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Analysis and Efficient Evaluation of the BER of OSTBCs With Imperfect Channel Estimation in Arbitrarily Correlated Fading Channels

机译:任意相关衰落信道中信道估计不完善的OSTBC误码率分析和有效评估

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An analysis of the exact bit error rate (BER) performance of orthogonal space-time block codes (OSTBCs) with maximum-likelihood detection in the presence of channel estimation errors is presented. The possibly correlated coefficients of the multiple-input multiple-output (MIMO) propagation channel are assumed to be affected by flat block fading and the transmitted symbols belong to a pulse amplitude modulation or quadrature amplitude modulation signal constellation. For both square and nonsquare OSTBCs, we derive approximate and exact BER expressions, irrespective of the distribution of the fading. It is also shown how the exact expressions can be efficiently and accurately evaluated using numerical integration techniques. Their application to the arbitrarily correlated Nakagami- $m$ fading channel is presented and an efficient importance sampling technique is derived. As the high diversity order resulting from the application of OSTBCs gives rise to small BER values, the numerical evaluation of the presented BER expressions is much faster than straightforward Monte Carlo simulations. BER results have shown the impact of both imperfect channel estimation and antenna correlation on the performance of MIMO OSTBC systems. It is also shown that under highly correlated conditions, antenna correlation is the major source of BER degradation.
机译:提出了在存在信道估计误差的情况下,利用最大似然检测对正交空时分组码(OSTBC)的精确误码率(BER)性能的分析。假定多输入多输出(MIMO)传播信道的可能相关系数受到平面块衰落的影响,并且传输的符号属于脉冲幅度调制或正交幅度调制信号星座图。对于正方形和非正方形OSTBC,无论衰落的分布如何,我们都可以得出近似和精确的BER表达式。还显示了如何使用数值积分技术高效准确地评估精确的表达式。介绍了它们在任意相关的Nakagami-m $衰落信道中的应用,并推导了一种有效的重要性采样技术。由于使用OSTBC所产生的高分集阶数会导致BER值变小,因此所提供的BER表达式的数值评估比简单的蒙特卡洛模拟要快得多。 BER结果显示了不完善的信道估计和天线相关性对MIMO OSTBC系统性能的影响。还表明,在高度相关的条件下,天线相关是BER下降的主要来源。

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