehicular A channel and 4-6 dB in ITU Pedestrian A channel. The results show good agreement between simulations and measurements. The results also showed inaccuracies in the implementation of the SIR estimation in the experimental WCDMA base station receiver.
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