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EM-Based Joint Channel Estimation and IQ Imbalances for OFDM Systems

机译:OFDM系统中基于EM的联合信道估计和IQ不平衡

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The imbalances between the In-phase (I) and Quadrature-phase (Q) branches represent a significant source of impairment in the orthogonal frequency division multiplexing (OFDM) systems. Recently, it has been shown that the unwanted IQ imbalances can be actually exploited to achieve a diversity gain. In this contribution, by taking into account the diversity gain resulting from the IQ imbalances, we develop a novel algorithm to jointly estimate the channel impulse response and IQ imbalances occurring at both the transmitter and receiver. Starting from the Maximum Likelihood (ML) principle, we derive an estimation algorithm based on the expectation maximization (EM) algorithm, which exploits information from the pilot symbols and detected data symbols in a systematic fashion. To reduce the complexity of the estimation algorithm, a sub-optimal scheme is also introduced. The results indicate that the proposed algorithms achieve a significant improvement in the bit error rate (BER) performance after three iterations as compared to conventional data-aided algorithms.
机译:同相(I)和正交(Q)分支之间的不平衡是正交频分复用(OFDM)系统中损害的重要来源。最近,已经表明,实际上可以利用不需要的IQ不平衡来实现分集增益。在此贡献中,通过考虑因IQ失衡而导致的分集增益,我们开发了一种新颖的算法来共同估计在发射器和接收器处出现的信道脉冲响应和IQ不平衡。从最大似然(ML)原理开始,我们基于期望最大化(EM)算法推导了一种估计算法,该算法以系统的方式利用了来自导频符号和检测到的数据符号的信息。为了降低估计算法的复杂性,还引入了次优方案。结果表明,与传统的数据辅助算法相比,所提出的算法经过三轮迭代后,在误码率(BER)性能上有了显着提高。

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