基于AWGN和衰落信道的串联卷积编码器的SOVA译码和CPM方案

Manjeet Singh, I. Wassell
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引用次数: 2

摘要

研究了连续相位调制(CPM)。我们采用分解后的CPM模型,将模型分解为连续相位编码器(CPE)和无记忆调制器(MM)。这使我们能够专注于编码方面,而不受调制器的干扰。通过设计卷积信道编码器(CE),使其在与CPE相同的代数上运行,可以将CE和CPE组合在一起,并以统一的方式处理。这种组合称为扩展CE,因为CPE实际上是CE的扩展,并且是一个卷积编码器。本文将模4环上的1/2速率CE与调制指数为h=1/4的四元CPM方案的CPE相结合。采用这种栅格编码调制设计,设计了一种内部编码器为四元扩展CE,外部编码器为四元卷积编码器的串行级联信道编码系统。采用SOVA解码。仿真结果表明,在信噪比为0.3 dB时,AWGN信道的误码率为2.6/spl倍/10/sup -4/。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SOVA decoding of concatenated convolutional encoders and CPM scheme over AWGN and fading channels
Continuous phase modulation (CPM) is investigated. We employ the decomposed CPM model where the model is decomposed into a continuous phase encoder (CPE) and a memoryless modulator (MM). This allows us to concentrate on the encoding aspects without interference from the modulator. By designing a convolutional channel encoder (CE), to operate over the same algebra as the CPE, the CE and the CPE can be combined and treated in a unified manner. This combination is called an extended CE, as the CPE is effectively an extension of the CE and is a convolutional encoder. In this research, a 1/2 rate CE over the ring of integers modulo 4 is combined with the CPE of a 4-ary CPM scheme whose modulation index is h=1/4. Using this trellis coded modulation design the paper explains the design of a serially concatenated channel coded system, where the inner encoder is the quaternary extended CE and the outer encoder a quaternary convolutional encoder. SOVA decoding is employed. Simulations show that a BER of 2.6/spl times/10/sup -4/ at 0.3 dB SNR is obtainable in an AWGN channel.
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