IQ Imbalance Estimation Scheme with Weighting Factor in OFDM Direct Conversion Receivers

Yuto Masuda, M. Inamori
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Abstract

Direct conversion is a scheme of directly converting an RF signal into a baseband signal without passing through an intermediate frequency. Since a circuit for converting to an intermediate frequency is unnecessary, the circuit configuration can be simplified. However, this receiver has the problem of IQ imbalance, which is mainly due to the mismatch of the elements between I phase and the Q phase. The phase mismatch occurs when the phase difference is not exactly 90 degrees and the gain mismatch occurs due to the difference in the gain of the I phase and the Q phase of LO signal. In this paper, IQ imbalance compensation scheme is proposed. The proposed scheme compensates the IQ imbalance using pilot signals and the weighting factor with simple computational complexity. In this research, the proposed scheme is evaluated through numerical simulations. Simulation results show that the bit error rate performance is improved even in the presence of IQ imbalance.
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基于加权因子的OFDM直接转换接收机IQ不平衡估计方法
直接转换是一种不经过中频直接将射频信号转换成基带信号的方案。由于转换到中频的电路是不必要的,电路结构可以简化。但是该接收机存在IQ不平衡的问题,这主要是由于I相位和Q相位之间的元素不匹配。当相位差不完全为90度时,由于LO信号的I相和Q相的增益存在差异,就会发生相位失配。本文提出了一种IQ失衡补偿方案。该方案利用导频信号和加权因子补偿IQ不平衡,计算复杂度较低。在本研究中,通过数值模拟对该方案进行了评估。仿真结果表明,即使在IQ不平衡的情况下,误码率性能也有所提高。
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