GaN逆F类高效率功率放大器及线性化研究
doi: 10.3724/SP.J.1146.2011.00382
Investigation on GaN Inverse Class-F Highly Efficient Power Amplifier and Linearization
-
摘要: 效率和线性度是功率放大器的重要指标,也是设计的技术难点。该文设计了2.5-2.6 GHz 高效率GaN逆F类功率放大器,其输入输出谐波匹配网络由解析的方法设计得到。单音测试结果表明,在2.55 GHz处,功放的漏极效率超过75%。为了建立逆F类功放的行为模型进行数字预失真,对传统的Hammerstein模型进行了改进,提升了模型拟合精度,对20 MHz带宽、峰均功率比为9.6 dB的16-QAM OFDM调制信号,结合峰值因子降低技术和数字预失真技术对逆F类功放进行线性化后,功放的相邻信道功率比(ACPR)优于-48 dBc。Abstract: Efficiency and linearity are two key features and design difficulties of Power Amplifier (PA). In this paper, a 2.5-2.6 GHz highly efficient GaN inverse class-F PA is designed. The input and output harmonic matching networks are designed through analytical approach. According to single tone test, the drain efficiency of the PA is over 75% at 2.55 GHz. In order to establish the behavioral model of the proposed PA and perform digital predistortion, the conventional Hammerstein model is modified so as the modeling accuracy is improved. For a 20 MHz 16-QAM OFDM signal with Peak-to-Average Power Ratio (PAPR) of 9.6 dB, the proposed PA is linearized by combining Crest Factor Reduction (CFR) and digital predistortion techniques. After linearization, Adjacent Channel Power Ratio (ACPR) of the PA is suppressed to below -48 dBc.
-
Key words:
- Power Amplifier (PA) /
- GaN /
- Inverse class-F /
- Hammerstein model /
- Digital PreDistortion (DPD)
计量
- 文章访问数: 3350
- HTML全文浏览量: 145
- PDF下载量: 1606
- 被引次数: 0