使用相关PPM和极性调制的超宽带系统的先验概率计算

L. Rouault, S. Chaillou, D. Hélal
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引用次数: 0

摘要

在脉冲超宽带(UWB)系统中,脉冲位置调制(PPM)允许通过在脉冲重复周期(PRP)内延迟脉冲位置来传输信息。此外,极性(对映位置)允许每个脉冲多传输一个比特,实现成本低。一个脉冲对接收信号的贡献是复合通道响应(CCR),它是发射脉冲形状和脉冲通道响应的卷积。解调器可以简单地是一组相关器,使用估计CCR的延迟版本作为模板。对于软输入按位信道解码,然后使用相关器的输出值计算每比特的先验概率(APP),并由信道解码器处理。在本文中,我们假设完全同步,一个完美的CCR估计,没有符号间干扰(ISI),我们研究延迟CCR之间的相关性对APP计算的影响。证明了N-PPM和极性调制在APP计算中不需要考虑相关值。仿真结果显示了不同信噪比(SNR)和相关值下的APP分布,以及最大对数近似对误码率性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A priori probability calculation for UWB systems using correlated PPM and polarity modulation
In pulsed ultrawideband (UWB) systems, pulse position modulation (PPM) allows information to be conveyed by delaying the pulse position inside a pulse repetition period (PRP). In addition, polarity (antipodal positions) allows the transmission of one more bit per pulse, at low implementation cost. The contribution of one pulse to the received signal is the composite channel response (CCR), which is the convolution of the emitted pulse shape and the impulse channel response. The demodulator can be simply a bank of correlators using delayed versions of the estimated CCR, as templates. For a soft-input bitwise channel decoding, the A priori probability (APP) per bit is then calculated using the correlators' output values, and processed by a channel decoder. In this paper, assuming perfect synchronisation, a perfect CCR estimation, and no inter symbol interference (ISI), we investigate the effect of the correlation between the delayed CCRs on the APP calculation. Proof is given for N-PPM and polarity modulation that there is no need to consider the correlation values in the APP calculation. Simulation results shows the APP distribution for different signal-to-noise ratio (SNR) and correlation values, the influence of the max log approximation on the BER performance is also presented.
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