SAGE algorithm for channel estimation and data detection with tracking the channel variation in MIMO system

Takao Someya, T. Ohtsuki
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引用次数: 8

Abstract

In MIMO systems, channel estimation is important to distinguish transmit signals from multiple transmit antennas. The space-alternating generalized expectation-maximization (SAGE) algorithm is known to be good for channel estimation and data detection. However, the SAGE algorithm has not been applied to MIMO systems. In this paper, we propose a SAGE algorithm for the channel estimation and data detection in MIMO systems. In addition, we propose a simplified SAGE algorithm for the channel estimation and data detection by tracking the channel variation in MIMO systems. In the simplified SAGE algorithm, we divide a transmit frame into some subblocks and apply the SAGE algorithm to each subblock, and we use the channel estimates in the previous subblock as the initial channel estimates in the current subblock. According to the division of the transmit frame, the computational complexity is decreased. In addition, the simplified SAGE algorithm can track the channel variation by using the channel estimates transferred between the subblocks.
基于SAGE算法的MIMO系统信道估计与数据检测
在MIMO系统中,信道估计对于从多个发射天线中区分发射信号非常重要。空间交替广义期望最大化(SAGE)算法被认为是信道估计和数据检测的好方法。然而,SAGE算法尚未应用于MIMO系统。本文提出了一种用于MIMO系统中信道估计和数据检测的SAGE算法。此外,我们还提出了一种简化的SAGE算法,通过跟踪MIMO系统中的信道变化来进行信道估计和数据检测。在简化的SAGE算法中,我们将传输帧分成若干个子块,并对每个子块应用SAGE算法,并使用前一个子块中的信道估计作为当前子块中的初始信道估计。根据传输帧的划分,降低了计算复杂度。此外,简化的SAGE算法可以利用子块之间传递的信道估计来跟踪信道变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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