Velocity estimation in cellular systems based on the time-frequency characteristics of the received signal

G. Azemi, B. Senadji, B. Boashash
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引用次数: 7

Abstract

Estimating the velocity of the mobile units is of great importance in hierarchical cellular systems since the satisfactory handover of mobiles to macro or micro-cells depends on its present velocity. In this contribution, the first moment of the instantaneous frequency (IF) of the received signal, is proposed as a new velocity estimator. The performance of this estimator in the presence of Rayleigh fading, log-normal shadowing, and additive white Gaussian noise is compared with the conventional zero crossing rate (ZCR) estimator. Simulations show that the performance of the proposed estimator is superior to that of the ZCR velocity estimator, in the presence of additive noise. Also it has been shown that the IF velocity estimator is robust in the presence of shadowing.
基于接收信号时频特性的蜂窝系统速度估计
估计移动单元的速度在分层元胞系统中是非常重要的,因为移动单元与宏细胞或微细胞的满意切换取决于其当前的速度。在此贡献中,提出了接收信号的瞬时频率(IF)的一阶矩作为新的速度估计量。在存在瑞利衰落、对数正态阴影和加性高斯白噪声的情况下,与传统的零交叉率(ZCR)估计器进行了性能比较。仿真结果表明,在加性噪声存在的情况下,该估计器的性能优于ZCR速度估计器。同时也证明了中频速度估计在阴影存在下是鲁棒的。
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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