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首页> 外文期刊>IEICE Transactions on Electronics >A Novel Predistorter Design for Nonlinear Power Amplifier with Memory Effects in OFDM Communication Systems Using Orthogonal Polynomials
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A Novel Predistorter Design for Nonlinear Power Amplifier with Memory Effects in OFDM Communication Systems Using Orthogonal Polynomials

机译:具有正交多项式的OFDM通信系统中具有记忆效应的非线性功率放大器的新型预失真器设计

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摘要

Orthogonal frequency division multiplexing (OFDM) signals have high peak-to-average power ratio (PAPR) and cause large nonlinear distortions in power amplifiers (PAs). Memory effects in PAs also become no longer ignorable for the wide bandwidth of OFDM signals. Digital baseband predistorter is a highly efficient technique to compensate the nonlinear distortions. But it usually has many parameters and takes long time to converge. This paper presents a novel predistorter design using a set of orthogonal polynomials to increase the convergence speed and the compensation quality. Because OFDM signals are approximately complex Gaussian distributed, the complex Hermite polynomials which have a closed-form expression can be used as a set of orthogonal polynomials for OFDM signals. A differential envelope model is adopted in the predistorter design to compensate nonlinear PAs with memory effects. This model is superior to other predistorter models in parameter number to calculate. We inspect the proposed predistorter performance by using an OFDM signal referred to the IEEE 802.11a WLAN standard. Simulation results show that the proposed predistorter is efficient in compensating memory PAs. It is also demonstrated that the proposal acquires a faster convergence speed and a better compensation effect than conventional predistorters.
机译:正交频分复用(OFDM)信号具有较高的峰均功率比(PAPR),并在功率放大器(PA)中引起较大的非线性失真。对于OFDM信号的宽带宽,PA中的记忆效应也不再可忽略。数字基带预失真器是一种补偿非线性失真的高效技术。但是它通常具有许多参数,并且需要很长时间才能收敛。本文提出了一种新颖的预失真器设计,它使用一组正交多项式来提高收敛速度和补偿质量。因为OFDM信号近似为复高斯分布,所以具有封闭形式的复Hermite多项式可以用作OFDM信号的一组正交多项式。预失真器设计中采用差分包络模型来补偿具有记忆效应的非线性PA。该模型在参数编号方面要优于其他预失真器模型。我们通过使用参考IEEE 802.11a WLAN标准的OFDM信号来检查建议的预失真器性能。仿真结果表明,所提出的预失真器可以有效地补偿存储功率放大器。还证明了该方案比常规预失真器具有更快的收敛速度和更好的补偿效果。

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