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Design and performance of space-time trellis codes for rapid Rayleigh fading channels

机译:快速瑞利衰落信道的时空网格码的设计和性能

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摘要

Space-Time (ST) codes are known to provide high transmission rates, diversity and coding gains. In this paper, a tight upper bound on the error probability of ST codes over rapid fading channels is presented. Moreover, ST codes suitable for rapid fading channels are presented. These codes are designed using the QPSK and 16-QAM signal constellations. The proposed codes are based on two different encoding schemes. The first scheme uses a single trellis encoder, whereas the second scheme uses the I-Q encoding technique. Code design is achieved via partitioning the signal space such that the design criteria are maximized. As a solution for the decoding problem of I-Q ST codes, the paper introduces a low-complexity decoding algorithm. Results show that the I-Q ST codes using the proposed decoding algorithm outperform singleencoder ST codes with equal complexity. The proposed codes are tested over fading channels with different interleaving conditions, where it is shown that the new codes are robust under such imperfect interleaving conditions.
机译:众所周知,空时(ST)码可提供高传输速率,分集和编码增益。本文提出了快速衰落信道上ST码错误概率的严格上限。此外,提出了适用于快速衰落信道的ST代码。这些代码是使用QPSK和16-QAM信号星座图设计的。提议的代码基于两种不同的编码方案。第一种方案使用单个网格编码器,而第二种方案使用I-Q编码技术。通过划分信号空间来实现代码设计,从而最大化设计标准。为解决I-Q ST码的解码问题,本文介绍了一种低复杂度的解码算法。结果表明,使用相同解码算法的I-Q ST码在相同复杂度方面优于单编码器ST码。在具有不同交织条件的衰落信道上对提出的代码进行了测试,结果表明,在这种不完美的交织条件下,新代码是健壮的。

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