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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Analysis and Design of a Dynamic Predistorter for WCDMA Handset Power Amplifiers
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Analysis and Design of a Dynamic Predistorter for WCDMA Handset Power Amplifiers

机译:WCDMA手机功率放大器动态预失真器的分析与设计

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摘要

This paper presents a dynamic predistorter (PD), which linearizes the dynamic AM-AM and AM-PM of a wideband code division multiple access handset power amplifier (PA). The dynamic PD allows an adjacent channel leakage power ratio (ACPR) improvement of 15.7 dB, which is superior to conventional PDs that linearize static AM-AM and AM-PM. The dynamic PD was designed using an HBT generating nonlinearity, a short circuit at the baseband (les4 MHz), and a load circuit for the HBT at the RF fundamental band (ap1.95 GHz). Volterra-series analysis was performed to understand the mechanism of the dynamic PD. The analysis revealed that the short circuit at the baseband enabled the dynamic PD generating third-order intermodulation distortion (IMD3) with opposite phase to the fundamental tone (i.e., antiphase IMD3). The antiphase IMD3 allows dynamic gain compression, which linearizes the dynamic gain expansion of a PA with low quiescent current. The analysis also revealed that the IMD3 amplitude of the dynamic PD can be adjusted by load impedance at the RF fundamental band, which enables the gradient of dynamic AM-AM and AM-PM to be optimized to linearize the PA. The fabricated two-stage InGaP/GaAs HBT PA module with the dynamic PD exhibited an ACPR of -40 dBc and a power-added efficiency of 50% at an average output power of 26.8 dBm with a quiescent current of 20 mA
机译:本文提出了一种动态预失真器(PD),它可以线性化宽带码分多址手机功率放大器(PA)的动态AM-AM和AM-PM。动态PD可以将相邻信道的泄漏功率比(ACPR)提高15.7 dB,这优于线性化静态AM-AM和AM-PM的传统PD。动态PD是使用产生非线性的HBT,基带(les4 MHz)的短路以及RF基带(ap1.95 GHz)的HBT负载电路设计的。进行Volterra级数分析以了解动态PD的机制。分析表明,基带处的短路使动态PD产生了与基音相位相反的三阶互调失真(IMD3)(即,反相IMD3)。反相IMD3允许动态增益压缩,从而以低静态电流线性化PA的动态增益扩展。分析还显示,动态PD的IMD3幅度可以通过RF基带处的负载阻抗进行调整,这可以优化动态AM-AM和AM-PM的梯度,以使PA线性化。带有动态PD的两阶段InGaP / GaAs HBT PA模块的ACPR为-40 dBc,平均输出功率为26.8 dBm时,功率附加效率为50%,静态电流为20 mA

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