Superposed Band Detection Based on Error Probability Using Initial Likelihood Masking

T. Ohtsuki, G. Hayashi, Jun Mashino, T. Sugiyama
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引用次数: 10

Abstract

Superposed multicarrier transmission scheme is known to improve frequency utilization efficiency where several systems share spectrum without any spectrum spreading techniques. In superposed multicarrier transmission scheme forward error correction (FEC) coding is applied over subcarriers so that the effects of interference caused by superposition is mitigated by interleaving effects. When the interference power is large, the effects of FEC become smaller particularly owing to the mis-setting of initial log likelihood ratio (LLR). To solve this problem, FEC metric masking is proposed where initial LLRs for superposed subcarriers are replaced by neutral value in the receiver followed by decoding. This technique is effective, however, it needs the information about superposed frequency band. In this paper we propose a scheme to detect superposed band by using FEC metric masking. In the proposed scheme, the subcarriers where FEC metric masking is applied are changed and packet error rate (PER) is measured. When the FEC metric masking is applied to the superposed subcarriers, PER is minimized. Based on the change of PER, we can detect the superposed band. We evaluate the proposed scheme by computer simulation and show that it can detect the superposed band with high probability.
基于误差概率的初始似然掩蔽叠加带检测
多载波叠加传输方案在多个系统共享频谱的情况下,不需要任何频谱扩频技术,可以提高频率利用效率。在叠加多载波传输方案中,在子载波上采用前向纠错编码,通过交错效应减轻叠加引起的干扰影响。当干扰功率较大时,FEC的影响较小,特别是由于初始对数似然比(LLR)设置错误。为了解决这个问题,提出了FEC度量掩码,将叠加子载波的初始llr替换为接收端的中性值,然后进行解码。这种方法是有效的,但它需要叠加频带的信息。本文提出了一种利用FEC度量掩模检测叠加带的方案。在该方案中,改变采用FEC度量掩码的子载波,测量包错误率(PER)。当FEC度量掩模应用于叠加子载波时,PER被最小化。根据PER的变化,我们可以检测到叠加的波段。通过计算机仿真对该方案进行了验证,结果表明该方案能够高概率地检测到叠加频带。
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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