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A Method for Lowering Turbo Code Error Flare using Correction Impulses and Repeated Decoding

机译:使用校正脉冲降低涡轮码误差眩光的方法,并重复解码

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摘要

Turbo codes exhibit an "error floor" or "flare" making it difficult to further improve the error performance without a significant increase in the signal-to-noise ratio (SNR). The error flare is mainly characterized by the distance properties of the code. The conventional way to lower the error flare is to increase the minimum distance, which is mainly determined by the interleaver. Unfortunately, the design of interleavers that yield high minimum distances is not a simple task. In fact, the design of such interleavers for applications requiring very low frame error rates (FERs) can be a real challenge. This paper introduces a new method that significantly lowers the error flare while leaving the interleaver unchanged. It also improves the error performance in the waterfall region. The key element of this method is the insertion of correction impulses in the received codeword and the use of repeated decoding. The effectiveness of this method is demonstrated by its ability to reduce the error rate by one order of magnitude in the waterfall region and more than three orders of magnitude in the flare region for 8-state single- and double-binary turbo codes of code rate 1/3 and 1/2 that use high-spread random (HSR) interleavers and packets of 1504 bits.
机译:Turbo代码表现出“错误楼层”或“光晕”,使得难以进一步提高误差性能而不会显着增加信噪比(SNR)。错误耀斑主要是代码的距离特性。较低误差眩光的传统方式是增加最小距离,主要由交织器决定。不幸的是,互动的互动者的设计不是一个简单的任务。实际上,对于需要非常低的帧误差率(FERS)的应用的互联器的设计可能是一个真正的挑战。本文介绍了一种新方法,在将交织器保持不变时显着降低了误差眩光。它还提高了瀑布区域的错误性能。该方法的关键要素是在接收的码字中插入校正脉冲和反复解码的使用。该方法的有效性通过其在瀑布区域中减少一个级别的误差率,并且在闪光区域中为叉座和双二进制涡轮码的爆发区域中的超过三个数量级1/3和1/2使用高扩展的随机(HSR)交织器和1504位的数据包。

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