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An Experimental Study on Reduced-Complexity Multi-Band Digital Predistorter with a Single Common Feedback Loop

机译:具有单个常见反馈回路的减速复杂性多频段数字预失真器的实验研究

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This paper proposes how to modify the reduced-complexity multi-band digital predistorter (DPD) with a single common feedback loop we previously proposed, in order to compensate for nonlinear distortions significantly where imperfection of the analog circuit actually exists. Our proposed DPD utilizes a single common feedback loop in order to acquire a feedback signal obtained by overlapping multi-band feedback signals in the frequency domain for adaptive DPD, and compensates for nonlinear distortions using estimated feedback signals obtained by subtracting the transmitting signal on another band from the overlapped feedback signal; this achieves a 63% reduction in complexity. This paper also reveals the mechanism of adjacent channel leakage ratio (ACLR) degradation caused by the imperfection of the analog circuit and the amount of allowed cancellation error in the estimated feedback signals. Our proposed DPD is modified to work well particularly when the gain difference between low and high bands exists in a single common feedback loop that has non-flat frequency response. Some experimental results for a commercial Mini-Circuits wideband power amplifier show that the modified DPD can achieve good ACLR performance significantly with reduced complexity and it is revealed that the modified DPD can work flexibly without dependency on transmitting signal bandwidth.
机译:本文提出了如何用我们之前提出的单个常见反馈回路修改减速复杂性多频段数字预失真器(DPD),以便显着补偿非线性扭曲,其中模拟电路实际上存在。我们所提出的DPD利用单个公共反馈回路来获取通过在适自适应DPD中的频域中的多波段反馈信号获得的反馈信号,并且使用通过通过在另一个频带上减去发送信号而获得的估计反馈信号来补偿非线性失真从重叠的反馈信号;这达到了63%的复杂性。本文还揭示了由模拟电路的缺陷引起的相邻信道泄漏比(ACLR)劣化的机制以及估计的反馈信号中的允许取消误差的量。我们所提出的DPD被修改为特别好的方式,特别是当在具有非平坦频率响应的单个常见反馈回路中存在低频和高频带之间的增益差异时。一些商业迷你电路宽带功率放大器的实验结果表明,改进的DPD可以显着实现良好的ACLR性能,随着复杂性的降低,揭示了改进的DPD可以灵活地工作而不依赖于发送信号带宽。

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