一种带比特流调制和有源噪声滤波的x波段GaN功率放大器

Yonghoon Song, Rui Zhu, Y. Wang
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引用次数: 2

摘要

功率放大器(PAs)采用比特流调制,如包络δ - σ调制(EDSM),以克服线性和效率之间的权衡,在射频发射机信号与复杂调制。带EDSM的比特流放大器的基本思想是将模拟包络转换为数字化包络,从而使放大器能够在多个离散的驱动点上驻留,从而实现高效率的工作。然而,为了保证高功率效率,必须以无损的方式抑制比特流调制产生的量化噪声。噪声功率的抑制传统上是通过无源滤波器实现的,这会导致额外的功率损失和体积庞大。本文采用有源噪声滤波技术,利用不同相位延时下驱动的多个相同滤波器单元之间的负载调制来抑制比特流发射机中的量化噪声功率。基于Triquint的0.25um分立GaN HEMT器件,已经制造出工作在x波段的GaN PA。为了实现有源噪声滤波的目的,将两个滤波器组合在一起。由5MHz带宽、峰值平均比(PAPR)为5.3dB的单通道WCDMA信号驱动,输出功率为35.6 dBm,漏极效率(DE)为42.8%,功率附加效率(PAE)为33.5%。在PA的输出频谱中也观察到导致显著噪声功率降低的有源噪声滤波特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A X-band GaN power amplifier with Bitstream modulations and active noise filtering
Power amplifiers (PAs) using Bitstream modulations such as Envelope Delta-Sigma Modulations (EDSM) have been proposed to overcome the trade-off between the linearity and efficiency in RF transmitters for signals with complex modulations. The essential idea of Bitstream amplifiers with EDSM is to translate the analogue envelope to digitized envelope so the PA can settle in several discrete driving points for high efficiency operation. The quantization noise generated due to the Bitstream modulation, however, must be rejected in a lossless fashion to guarantee the high power efficiency. The suppression of the noise power has been traditionally achieved with a passive filter, which incurs additional power loss and bulky volumes. In this paper, an active noise filtering technique is applied to suppress the quantization noise power in Bitstream transmitters by leveraging on the load modulation between the multiple identical units of PAs driven under different phase delays. A GaN PA operating at X-band has been fabricated based on Triquint's 0.25um discrete GaN HEMT devices. Two units of PAs are combined for the purpose of the active noise filtering. Driven by a single-channel WCDMA signal with 5MHz bandwidth and peak-to-average ratio (PAPR) of 5.3dB, it delivers a 35.6 dBm output power with 42.8 % drain efficiency (DE) and 33.5 % power added efficiency (PAE). The active noise filtering characteristics leading to a significant noise power reduction has also been observed in the output spectrum of the PA.
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