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Serially concatenated space-time codes with iterative decoding and performance limits of block-fading channels

机译:具有迭代解码和块衰落通道的性能限制的串联连接的时效码

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This work considers space-time channel coding for systems with multiple-transmit and a single-receive antenna, over space uncorrelated block-fading (quasi-static) channels. Analysis of the outage probability over such channels reveals the existence of a threshold phenomenon. The outage probability can be made arbitrary small by increasing the number of transmit antennas, only if the E/sub b//N/sub 0/ is above a threshold which depends on the coding rate. Furthermore, it is shown that when the number of transmit antennas is increased, the /spl epsi/-capacity of a block-fading Rayleigh channel tends to the Shannon capacity of an additive white Gaussian noise channel. This paper also presents space-time codes constructed as a serial concatenation of component convolutional codes separated by an interleaver. These schemes provide full transmit diversity and are suitable for iterative decoding. The rate of these schemes is less than 1 bit/s/Hz, but can be made arbitrary close to 1 bit/s/Hz by the use of Wyner-Ash codes as outer components. Comparison of these schemes with structures from literature shows that performance gains can be obtained at the expense of a small decrease in rate. Computer simulation results over block-fading Rayleigh channels show that the frame-error rate of several of these schemes is within 2-3 dB from the theoretical outage probability.
机译:该工作考虑了用于具有多个发送和单接收天线的系统的时空信道编码,在空间不相关的块衰落(准静态)通道上。对这些通道的停电概率分析揭示了阈值现象的存在。仅当E / SUB B // N / SUE 0 /高于取决于编码率的阈值时,才能通过增加发射天线的数量来任意小的停电概率。此外,示出了当发射天线的数量增加时,块衰落的瑞利信道的/ SPL EPSI / -Capacity倾向于添加剂白色高斯噪声通道的Shannon容量。本文还提供了作为由交织器分开的组件卷积码的串行连接构造的时空码。这些方案提供完全发射分集,适用于迭代解码。这些方案的速率小于1位/ s / hz,但是通过使用Wyner-灰码作为外部部件,可以随意接近1位/ s / hz。这些方案与文献结构的比较表明,可以以牺牲速度的小降低为代价获得性能提升。计算机仿真结果越过瑞利渠道的横向辐射频道显示,这些方案中的几种帧误差率在理论上的中断概率中在2-3 dB内。

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