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Adaptive decision-feedback equalization of MIMO channels using coordinate descent iterations

机译:使用坐标下降迭代的MIMO信道自适应决策反馈均衡

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A new adaptive MIMO channel equalizer is proposed based on adaptive generalized decision-feedback equalization and ordered-successive interference cancelation. The proposed equalizer comprises equal-length subequalizers, enabling any adaptive filtering algorithm to be employed for coefficient updates. A recently proposed computationally-efficient recursive least squares algorithm based on dichotomous coordinate descents is utilized to solve the normal equations associated with the adaptation of the new equalizer. Simulations show that the proposed equalizer is superior to the previously proposed adaptive MIMO channel equalizers by providing both enhanced bit error rate performance and reduced computational complexity. Furthermore, the proposed algorithm exhibits stable numerical behavior and can deliver a trade-off between performance and complexity.
机译:提出了一种基于自适应广义判决反馈均衡和有序成功干扰消除的自适应MIMO信道均衡器。所提出的均衡器包括等长子均衡器,使得能够将任何自适应滤波算法用于系数更新。利用最近提出的基于二分坐标下降的计算有效的递归最小二乘算法来求解与新均衡器的自适应相关的正则方程。仿真表明,通过提供增强的误码率性能和降低的计算复杂度,所提出的均衡器优于先前提出的自适应MIMO信道均衡器。此外,所提出的算法表现出稳定的数值行为并且可以在性能和复杂度之间进行折衷。

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