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Variable rate and variable power MQAM system based on Bayesian bit error rate, and channel estimation techniques

机译:基于贝叶斯比特误码率的变率变功率MQAM系统及信道估计技术

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摘要

The impact of inaccurate channel state information at the transmitter for a variable rate variable power multilevel quadrature amplitude modulation (VRVP-MQAM) system over a Rayleigh flat-fading channel is investigated. A system model is proposed with rate and power adaptation based on the estimates of instantaneous signal-to-noise ratio (SNR) and bit error rate (BER). A pilot symbol assisted modulation scheme is used for SNR estimation. The BER estimator is derived using a maximum a posteriori approach and a simplified closed-form solution is obtained as a function of only the second order statistical characterization of the channel state imperfection. Based on the proposed system model, rate and power adaptation is derived for the optimization of spectral efficiency subject to an average power constraint and an instantaneous BER requirement. The performance of the VRVP-MQAM system under imperfect channel state information (CSI) is evaluated. We show that the proposed VRVP-MQAM system that employs optimal solutions based on the statistical characterization of CSI imperfection achieves a higher spectral efficiency as compared to an ideal CSI assumption based method
机译:对于瑞利平坦衰落信道上可变速率可变功率多电平正交幅度调制(VRVP-MQAM)系统,研究了发射机处信道状态信息不正确的影响。提出了一种基于瞬时信噪比(SNR)和误码率(BER)估计的速率和功率自适应的系统模型。导频符号辅助调制方案用于SNR估计。 BER估计器是使用最大后验方法导出的,并且简化的闭式解仅根据信道状态缺陷的二阶统计特征来获得。基于所提出的系统模型,导出速率和功率自适应,以在受到平均功率约束和瞬时BER要求的情况下优化频谱效率。评估在不完善的信道状态信息(CSI)下的VRVP-MQAM系统的性能。我们表明,与基于理想CSI假设的方法相比,采用基于CSI缺陷统计特征的最佳解决方案的拟议VRVP-MQAM系统可实现更高的频谱效率

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