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Digital predistortion with automatic determination of the Crest Factor Reduction gain, principle and experimental validation

机译:具有自动确定波峰因数减小增益的数字预失真,原理和实验验证

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Digital predistortion (DPD) and Crest Factor Reduction (CFR) are applied separately in radio frequency power amplifiers (PAs) in general. This paper proposes a method to jointly optimize DPD and CFR. For a given model of predistorter our solution gives automatically the Peak to average power ratio (PAPR) reduction gain to be applied by the CFR module. Within the DPD module PAPRs of original input signal and PA output and PAPR at predistorter output without CFR are used to estimate an optimal CFR gain through mathematical calculations. The combined CFR/DPD module ensures that the PAPR at the output of predistorter will not exceed a given limit. Hence, the envelope clipping module which is typically present to protect the PA, may be removed. In addition the proposed method offers a higher operating range of the DPD while fulfilling out-of band requirements and preserving low in-band distortion. Power efficiency of amplification module is improved as well. This solution has been tested by simulation and measurement on a 10-W class AB LDMOS power amplifier.
机译:通常,数字预失真(DPD)和降低波峰因数(CFR)分别应用于射频功率放大器(PA)。本文提出了一种共同优化DPD和CFR的方法。对于给定的预失真器模型,我们的解决方案会自动给出CFR模块要应用的峰均功率比(PAPR)降低增益。在DPD模块中,原始输入信号和PA输出的PAPR以及不带CFR的预失真器输出的PAPR用于通过数学计算来估计最佳CFR增益。组合的CFR / DPD模块可确保预失真器输出的PAPR不会超过给定的限制。因此,可以去除通常用于保护PA的信封剪切模块。另外,所提出的方法在满足带外要求并保持低带内失真的同时,提供了更高的DPD工作范围。放大模块的电源效率也得到改善。该解决方案已经在10 W AB类LDMOS功率放大器上通过仿真和测量进行了测试。

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