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FREQUENCY-DOMAIN CHANNEL ESTIMATION IN MIMO-OFDM

机译:MIMO-OFDM中的频域信道估计

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In this work, we propose a simple, yet flexible channel estimator for MIMO-OFDM systems. It works in the frequency domain, by interpolating among the estimates done in a small number of subcarriers. Our estimator can be easily used in either acquisition (preamble-based) or tracking (pilot-tones based) mode, and its structure remains the same for any type of training pattern in the two-dimensional time-frequency space. We also propose efficient preambles that allow identification of the MIMO channel with the lowest sacrifice in data rate. The training sequence we advocate consists of a set of OFDM symbols endowed with orthogonality properties, whose duration is much lower than the number of OFDM subcarriers, and which is robust against frequency misalignments. The feasibility of our approach is substantiated by computer simulation results obtained for IEEE 802.16 broad-hand fixed wireless channel models.
机译:在这项工作中,我们提出了一种简单而灵活的MIMO-OFDM系统信道估计器。通过在少量子载波中完成的估计之间进行内插,它可以在频域中工作。我们的估计器可以轻松地用于获取(基于前同步码)或跟踪(基于飞行员音调)模式,并且其结构对于二维时频空间中的任何类型的训练模式均保持不变。我们还提出了有效的前同步码,可以以最小的数据速率牺牲来识别MIMO信道。我们提倡的训练序列由一组具有正交性的OFDM符号组成,其持续时间远小于OFDM子载波的数量,并且对于频率失调具有鲁棒性。我们为IEEE 802.16广义固定无线信道模型获得的计算机仿真结果证实了我们方法的可行性。

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