• High Power Laser and Particle Beams
  • Vol. 34, Issue 12, 123002 (2022)
Guanghui Sun, Dewei Zhang*, Hailin Deng, Dalong Lü, Dongfang Zhou, and Chenge Bian
Author Affiliations
  • PLA Strategic Support Information Engineering University, Zhengzhou 450001, China
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    DOI: 10.11884/HPLPB202234.220219 Cite this Article
    Guanghui Sun, Dewei Zhang, Hailin Deng, Dalong Lü, Dongfang Zhou, Chenge Bian. Design method of reflective broadband predistorter for solid-state power amplifier[J]. High Power Laser and Particle Beams, 2022, 34(12): 123002 Copy Citation Text show less
    References

    [1] Hao Peng. Research on linearization technology of power amplifier f 5G applications[D]. Chengdu: University of Electronic Science Technology of China, 2021: 110

    [2] Hao Peng, He Songbai, You Fei, et al. Broadband linearizer based on equivalent power-dependent impedance function of diode and load match network[J]. Microwave and Optical Technology Letters, 63, 499-503(2021).

    [3] Deng Hailin, Zhang Dewei, Lv Dalong, et al. A tunable reflective analog predistorter based on variable impedance matching network[J]. AEU-International Journal of Electronics and Communications, 98, 139-143(2019).

    [4] Katz A. Linearization: reducing distortion in power amplifiers[J]. IEEE Microwave Magazine, 2, 37-49(2001).

    [5] Li Jinbo, Shu Ran, Xu Zhiwei, et al. A 21-dm-OP1 dB 20.3%-efficiency−131.8-dBm/Hz-noise X-band Cartesian error feedback transmitter with fully integrated power amplifier in 65-nm CMOS[J]. IEEE Journal of Solid-State Circuits, 55, 1491-1501(2020).

    [6] Borel A, Barzdėnas V, Vasjanov A. Linearization as a solution for power amplifier imperfections: a review of methods[J]. Electronics, 10, 1073(2021).

    [7] Brihuega A, Anttila L, Valkama M. Frequency-domain digital predistortion for OFDM[J]. IEEE Microwave and Wireless Components Letters, 31, 816-818(2021).

    [8] Ginzberg N, Gidoni T, Schwartz Y, et al. Wideband linearization of a carrier aggregation transmitter using analog signal injection and 2-D digital predistortion[J]. IEEE Transactions on Microwave Theory and Techniques, 68, 2030-2040(2020).

    [9] Katz A, Gray R, Dorval R. Linearizers for Q - and V -band TWTAs[J]. IEEE Transactions on Electron Devices, 65, 2371-2377(2018).

    [10] Bian Chenge, Zhang Dewei, Deng Hailin, et al. A reconfigurable analog predistorter using tunable impendence matching network[J]. AEU-International Journal of Electronics and Communications, 125, 153384(2020).

    [11] Liu Zheng, Yan Cheng, Liu Gang, et al. A novel analog linearizer f solidstate power amplifier in satellite communication system[C]2018 International Conference on Microwave Millimeter Wave Technology (ICMMT). Chengdu: IEEE, 2018: 13.

    [12] Wang Chong, Yang Zhiguo. Design of Pre-distortion linearizer for GaN power amplifier at Ka-band[J]. Computer Measurement & Control, 26, 252-255(2018).

    [13] Karimzadeh Baee R, Rahati Belabad A, Moazzen H, et al. A novel analog predistortion linearizer based on a Schottky diode for communication applications[J]. Journal of Electrical and Computer Engineering Innovations, 10, 101-106(2022).

    [14] Deng Hailin, Chen Huichao, Zhou Dongfang, . Design and evaluation of modified reflective predistortion linearizer with tunable compensation[J]. Chinese Journal of Vacuum Science and Technology, 38, 657-662(2018).

    [15] Pozar D M. Microwave engineering[M]. Hoboken: Wiley, 2005.

    Guanghui Sun, Dewei Zhang, Hailin Deng, Dalong Lü, Dongfang Zhou, Chenge Bian. Design method of reflective broadband predistorter for solid-state power amplifier[J]. High Power Laser and Particle Beams, 2022, 34(12): 123002
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