Enhanced Cross-Entropy Based Stopping Criteria at Low Signal-to-Noise Ratio Regions

M. Ibrahim, R. Mohamad, N. M. Anas
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Abstract

This paper presents an enhancement of Cross-Entropy (CE)-based stopping criteria at a low signal-to-noise ratios (SNRs) region. The existing CE-based stopping criteria fail to stop the iteration and cause the maximum iteration at low SNRs. Intuitively, this work enhances the CE stopping criterion by combining with the Average-Entropy (AE) stopping criteria. The work also proposes a set of a stopping rule to distinguish the SNR between low and high region. These approaches are then thoroughly analyses in terms of the required average iteration number (AIN), as well as its bit-error-rate (BER) performance. The simulation results show that the enhanced CE able to reduce the AIN compared to existing CE-based stopping criteria while the BER is maintained. Hence, the enhanced CE-based stopping criterion make the decoder more efficient, in terms of reduction in the time delay while increasing turbo codes performance.
低信噪比区域增强的基于交叉熵的停车准则
本文提出了一种在低信噪比(SNRs)区域增强的基于交叉熵的停止准则。现有的基于ce的停止准则无法停止迭代,导致在低信噪比下迭代最大。直观地,本工作通过结合平均熵(AE)停止准则增强了CE停止准则。本文还提出了一套区分高、低信噪比的停止规则。然后根据所需的平均迭代次数(AIN)及其误码率(BER)性能对这些方法进行彻底分析。仿真结果表明,在保持误码率的前提下,与现有的基于误码率的停车准则相比,改进后的停车准则能够降低AIN。因此,基于增强ce的停止准则使解码器在减少时间延迟的同时提高turbo码的性能,从而更加高效。
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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