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Synchronization-Phase Alignment of All-Digital Phase-Locked Loop Chips for a 60-GHz MIMO Transmitter and Evaluation of Phase Noise Effects
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Synchronization-Phase Alignment of All-Digital Phase-Locked Loop Chips for a 60-GHz MIMO Transmitter and Evaluation of Phase Noise Effects

Salarpour, M.

  1. DOI:10.1109/TMTT.2019.2910060
  2. Main Entry: Salarpour, M.
  3. Title:Synchronization-Phase Alignment of All-Digital Phase-Locked Loop Chips for a 60-GHz MIMO Transmitter and Evaluation of Phase Noise Effects.
  4. Publisher:Institute of Electrical and Electronics Engineers Inc, 2019.
  5. Abstract:A phase-coherent technique for multiple all-digital phase-locked loops (ADPLLs) is presented and developed in this paper to target a 57-63-GHz multiple-input multiple-output (MIMO) transmitter (TX) with a digital beam-steering capability. The ADPLL TX chains are first fabricated in nanoscale CMOS and then time-synchronized and frequency-phase locked by a field-programmable gate array (FPGA) evaluation board. The calibration approach for phase alignment is carried out using a cancellation method to acquire the out-of-phase state within two ADPLLs. The accuracy of beam steering and phase alignment is investigated and analyzed based on a time-domain model for ADPLL to consider the impact of phase noise. The analysis results offer the required values of the ADPLL parameters to allow a millimeter-wave (mm-wave) MIMO TX with a highly accurate digital beam-steering capability
  6. Notes:Sharif Repository
  7. Subject:60-GHz multiple-input multiple-output (MIMO)
  8. Subject:All-digital phase-locked loop (ADPLL)
  9. Subject:Cancellation method.
  10. Subject:Digital beam steering.
  11. Subject:Highly accurate beam steering.
  12. Subject:Phase-alignment accuracy.
  13. Subject:Alignment.
  14. Subject:Beamforming.
  15. Subject:Codes (symbols)
  16. Subject:Feedback control.
  17. Subject:Field programmable gate arrays (FPGA)
  18. Subject:Locks (fasteners)
  19. Subject:Millimeter waves.
  20. Subject:Phase locked loops.
  21. Subject:Phase noise.
  22. Subject:Telecommunication repeaters.
  23. Subject:Time domain analysis.
  24. Subject:Transmitters.
  25. Subject:All digital phase locked loop.
  26. Subject:Beam-steering.
  27. Subject:Phase alignment.
  28. Subject:Phase coherence.
  29. Subject:MIMO systems.
  30. Added Entry:Farzaneh, F.
  31. Added Entry:Staszewski, R. B.
  32. Added Entry:Sharif University of Technology.
  33. Source: IEEE Transactions on Microwave Theory and Techniques ; Volume 67, Issue 7 , 2019 , Pages 3187-3199 ; 00189480 (ISSN)
  34. Web Site:https://ieeexplore.ieee.org/document/8718820

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