Enhanced lattice reduction algorithm for detection and precoding of MIMO systems with perfect CSI

S. Santhiya, D. Saraswady, C. Suganya
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Abstract

Multi input multi output (MIMO) system with the multiple antennas at both the transmitter and receiver is the emerging technology in the modern wireless system. MIMO systems are well adopted due to its high spectral efficiency and high data rates. For the detection of MIMO systems, a powerful technique called Lattice Reduction (LR) algorithm are used to obtain the better orthogonality in the channel matrices and is aided with the linear and low complexity detectors such as Zero forcing(ZF) and Minimum mean square error (MMSE) for the reduction in complexity. In this paper we propose a new algorithm called Enhanced lattice reduction algorithm to improve the error performance for the linear detectors with the lesser complexity and also it is aided with the non linear precoding called Tomlinson-Harashima precoding (THP) in the presence of channel state information (CSI). Lattice reduction aided with THP improves the performance linearly. BER performance of the proposed algorithm is determined and it is compared with the other LR aided algorithms in the literature.
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具有完美CSI的MIMO系统检测和预编码的改进格约简算法
多输入多输出(MIMO)系统是现代无线通信系统中的新兴技术,其发射端和接收端均采用多天线。MIMO系统由于其高频谱效率和高数据速率而被广泛采用。对于MIMO系统的检测,使用了一种强大的技术,称为晶格约简(LR)算法来获得更好的信道矩阵正交性,并辅以线性和低复杂度检测器,如零强迫(ZF)和最小均方误差(MMSE)来降低复杂度。本文提出了一种新的增强晶格约简算法来改善复杂度较低的线性检测器的误差性能,并在信道状态信息(CSI)存在的情况下辅以非线性预编码Tomlinson-Harashima预编码(THP)。THP辅助的晶格约简线性地提高了性能。确定了该算法的误码率性能,并将其与文献中其他LR辅助算法进行了比较。
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