一种基于多层RLS算法的迭代自适应接收机设计,并应用于分层空时编码系统

J. Chueh, Hayoung Yang, B. Vucetic
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引用次数: 1

摘要

分层空时(LST)结构可以支持多输入多输出(MIMO)系统中高效的信号处理。目前LST系统的应用是基于飞行员辅助传输,存在降低频谱效率的问题。本文将多层递推最小二乘(RLS)自适应算法应用于LST系统中的迭代接收机结构。多层RLS算法是一种有效的干扰消除和快速收敛的方法。该多层RLS自适应迭代接收机考虑了联合检测/解码和信道估计,避免了导频的周期性插入,提高了频谱效率。将所提出的迭代自适应接收机与下界非自适应MMSE接收机进行了比较,后者假定信道状态信息(CSI)在接收机处是完全先验的。该接收机结构适用于慢时变信道的MIMO系统。仿真结果证明了多层RLS自适应接收机优于传统线性RLS接收机的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An iterative adaptive receiver design using the multi-layer RLS algorithm with applications to layered space time coded systems
Layered space-time (LST) architectures can support efficient signal processing in multiple-input multiple-output (MIMO) systems. Current applications to LST systems are based on pilot-aid transmissions, with the problem of reducing spectral efficiency. In this paper, the new adaptive algorithm called multilayer recursive least square (RLS) is applied to an iterative receiver structure in LST systems. A multi-layer RLS algorithm is an efficient method to provide accurate interference cancellation and fast convergence. This multi-layer RLS adaptive iterative receiver considers joint detection/decoding and channel estimation to avoid the periodic insertion of pilot-tones and hence improves spectral efficiency. The proposed iterative adaptive receiver is compared with a lower bound non-adaptive MMSE receiver where the channel state information (CSI) is assumed to be perfectly known a priori at the receiver. The proposed receiver structure is suitable for MIMO systems in slow time variant channels. Simulation results are supplied to demonstrate the excellent performance of the proposed multi-layer RLS adaptive receiver over a conventional linear RLS receiver.
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