基于位移结构快速线性Toeplitz系统解算器的LTE下行系统快速信道估计技术研究

Abdelhakim Khlifi, R. Bouallègue
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引用次数: 0

摘要

传统的线性最小均方误差(LMMSE)信道估计技术需要O(N3)次浮点运算和O(N2)个存储位置,其中N表示信道自相关矩阵阶数。本文提出了一种基于位移结构线性系统快速求解器的LTE下行系统LMMSE信道估计技术,该方法基于广义Schur算法(GSA)的应用,只需要O(N2)次浮点运算和O(N)个存储位置。我们提出了两个快速的LMMSE信道估计器。第一种算法没有旋转,需要进行LU分解。为了避免这种需求和稳定性问题,我们在不改变算法复杂度的情况下,提出了采用部分旋转技术的第二种快速算法。通过蒙特卡罗MATLAB仿真验证了所提快速算法在误码率(BER)和均方误差(MSE)方面的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of a fast channel estimation technique for LTE Downlink systems based on fast linear Toeplitz system solver with displacement structure
The traditional Linear Minimum Mean Square Error (LMMSE) channel estimation technique costs O(N3) floating operations and O(N2) memory locations where N represents the channel autocorrelation matrix order. In this paper, we propose to study a fast LMMSE channel estimation technique for LTE Downlink systems based on a fast solver for linear system with displacement structure which is based on the application of the Generalized Schur Algorithm (GSA) which costs only O(N2) floating operations and O(N) memory locations. We propose two fast LMMSE channel estimators. The first algorithm is without pivoting which requires the LU factorization. In order to avoid this requirement and for stability issues, we propose a second fast algorithm with partial pivoting technique and without changing the algorithm complexity. The performances of proposed fast algorithms in terms of Bit Error Rate (BER) and Mean Square Error (MSE) are verified via Monte-Carlo MATLAB simulations.
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