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A new envelope predistortion linearization architecture for handset power amplifiers

机译:手机功率放大器的新的包络预失真线性化架构

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The paper proposes a new envelope predistortion linearization architecture that utilizes low power analog components to correct intermodulation distortion (IMD) in RF power amplifiers (PAs). Log amps and phase detectors are used at the input and output of the PA to estimate the instantaneous complex gain. The outputs of the log amps and phase detector are fed back to a voltage controlled variable attenuator (VVA) and phase shifter (VVP), respectively, to correct any errors in the gain due to AM-AM or AM-PM distortion. As opposed to traditional envelope feedback approaches, this architecture achieves greater bandwidth by only feeding the distortion components back. Moreover, the distortion components are not added to the input signal as feedback, but they are used to predistort the input signal in a multiplicative manner. This architecture also allows correction of envelope memory effects that may occur in the PA. A behavioral model for Class-AB PA has been developed. The architecture has been verified by means of computer simulation using behavioral models extracted from a VVA, a VVP, and a 0.5 W GaAs HFET PA. For a cdmaOne signal with a bandwidth of 1.2288 MHz, the simulation shows an ACPR peak improvement of more than 10 dB over an output power dynamic range of 6 dB.
机译:本文提出了一种新的包络预失真线性化架构,该架构利用低功率模拟组件来校正RF功率放大器(PA)中的互调失真(IMD)。对数放大器和鉴相器用于PA的输入和输出,以估算瞬时复数增益。对数放大器和相位检测器的输出分别反馈到压控可变衰减器(VVA)和移相器(VVP),以校正由于AM-AM或AM-PM失真引起的增益误差。与传统的包络反馈方法相反,该体系结构仅通过反馈失真分量即可获得更大的带宽。此外,失真分量不会作为反馈添加到输入信号中,而是用于以乘法方式对输入信号进行预失真。这种架构还可以校正PA中可能发生的包络记忆效应。已经开发了AB类PA的行为模型。通过使用从VVA,VVP和0.5 W GaAs HFET PA中提取的行为模型进行计算机仿真,已验证了该体系结构。对于带宽为1.2288 MHz的cdmaOne信号,仿真显示,在6 dB的输出功率动态范围内,ACPR峰值改善了10 dB以上。

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