Design of an adaptive Kalman equalizer and its performance over fading multipath channels

K. Murakami, K. Ueda, M. Takano, T. Fujino
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引用次数: 5

Abstract

The development of an adaptive equalizer for mobile radio using the Kalman algorithm is addressed, including an assessment of its performance by means of computer simulation and hardware experimentation. The adaptive equalizer consists of a fractionally spaced decision feedback equalizing element and a tap-coefficient-update element. Tap coefficients are updated based on the Kalman filter algorithm. Details for the parameters are given, such as the number of taps, the quantization number of bits, and the forgetting factor. Hardware of the equalizer consists of a digital signal processor and a few finite impulse response digital filters implemented on some LSI chips where the tap coefficients are adaptively changeable. A bit error ratio (BER) of less than 10/sup -2/ is achieved, and remarkable improvement is observed compared with the unequalized performance. It is shown that the adaptive equalizer is useful for fading multipath channels.<>
自适应卡尔曼均衡器的设计及其在衰落多径信道上的性能
讨论了一种基于卡尔曼算法的移动无线电自适应均衡器的开发,并通过计算机仿真和硬件实验对其性能进行了评估。自适应均衡器由分数间隔决策反馈均衡元件和抽头系数更新元件组成。基于卡尔曼滤波算法更新抽头系数。详细的参数给出,如抽头的数量,量化位数,和遗忘因子。均衡器的硬件由一个数字信号处理器和几个有限脉冲响应数字滤波器组成,这些滤波器实现在一些自适应可变抽头系数的LSI芯片上。误码率(BER)小于10/sup -2/,与不均衡性能相比有显著提高。结果表明,自适应均衡器对衰落多径信道是有用的。
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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