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Design of a memory polynomial predistorter for wideband envelope tracking amplifiers

机译:宽带包络跟踪放大器的存储器多项式预失真器设计

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摘要

Efficiency and linearity of the microwave power amplifier are critical elements for mobile communication systems. A memory polynomial baseband predistorter based on an indirect learning architecture is presented for improving the linearity of an envelope tracing (ET) amplifier with application to a wireless transmitter. To deal with large peak-to-average ratio (PAR) problem, a clipping procedure for the input signal is employed. Then the system performance is verified by simulation results. For a single carrier wideband code division multiple access (WCDMA) signal of 16-quadrature amplitude modulation (16-QAM), about 2% improvement of the error vector magnitude (EVM) is achieved at an average output power of 45.5 dBm and gain of 10.6 dB, with adjacent channel leakage ratio (ACLR) of −64.55 dBc at offset frequency of 5 MHz. Moreover, a three-carrier WCDMA signal and a third-generation (3G) long term evolution (LTE) signal are used as test signals to demonstrate the performance of the proposed linearization scheme under different bandwidth signals.
机译:微波功率放大器的效率和线性度是移动通信系统的关键要素。提出了一种基于间接学习架构的存储器多项式基带预失真器,用于改善包络跟踪(ET)放大器的线性度并应用于无线发射机。为了处理大的峰均比(PAR)问题,对输入信号采用了削波程序。然后通过仿真结果验证了系统性能。对于16正交幅度调制(16-QAM)的单载波宽带码分多址(WCDMA)信号,平均输出功率为45.5 dBm,增益为时,误差矢量幅度(EVM)大约可提高2%。 10.6 dB,偏移频率为5 MHz时,相邻信道泄漏比(ACLR)为-64.55 dBc。此外,将三载波WCDMA信号和第三代(3G)长期演进(LTE)信号用作测试信号,以证明所提出的线性化方案在不同带宽信号下的性能。

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