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Multirate Layered Space-Time Coding and Successive Interference Cancellation Receivers in Quasi-Static Fading Channels

机译:准静态衰落信道中的多速率分层空时编码和连续干扰消除接收机

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摘要

We investigate the performance of multirate layered space-time coded MIMO systems with successive decoding and interference cancellation (SDIC) receivers in quasi-static Rayleigh fading channels. The proposed framework can be viewed as a class of diagonal layered space-time coded system with each of the layers is encoded independently with different rates subject to equal per-layer outage probabilities. We derive the probability density functions of the per-layer mutual informations, which can be used to estimate the per-layer rates. Using these densities we show that the proposed transceiver increases the outage capacity. We also present simulation results illustrating the outage capacity performance for a variety of transmit and receive antenna combinations and the associated near optimal per-layer rates of input signals. In particular we show that for sufficiently large numbers of transmit and receive antennas, the system can achieve near capacity in quasi-static fading environments. Based on these results, multirate codes are designed using punctured turbo codes and simulation results show significant gains in packet error-rate (PER) performances compared to that of V-BLAST architectures with lower receiver complexities.
机译:我们研究了准静态瑞利衰落信道中具有连续解码和干扰消除(SDIC)接收器的多速率分层空时编码MIMO系统的性能。所提出的框架可以看作是一类对角分层的时空编码系统,其中每一层都以不同的速率独立编码,并且每层中断概率相同。我们推导出每层互信息的概率密度函数,该函数可用于估计每层速率。使用这些密度,我们表明所提出的收发器增加了停电容量。我们还提供了仿真结果,这些仿真结果说明了各种发射和接收天线组合的停电容量性能以及相关的接近最佳的输入信号每层速率。特别是,我们表明,对于足够大量的发射和接收天线,该系统可以在准静态衰落环境中实现接近容量。基于这些结果,使用穿孔Turbo码设计了多码率码,仿真结果表明,与具有较低接收器复杂度的V-BLAST架构相比,分组误码率(PER)性能有了显着提高。

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