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MIMO Subband Volterra Digital Predistortion for Concurrent Aggregated Carrier Communications

机译:并发聚合载波通信的MIMO子带Volterra数字预失真

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摘要

This paper presents a multiple-input multiple-output (MIMO) nonlinear mitigation technique for closely spaced concurrent aggregated carrier systems. The transmitter architecture considers band-limited sources, where the predistorter and signal bandwidth are the same, thus reducing transmitter hardware cost and power consumption. The technique relies on multirate processing and linear filtering and uses the carrier frequencies to isolate the contribution of linear and nonlinear basis functions to the desired bands. This approach can be used with any MIMO model structure. In particular, models are linear in the parameters of low computational complexity. The technique was evaluated using three concurrent carriers of 50 MHz each fed to a Doherty amplifier. The results show significant reduction in the error vector magnitude and improvements for the transmitter efficiency using the proposed compensation technique.
机译:本文提出了一种用于近距离并发聚合载波系统的多输入多输出(MIMO)非线性缓解技术。发射器架构考虑了带宽受限的源,其中预失真器和信号带宽相同,从而降低了发射器硬件成本和功耗。该技术依赖于多速率处理和线性滤波,并使用载波频率来隔离线性和非线性基函数对所需频带的影响。该方法可以与任何MIMO模型结构一起使用。特别地,模型在低计算复杂度的参数中是线性的。使用三个并发的50 MHz并行载波对技术进行了评估,每个载波均馈入Doherty放大器。结果表明,使用提出的补偿技术,误差矢量幅度显着降低,发射机效率得到改善。

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