Benefits of Ka-band GaN MMIC High Power Amplifiers With Wide Bandwidth and High Spectral/Power Added Efficiencies for Cognitive Radio Platforms

被引:1
|
作者
Simons, Rainee N. [1 ]
Gannon, Adam M. [1 ]
Downey, Joseph A. [1 ]
Piasecki, Marie T. [1 ]
Schoenholz, Bryan L. [1 ]
机构
[1] NASA, Glenn Res Ctr, Cleveland, OH 44135 USA
来源
2023 IEEE COGNITIVE COMMUNICATIONS FOR AEROSPACE APPLICATIONS WORKSHOP, CCAAW | 2023年
关键词
Gallium nitride; HEMT; MMICs; Ka-band; High power amplifier; Cognitive radio; Interoperability; Higher-order; modulation; DVB-S2; CCSDS; Error vector magnitude; Intermodulation distortion; Spectrum; Spectral regrowth; Near-Earth missions; Lunar missions; Artificial intelligence; Machine learning;
D O I
10.1109/CCAAW57883.2023.10219254
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
A cognitive radio on a future NASA near-Earth spacecraft will be capable of sensing its environment and dynamically adapting its operating parameters to provide the desired SATCOM service to the mission. A key component that can enable this type of operation is a high-power amplifier (HPA) that resides on the radio platform. In this paper, we present the RF performance characteristics of a Ka-band gallium nitride (GaN) monolithic microwave integrated circuit (MMIC) based HPA for cognitive radio platforms. These characteristics include the output power, gain, power added efficiency (PAE), RMS error vector magnitude (EVM), spectral efficiency, 3rd-order intermodulation distortion (IMD) products, spectrum, spectral regrowth, noise figure (NF), and phase noise. The data presented indicates that the HPA meets NTIA, military, and commercial spectral mask requirements. In addition, we discuss the benefits offered by the above performance characteristics toward the design and implementation of a cognitive radio platform. Furthermore, as examples, we discuss three potential use cases that apply artificial intelligence (AI) and machine learning (ML) techniques and exploit the performance characteristics discussed above to provide a knowledge-based cognitive radio platform design for SATCOM. Thus, cognitive radios with performance flexibility can enable roaming and provide seamless interoperability autonomously in the future between NASA, commercial, and other space networks owned by U.S. government agencies.
引用
收藏
页数:6
相关论文
共 50 条
  • [41] 10 W and 30W, 32-37 GHz, Ka-Band GaN MMIC Power Amplifiers on SiC
    Litchfield, Michael
    Dugas, Douglas
    2021 IEEE BICMOS AND COMPOUND SEMICONDUCTOR INTEGRATED CIRCUITS AND TECHNOLOGY SYMPOSIUM (BCICTS), 2021,
  • [42] Extremely high P1dB MMIC amplifiers for Ka-band applications
    Lai, R
    Grundbacher, R
    Barsky, M
    Oki, A
    Siddiqui, M
    Pitman, B
    Katz, R
    Tran, P
    Callejo, L
    Streit, D
    GAAS IC SYMPOSIUM, TECHNICAL DIGEST 2001, 2001, : 115 - 117
  • [43] A compact Ka-band limiter-low noise amplifier MMIC with high power capability
    Yang, Lin
    Zhang, Ming
    Wang, Jianchao
    Wang, Baozhu
    Yu, Pingping
    Wu, Ruihong
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2022, 64 (06) : 1006 - 1011
  • [44] High-Power Ka-Band Transmission Line with a Frequency Bandwidth of 1 GHZ
    Bogdashov, A. A.
    Denisov, G. G.
    Samsonov, S. V.
    Gachev, I. G.
    Dominyuk, Ya. V.
    Murzin, V. N.
    Levitan, B. A.
    RADIOPHYSICS AND QUANTUM ELECTRONICS, 2016, 58 (10) : 777 - 788
  • [45] A Novel Sideband Gain Suppression High-Efficiency Power Amplifier MMIC in Ka-Band
    Jin, Hui
    Yang, Fei
    Tao, Hongqi
    Yu, Xuming
    Wang, Weibo
    Xiao, Wei
    Liu, Ling
    2024 IEEE MTT-S INTERNATIONAL WIRELESS SYMPOSIUM, IWS 2024, 2024,
  • [46] A Ka-Band High Efficiency Doherty Power Amplifier MMIC using GaN-HEMT for 5G Application
    Nakatani, Keigo
    Yamaguchi, Yutaro
    Komatsuzaki, Yuji
    Sakata, Shuichi
    Shinjo, Shintaro
    Yamanaka, Koji
    2018 IEEE MTT-S INTERNATIONAL MICROWAVE WORKSHOP SERIES ON 5G HARDWARE AND SYSTEM TECHNOLOGIES (IMWS-5G), 2018,
  • [47] Ka-Band GaN-on-Si 4W MMIC High Power Amplifier for Millimetre-wave Radar
    Cipriani, Elisa
    Colantonio, Paolo
    Giannini, Franco
    2019 IEEE TOPICAL CONFERENCE ON RF/MICROWAVE POWER AMPLIFIERS FOR RADIO AND WIRELESS APPLICATIONS (PAWR), 2019, : 82 - 84
  • [48] High-Power Ka-Band Transmission Line with a Frequency Bandwidth of 1 GHZ
    A. A. Bogdashov
    G. G. Denisov
    S. V. Samsonov
    I. G. Gachev
    Ya. V. Dominyuk
    V. N. Murzin
    B. A. Levitan
    Radiophysics and Quantum Electronics, 2016, 58 : 777 - 788
  • [49] A Ka-Band 40 W Output Power and 30 % PAE GaN MMIC Power Amplifier for Satellite Communication
    Nakatani, Keigo
    Yamaguchi, Yutaro
    Tsuru, Masaomi
    2021 16TH EUROPEAN MICROWAVE INTEGRATED CIRCUITS CONFERENCE (EUMIC 2021), 2021, : 285 - 288
  • [50] Broadband 100-W Ka-Band SSPA Based on GaN Power Amplifiers
    Neininger, Philipp
    John, L.
    Zink, M.
    Meder, D.
    Kuri, M.
    Tessmann, A.
    Friesicke, C.
    Mikulla, M.
    Quay, R.
    Zwick, Thomas
    IEEE MICROWAVE AND WIRELESS COMPONENTS LETTERS, 2022, 32 (06) : 708 - 711