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Optimal training sequences for MIMO systems under correlated fading

Optimal training sequences for MIMO systems under correlated fading
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摘要 The optimal design of training sequences for channel estimation in multiple-input multiple-output (MIMO) systems under spatially correlated fading is considered. The channel is assumed to be a block-fading model with spatial correlation known at both the transmitter and the receiver. To minimize the channel estimation error, optimal training sequences are designed to exploit full information of the spatial correlation under the criterion of minimum mean square error (MMSE). It is investigated that the spatial correlation is helpful to decrease the estimation error and the proposed training sequences have good performance via simulations. The optimal design of training sequences for channel estimation in multiple-input multiple-output (MIMO) systems under spatially correlated fading is considered. The channel is assumed to be a block-fading model with spatial correlation known at both the transmitter and the receiver. To minimize the channel estimation error, optimal training sequences are designed to exploit full information of the spatial correlation under the criterion of minimum mean square error (MMSE). It is investigated that the spatial correlation is helpful to decrease the estimation error and the proposed training sequences have good performance via simulations.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2008年第1期33-38,共6页 系统工程与电子技术(英文版)
基金 the National Science Foundation for Distinguished Young Scholars (60725105) the SixthProject of the Key Project of National Nature Science Foundation of China (60496316) the National "863" Project (2007AA012288) the National Nature Science Foundation of China (60572146) the "111" Project (B08038).
关键词 MIMO channel estimation training sequences spatial correlation minimum mean square error MIMO, channel estimation, training sequences, spatial correlation, minimum mean square error
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参考文献10

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