Computationally Stable MIMO Digital Predistortion for Power Amplifier based on Orthogonal Polynomial

Shipra, Ashish Kumar, M. Rawat
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Abstract

This study introduces orthogonal polynomials, a useful tool for simulating power amplifier behaviour and linearizing utizing Digital Predistortion (DPD). The numerical stability of the system is improved by using an orthogonal polynomial basis. The representation is compared to the conventional polynomial in terms of numerical stability for the $4\times 4$ MIMO system. LTE-OFDM signals were used to test the performance of the proposed DPD. The observed ACPR and NMSE of the OFDM signal were enhanced from −29 dB to −50 dB and from −8 dB to −35 dB by adopting the suggested DPD linearization topology.
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基于正交多项式的功率放大器计算稳定MIMO数字预失真
本研究引入正交多项式,这是模拟功放行为和利用数字预失真(DPD)进行线性化的有用工具。采用正交多项式基提高了系统的数值稳定性。在$4\ × 4$ MIMO系统的数值稳定性方面,将该表示与传统多项式进行了比较。使用LTE-OFDM信号测试了所提出的DPD的性能。采用所提出的DPD线性化拓扑,OFDM信号的ACPR和NMSE分别从−29 dB和−8 dB提高到−50 dB和−35 dB。
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