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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Non-unitary precoder design for reducing feedback overhead in MIMO-OFDM systems
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Non-unitary precoder design for reducing feedback overhead in MIMO-OFDM systems

机译:非单一预编码器设计,用于减少MIMO-OFDM系统中的反馈开销

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摘要

The precoder feedback overhead in MIMO-OFDM systems is heavy as the number of subcarriers is usually large. Most of the current limited feedback works focus on unitary precoding schemes. Based on the fact that the channel matrices of neighboring subcarriers in MIMO-OFDM systems are correlated, an alternative transceiver is proposed here. In this paper, non-unitary precoders shared by several adjacent subcarriers, and the corresponding individual equalizers are jointly designed under partial CSI. As the number of precoding matrices is smaller, the feedback overhead can be reduced. The transceivers are designed to minimize the detection mean-squared error (MSE) under the total transmit power constraint. A convergent iterative algorithm based on the Lagrange multipliers method is proposed. The necessary conditions for an optimal transceiver, Karush-Kuhn-Tucker (KKT) conditions, are satisfied in each iteration. Numerical results under the frequency-selective MIMO-OFDM channel, which is generated by the classical Zheng and Xiao's model, prove that the proposed transceiver can significantly reduce the feedback overhead without severe performance degradation.
机译:MIMO-OFDM系统中的预编码器反馈开销很大,因为子载波的数量通常很大。当前大多数有限的反馈工作都集中在单一预编码方案上。基于MIMO-OFDM系统中相邻子载波的信道矩阵相关的事实,在此提出一种替代收发器。在本文中,部分CSI下联合设计了几个相邻子载波共享的非-元预编码器和相应的均衡器。由于预编码矩阵的数量较小,因此可以减少反馈开销。收发器设计为在总发射功率约束下将检测均方误差(MSE)降至最低。提出了一种基于拉格朗日乘数法的收敛迭代算法。每次迭代都满足最佳收发器的必要条件,即Karush-Kuhn-Tucker(KKT)条件。由经典的郑和晓模型生成的频率选择MIMO-OFDM信道下的数值结果证明,所提出的收发器可以显着减少反馈开销,而不会严重降低性能。

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