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Decoding of LTE Turbo Codes Initialized with the Two Recursive Convolutional Codes

机译:用两个递归卷积码初始化的LTE Turbo码的解码

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Turbo codes were the first error-correcting codes that demonstrated reliable communications near the channel capacity with practically feasible hardware. Due to their excellent error-correcting capability, they are part of many modern communication technologies, like 3G, 4G, LTE, etc. An LTE turbo encoder is a rate-1/3 systematic encoder made of a first 8-state recursive convolutional encoder and a second 8-state recursive convolutional encoder. Recursive convolutional encoders are identical, coupled in parallel concatenation scheme, and connected with pseudo-random QPP interleaver. The decoding of LTE Turbo codes is iterative. One iteration starts with decoding of the first convolutional code and continues with decoding the second convolutional code. In order to achieve higher decoding speeds, recursive convolutional codes are decoded with the MAX-Log-MAP algorithm. In this paper, we decode LTE turbo codes with two decoding processes. In one of the decoding processes iterations start with the first convolution code, wherein in the other decoding process iterations start with the second convolution code. We combine the results of both decoding processes to improve turbo decoding process. In channel coding in many communications systems, the speed of decoding is the main design goal. Proposed decoding technique may be used to reduce the number of iterations of LTE turbo decoders, thus improving the decoding speed.
机译:Turbo码是第一个纠错码,它通过实用的硬件证明了在信道容量附近的可靠通信。由于其出色的纠错能力,它们是许多现代通信技术(如3G,4G,LTE等)的一部分。LTE Turbo编码器是由第一个8状态递归卷积编码器制成的1/3速率系统编码器第二个8态递归卷积编码器。递归卷积编码器是相同的,以并行级联方案耦合,并与伪随机QPP交织器连接。 LTE Turbo码的解码是迭代的。一个迭代开始于对第一卷积码的解码,并且继续于对第二卷积码的解码。为了获得更高的解码速度,使用MAX-Log-MAP算法对递归卷积码进行解码。在本文中,我们通过两种解码过程对LTE Turbo码进行解码。在一个解码过程中,迭代以第一卷积码开始,其中,在另一个解码过程中,迭代以第二卷积码开始。我们结合两个解码过程的结果来改进turbo解码过程。在许多通信系统的信道编码中,解码的速度是主要的设计目标。提出的解码技术可以用于减少LTE Turbo解码器的迭代次数,从而提高解码速度。

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