Transmit Power Allocation among Orthogonal Pulse Wavelets for BER Performance Improvement in Cognitive UWB Radio

Xiaofei Zhou, Honggang Zhang, I. Chlamtac
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引用次数: 2

Abstract

Ultra Wideband (UWB) technology has been considered as one of the suitable transmission techniques for implementing a cognitive radio system, where spectrum-agile UWB waveforms achieve a number of spectral adaptation features. One approach for designing such waveforms relies on orthogonally combining PSWF (Prolate Spheroidal Wave Functions) based pulse wavelets. In a cognitive UWB radio environment when the transmit signal is M-ary pulse shape modulated, we can obtain M different eigenvalues corresponding to the M PSWF-based pulses while transmitting them through the multipath fading channel. Each eigenvalue represents the multipath channel gain for its corresponding pulse. We propose an optimal power allocation scheme depending on the eigenvalues to improve bit error rate (BER) performance in such a cognitive UWB radio environment. Numerical results show that the scheme outperforms the general equal power allocation scheme.
认知超宽带无线电中提高误码率的正交脉冲小波发射功率分配
超宽带(UWB)技术被认为是实现认知无线电系统的合适传输技术之一,其中频谱敏捷的UWB波形实现了许多频谱自适应特征。设计这种波形的一种方法依赖于基于脉冲小波的正交组合PSWF(长球面波函数)。在认知UWB无线电环境中,当发射信号是M-ary脉冲形状调制时,我们可以在多径衰落信道中发射M个基于pswf的脉冲,得到M个不同的特征值。每个特征值表示其对应脉冲的多径信道增益。我们提出了一种基于特征值的最佳功率分配方案,以提高这种认知超宽带无线电环境下的误码率(BER)性能。数值结果表明,该方案优于一般的等功率分配方案。
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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