Agnostic Envelope Linearization of Dynamically Supplied Power Amplifiers for Mobile Terminals

被引:1
|
作者
Li, Wantao [1 ]
Montoro, Gabriel [1 ]
Gilabert, Pere L. [1 ]
机构
[1] Univ Politecn Catalunya UPC, Dept Signal Theory & Commun, Barcelona Tech, Barcelona 08034, Spain
关键词
digital predistortion; envelope tracking; power amplifier; RF leakage;
D O I
10.3390/s22103773
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This paper presents an envelope linearization technique to compensate for the nonlinear distortion of envelope tracking (ET) power amplifiers (PAs) for 5G new radio (NR) mobile terminals. The proposed envelope optimization (EOPT) method is agnostic of the nonlinear distortion generated in the envelope supply path and can compensate for the nonlinear distortion at the ET PA output without the need to monitor the output at the envelope tracking modulator (ETM). The linearization system in the envelope path is based on the envelope generalized memory polynomial (EGMP) behavioral model. Since the ETM output is not available, an iterative nonlinear least squares solution inspired in the deep deterministic policy gradient (DDPG) algorithm is proposed to extract the coefficients of the EGMP model. The EOPT method is validated on a system-on-chip (SoC) ET PA board designed for mobile terminal applications. Experimental results show the suitability of the proposed method to guarantee the linearity requirements (i.e., adjacent channel power ratio below -36 dBc) with 16.8% of power efficiency when operating the ET PA with 5G new radio test signals of 60 MHz bandwidth operating at 2.55 GHz (band 7). The linearization performance of the proposed EOPT method is comparable to the envelope leakage cancellation (ELC) approach (but saving the need for an analog to digital converter to monitor the ETM output), and can outperform a conventional I-Q digital predistorter based on the generalized memory polynomial (GMP) behavioral model.
引用
收藏
页数:19
相关论文
共 50 条
  • [41] 3.3 V power feedback chip for linearization of RF power amplifiers
    Shi B.
    Sundstro¨m L.
    Analog Integrated Circuits and Signal Processing, 2001, 26 (1) : 37 - 44
  • [42] A Study on the Frequency Response Compensation for Envelope Amplifiers in EER Power Amplifiers
    Yamaoka, Atsushi
    Yamaguchi, Keiichi
    2014 ASIA-PACIFIC MICROWAVE CONFERENCE (APMC), 2014, : 1092 - 1094
  • [43] 3.3 V power feedback chip for linearization of RF power amplifiers
    Shi, Bo
    Sundström, Lars
    Analog Integrated Circuits and Signal Processing, 2001, 26 (01): : 37 - 44
  • [44] A 3.3 V power feedback chip for linearization of RF power amplifiers
    Shi, B
    Sundström, L
    ANALOG INTEGRATED CIRCUITS AND SIGNAL PROCESSING, 2000, 26 (01) : 37 - 44
  • [45] A Wide Band Envelope Modulator for Envelope Tracking RF Power Amplifiers
    Salimi, Atefeh
    Dehghani, Rasoul
    Nabavi, Abdolreza
    2013 21ST IRANIAN CONFERENCE ON ELECTRICAL ENGINEERING (ICEE), 2013,
  • [46] Push the envelope: Design concepts for envelope-tracking power amplifiers
    Kim, B. (bmkim@postech.ac.kr), 1600, Institute of Electrical and Electronics Engineers Inc., United States (14):
  • [47] Envelope tracking power amplifier with static predistortion linearization
    Harju, Henri
    Rautio, Timo
    Hietakangas, Simo
    Rahkonen, Timo
    2007 EUROPEAN CONFERENCE ON CIRCUIT THEORY AND DESIGN, VOLS 1-3, 2007, : 388 - +
  • [48] A Digital Envelope Combiner for Switching Power Amplifier Linearization
    Singhal, Nitesh
    Pamarti, Sudhakar
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2010, 57 (04) : 270 - 274
  • [49] Envelope tracking power amplifier with static predistortion linearization
    Rautio, Timo
    Harju, Henri
    Hietakangas, Simo
    Rahkonen, Timo
    INTERNATIONAL JOURNAL OF CIRCUIT THEORY AND APPLICATIONS, 2009, 37 (02) : 365 - 375
  • [50] Envelope Correlation Coefficient for Multiple MIMO Antennas of Mobile Terminals
    Mei, Xide
    Wu, Ke-Li
    2020 IEEE INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION AND NORTH AMERICAN RADIO SCIENCE MEETING, 2020, : 1597 - 1598