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Efficient polynomial regression algorithm for LTE turbo decoding

机译:LTE Turbo解码的高效多项式回归算法

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In this paper, an efficient turbo decoding technique is proposed based on the polynomial regression method. The most known Logarithmic Maximum A Posteriori (Log-MAP) algorithms for turbo decoding in the Third Generation Partnership Project Long Term Evolution (3GPP LTE) is tested against most recent approaches in this area. The main reason for this work is to find the most suitable turbo decoding algorithm where the logarithmic-domain correction function is replaced with an approximation function with less complexity and close performance to the Log-MAP algorithm. One of the recent approaches replaces the logarithmic term in the Jacobian logarithmic function based on Taylor series. In the proposed approach, the approximation of the logarithmic function is performed by the polynomial regression procedure. The results show that the Taylor series algorithm achieved a satisfying bit error rate (BER) performance when compared to the Log-MAP with much less complexity and a gain of 0.38 dB when compared to the Max-Log-MAP algorithm. Moreover, the proposed efficient polynomial regression method results show that after a certain polynomial degree value the BER performance can be better than that of the Log-MAP algorithm with a 0.01 dB difference and decreased complexity as well. Also, the proposed algorithm shows an improvement of 0.07 dB compared to the recent Taylor series algorithm. A polynomial degree n = 4 is chosen according to the BER performance, processing time and the complexity of additions and multiplications procedures.
机译:本文提出了一种基于多项式回归方法的高效涡轮解码技术。在第三代伙伴关系项目长期演进(3GPP LTE)中,最令人着名的对数最大的后验最大(Log-Map)算法用于第三代伙伴关系项目长期演进(3GPP LTE),针对该区域的最新方法进行测试。这项工作的主要原因是找到最合适的Turbo解码算法,其中对数域校正函数被近似函数替换为近似函数,与日志映射算法的复杂性较差和关闭性能。最近的方法之一取代了基于泰勒系列的Jacobian对数函数中的对数术语。在所提出的方法中,对数函数的近似由多项式回归过程执行。结果表明,与MAX-Log-Map算法相比,泰勒序列算法在与日志映射相比时实现了满足误码率(BER)性能,其复杂程度得多,并且增益为0.38dB。此外,所提出的高效多项式回归方法结果表明,在某个多项式值之后,BER性能可以优于0.01dB差异的日志映射算法的性能和复杂性降低。此外,与最近的泰勒序列算法相比,所提出的算法显示出0.07dB的改善。根据BER性能,加工时间和添加和乘法过程的复杂性选择多项式N = 4。

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