Simplified statistical replacement models for channel estimation in WCDMA

R. Weber
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引用次数: 4

Abstract

This paper provides a statistical analysis of channel estimation errors and gives simplified replacement models that can be used to speed-up link- as well as system-level simulations. Although the investigations are carried out for downlink dedicated physical channels (DL-DPCH) of third-generation wideband CDMA (3G WCDMA), specified by 3GPP for IMT-2000/UMTS (UTRA), the main results are also suitable for the uplink. It turns out that in almost all cases well-known distribution functions for the channel estimation error amplitudes and phases can be used to model real channel estimation behavior efficiently. For low to medium speed vehicular environments without interference, the error amplitudes can be assumed to be Rician and the error phases are uniformly distributed. For low speed indoor environments, the resulting error phases can be neglected and error amplitudes are best represented by the Nakagami-m distribution. In general, the higher the velocity of the mobile and the interference of other channels get, the more error amplitudes follow a Suzuki distribution. The given models show to be applicable to replace computational intensive real channel estimation. They could also be used in radio network and radio protocol simulations, e.g. to quantify time-variant demodulator losses.
简化的WCDMA信道估计统计替换模型
本文提供了信道估计误差的统计分析,并给出了简化的替换模型,可用于加速链路级和系统级仿真。虽然研究是针对3GPP为IMT-2000/UMTS (UTRA)指定的第三代宽带CDMA (3G WCDMA)下行链路专用物理信道(DL-DPCH)进行的,但主要结果也适用于上行链路。结果表明,在几乎所有情况下,已知的信道估计误差幅度和相位分布函数都可以有效地用于模拟真实的信道估计行为。对于无干扰的中低速车辆环境,可以假设误差幅值为r,误差相位均匀分布。对于低速室内环境,产生的误差相位可以忽略不计,误差幅度最好由Nakagami-m分布表示。一般情况下,移动速度越高,其他信道的干扰越大,误差幅度也越服从铃木分布。结果表明,该模型可以代替计算密集型的真实信道估计。它们也可用于无线电网络和无线电协议模拟,例如量化时变解调器损耗。
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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