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Implementation and Performance of DSP-Oriented Feedforward Power Amplifier Linearizer

机译:面向DSP的前馈功率放大器线性化器的实现和性能

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In this paper, a digital signal processing-oriented implementation of feedforward power amplifier linearizer (DSP-FF) is introduced. In DSP-FF, the signal and error cancellation circuits are implemented, partially, in the DSP regime. By doing so, the number of bulky radio frequency (RF) components is reduced and their functionality is replaced by more flexible DSP circuitry and also various implementation nonidealities can be efficiently controlled. A two-stage estimation approach stemming from least-squares model fitting is proposed to identify proper DSP-FF coefficients. This improves the linearization performance by decoupling the effects of estimation inaccuracies between the two DSP-FF circuits. Furthermore, a comprehensive performance analysis of DSP-FF is carried out, taking also the memory of the core power amplifier into account. In particular, a closed-form expression for the intermodulation distortion reduction is derived in terms of the errors in the circuit coefficients. Also the measurement noise effects and large sample properties of the estimators are analyzed. The outcomes of computer simulated experiments verify the analytical results which are presented in this paper. Moreover, laboratory measurement setup utilizing a highly nonlinear RF power amplifier and contemporary telecommunication waveform demonstrates the linearization capability of the DSP-FF in terms of improvement in the measured adjacent channel leakage ratio.
机译:本文介绍了一种面向数字信号处理的前馈功率放大器线性化器(DSP-FF)实现。在DSP-FF中,信号和错误消除电路部分地在DSP机制中实现。通过这样做,减少了庞大的射频(RF)组件的数量,并且其功能被更灵活的DSP电路所取代,并且各种实现非理想性也可以得到有效控制。提出了一种基于最小二乘模型拟合的两阶段估计方法来识别适当的DSP-FF系数。通过将两个DSP-FF电路之间的估计误差的影响去耦,可以改善线性化性能。此外,还考虑了核心功率放大器的存储器,对DSP-FF进行了全面的性能分析。特别地,根据电路系数中的误差导出用于减小互调失真的闭合形式。还分析了测量噪声的影响和估计量的大样本属性。计算机模拟实验的结果验证了本文提出的分析结果。此外,利用高度非线性的RF功率放大器和现代电信波形的实验室测量设置证明了DSP-FF的线性化能力,可以改善测量到的相邻信道泄漏率。

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