3-D Distributed Memory Polynomial Behavioral Model for Concurrent Dual-Band Envelope Tracking Power Amplifier Linearization

被引:35
作者
Gilabert, Pere L. [1 ]
Montoro, Gabriel [1 ]
机构
[1] Univ Politecn Catalunya UPC Barcelona Tech, Dept Signal Theory & Commun, Barcelona 08860, Spain
关键词
Digital predistorter; dual-band; envelope tracking; order reduction; principal component analysis; RF power amplifiers; DIGITAL PREDISTORTION; TRANSMITTERS; DISTORTION;
D O I
10.1109/TMTT.2014.2387825
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper presents a new 3-D behavioral model to compensate for the nonlinear distortion arising in concurrent dual-band (DB) Envelope Tracking (ET) Power Amplifiers (PAs). The advantage of the proposed 3-D distributed memory polynomial (3D-DMP) behavioral model, in comparison to the already published behavioral models used for concurrent dual-band envelope tracking PA linearization, is that it requires a smaller number of coefficients to achieve the same linearity performance, which reduces the overall identification and adaptation computational complexity. The proposed 3D-DMP digital predistorter (DPD) is tested under different ET supply modulation techniques. Moreover, further model order reduction of the 3D-DMP DPD is achieved by applying the principal component analysis (PCA) technique. Experimental results are shown considering a concurrent DB transmission of aWCDMA signal at 1.75GHz and a 10-MHz bandwidth LTE signal at 2.1 GHz. The performance of the proposed 3D-DMP DPD is evaluated in terms of linearity, drain power efficiency, and computational complexity.
引用
收藏
页码:638 / 648
页数:11
相关论文
共 50 条
[41]   Concurrent Tri-band CMOS Power Amplifier Linearized by 3D Improved Memory Polynomial Digital Predistorter [J].
Luis Schuartz ;
Rodrigo G. Silva ;
Artur T. Hara ;
André A. Mariano ;
Bernardo Leite ;
Eduardo G. Lima .
Circuits, Systems, and Signal Processing, 2021, 40 :2176-2208
[42]   Concurrent Tri-band CMOS Power Amplifier Linearized by 3D Improved Memory Polynomial Digital Predistorter [J].
Schuartz, Luis ;
Silva, Rodrigo G. ;
Hara, Artur T. ;
Mariano, Andre A. ;
Leite, Bernardo ;
Lima, Eduardo G. .
CIRCUITS SYSTEMS AND SIGNAL PROCESSING, 2021, 40 (05) :2176-2208
[43]   A Concurrent Dual-Band Square Root-Based Model Based on Memory Polynomial for Closely Spaced Signals [J].
Fan, Chuanchao ;
Yu, Cuiping ;
Liu, Yuanan .
2019 IEEE MTT-S INTERNATIONAL WIRELESS SYMPOSIUM (IWS 2019), 2019,
[44]   A Concurrent 2.45/5.8 GHz Power Amplifier with an Optimal Dual-band Matching Method [J].
Lee, Sunwoo ;
Yoon, Byeongcheol ;
Jeon, Jooyoung ;
Kim, Junghyun .
2024 IEEE TOPICAL CONFERENCE ON RF/MICROWAVE POWER AMPLIFIERS FOR RADIO AND WIRELESS APPLICATIONS, PAWR, 2024, :1-4
[45]   Spectra-Folding Feedback Architecture for Concurrent Dual-Band Power Amplifier Predistortion [J].
Ma, Yuelin ;
Yamao, Yasushi .
IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2015, 63 (10) :3164-3174
[46]   Behavioral Modeling for Concurrent Dual-band Power Amplifiers Using 2D Hammerstein/Wiener Models [J].
Liu, You-Jiang ;
Chen, Wenhua ;
Zhou, Jie ;
Zhou, Bang-Hua ;
Ghannouchi, F. M. .
INTERNATIONAL JOURNAL OF RF AND MICROWAVE COMPUTER-AIDED ENGINEERING, 2013, 23 (06) :646-654
[47]   Envelope Preformulation Digital Predistortion for Concurrent Dual-Band Power Amplifiers with Improved Performance and Stability [J].
Lu, Qianyun ;
Meng, Fan ;
Cai, Jialin ;
Yu, Chao .
IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2018, 28 (05) :449-451
[48]   SISO Digital Predistortion for Concurrent Dual-band Power Amplifier Using Baseband Stitching Technique [J].
Peng, Jun ;
He, Songbai .
2018 IEEE/MTT-S INTERNATIONAL MICROWAVE SYMPOSIUM - IMS, 2018, :164-167
[49]   Two-Stage Concurrent X/Ku Dual-Band GaAs MMIC Power Amplifier [J].
Zurek, Philip ;
Popovic, Zoya .
PROCEEDINGS OF THE 2020 IEEE/MTT-S INTERNATIONAL MICROWAVE SYMPOSIUM (IMS), 2020, :269-272
[50]   Design and Validation of a Concurrent Dual-Band 1.84/2.65 GHz GaN Doherty Power Amplifier [J].
Haider, Jamal ;
Zhou, Han ;
Saad, Paul ;
Hou, Rui ;
Fager, Christian .
2023 INTERNATIONAL WORKSHOP ON INTEGRATED NONLINEAR MICROWAVE AND MILLIMETRE-WAVE CIRCUITS, INMMIC, 2023,