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Random coding error exponents for two-dimensional flat fading channels with complete channel state information

机译:具有完整信道状态信息的二维平坦衰落信道的随机编码误差指数

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In this correspondence, we consider the random coding error exponent for nondispersive two-dimensional (2-D) (quadrature) fading channels for which the channel state information (CSI) is perfectly known at the receiver and the input to the transmitter is constrained in its average power. Also, the effect of space diversity on improving the performance is demonstrated. The results obtained in this correspondence shed light on the effect of fading on communications reliability as well as the amount of coding complexity required to achieve a certain decoding error rate. A treatment for the random coding error exponent for time-correlated flat fading channels with Rayleigh fading and Bessel function correlation (the Jake's model) is also provided.
机译:在这种对应关系中,我们考虑了非色散二维(2-D)(正交)衰落信道的随机编码误差指数,对于该信道,其接收器的信道状态信息(CSI)是完全已知的,并且发送器的输入受到限制它的平均功率。此外,还展示了空间多样性对提高性能的影响。在这种对应关系中获得的结果揭示了衰落对通信可靠性的影响,以及实现一定解码错误率所需的编码复杂度。还提供了利用瑞利衰落和贝塞尔函数相关(杰克模型)对时间相关平坦衰落信道的随机编码误差指数进行处理的方法。

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