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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >An Amplitude and Phase Mismatches Calibration Technique for the LINC Transmitter With Unbalanced Phase Control
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An Amplitude and Phase Mismatches Calibration Technique for the LINC Transmitter With Unbalanced Phase Control

机译:具有不平衡相位控制的LINC变送器的幅度和相位失配校准技术

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摘要

The linear amplifier with nonlinear components (LINC) is highly efficient because it uses a highly efficient nonlinear power amplifier (PA). However, the linearity performance of the LINC system is easily degraded by amplitude and phase mismatches between the two paths. In this paper, we propose a novel mismatch calibration technique for the LINC system that calibrates both phase and amplitude mismatches with only phase control. The technique detects mismatches between two paths without any iteration using predefined five test vector signals. In addition, this technique corrects the path mismatches using unbalanced phase control. Therefore, the proposed scheme does not require additional amplitude mismatch control blocks such as dc/dc converters or low drop output regulators (LDO). The linearity performance of the proposed LINC system is measured with 7-MHz bandwidth orthogonal frequency-division multiplexing (OFDM) signals. According to the measurement results, the proposed technique significantly enhances linearity. The measurement results also shows that the proposed LINC system satisfies the error vector magnitude (EVM) requirement for a 16-state quadratic amplitude modulation (QAM) signal ( $-$24 dB) and a 64-QAM signal ( $-$31 dB) up to 3.8- and 2.35-dB amplitude mismatches, respectively, with any phase mismatch.
机译:具有非线性分量的线性放大器(LINC)具有很高的效率,因为它使用了高效的非线性功率放大器(PA)。但是,由于两条路径之间的幅度和相位不匹配,LINC系统的线性性能很容易降低。在本文中,我们为LINC系统提出了一种新颖的失配校准技术,该技术仅通过相位控制即可校准相位和幅度失配。该技术使用预定义的五个测试矢量信号,无需任何迭代即可检测两条路径之间的失配。另外,该技术使用不平衡相位控制来校正路径失配。因此,提出的方案不需要额外的幅度失配控制块,例如dc / dc转换器或低压降输出调节器(LDO)。所提出的LINC系统的线性性能是通过7 MHz带宽正交频分复用(OFDM)信号测量的。根据测量结果,提出的技术大大提高了线性度。测量结果还表明,对于16状态二次振幅调制(QAM)信号($-$ 24 dB)和64-QAM信号($-$ 31 dB)以上,所提出的LINC系统满足误差矢量幅度(EVM)的要求。在任何相位失配的情况下,幅度失配分别为3.8和2.35 dB。

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