Mobile speed estimation for 3G mobile radio systems using the normalized autocovariance function

M. Kirsch, F. Berens
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引用次数: 9

Abstract

In cellular mobile radio systems, determination of the speed of the mobile is of an essential importance for the optimization of receiver algorithms. This paper describes a method for estimating the speed of a mobile wireless terminal using the normalized autocovariance of the power of the received signal. The presented algorithm can be deployed in both the mobile terminal and the base station. Existing methods based on autocorrelations only make the distinction between slow and fast mobiles. Furthermore, they are sensitive to the number of channel taps. By using the normalized autocovariance function the speed estimation can achieve much better results in a broad range of mobile radio environments. We show how to derive the speed information from the normalized autocovariance of the power of the received signal assuming a multipath Rayleigh fading channel model. We evaluate the performance of the proposed speed estimation method in different channel configurations through simulation results in the particular case of a WCDMA-FDD system.
用归一化自协方差函数估计3G移动无线电系统的移动速度
在蜂窝式移动无线电系统中,确定移动设备的速度对于优化接收机算法至关重要。本文描述了一种利用接收信号功率的归一化自协方差估计移动无线终端速度的方法。该算法既可以部署在移动终端中,也可以部署在基站中。现有的基于自相关的方法只能区分慢速移动和快速移动。此外,它们对通道抽头的数量很敏感。采用归一化自协方差函数进行速度估计,可以在广泛的移动无线电环境中取得较好的效果。我们展示了如何从接收信号功率的归一化自协方差中得出速度信息,假设是多径瑞利衰落信道模型。我们通过WCDMA-FDD系统的仿真结果,评估了所提出的速度估计方法在不同信道配置下的性能。
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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