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Improved Resolution for a 1-Bit Transmitarray in Near-Field Focusing Applications

Research output: Chapters, Conference Papers, Creative and Literary WorksRGC 32 - Refereed conference paper (with host publication)peer-review

Abstract

We introduce a novel approach for enhancing the resolution of conventionall-bit transmitarrays (TAs) by utilizing space-time coding technology. Conventional l-bit TAs suffer from the relatively large focal spot due to the phase quantization issue. In this study, space-time modulation technology is introduced with the emergence of spatial harmonic components. By introducing a time delay index to the +1st harmonic wave, a continuous phase compensation could be achieved without impacting the original amplitude distribution, thereby achieving a smaller focal spot. Moreover, as the element number reduces (e.g., from 16 × 16 to 12 × 12, 8 × 8, and further to a 6 × 6 array), the contrast between the near-field focal spots of the conventional l-bit TA and its +1st harmonic wave becomes increasingly pronounced. This method holds potential for low-cost and high-resolution imaging applications. © 2024 IEEE.
Original languageEnglish
Title of host publication2024 15th Global Symposium on Millimeter-Waves & Terahertz (GSMM)
PublisherIEEE
Pages121-123
ISBN (Electronic)979-8-3503-8495-6
ISBN (Print)979-8-3503-8496-3
DOIs
Publication statusPublished - 2024
Event15th Global Symposium on Millimeter-Waves & Terahertz  - City University of Hong Kong, Hong Kong, China
Duration: 20 May 202422 May 2024
https://gsmm2024.org/

Publication series

NameGlobal Symposium on Millimeter-Waves and Terahertz, GSMM - Proceedings
ISSN (Print)2380-9515
ISSN (Electronic)2694-2968

Conference

Conference15th Global Symposium on Millimeter-Waves & Terahertz 
Abbreviated titleGSMM 2024
PlaceHong Kong, China
Period20/05/2422/05/24
Internet address

Funding

This work was supported by the donation for Research Projects_RMGS under Project 9229014 and Grant CityU 9610655.

Research Keywords

  • I-bit transmitarray
  • imaging
  • near-field focusing
  • time-domain digital coding metasurface

RGC Funding Information

  • RGC-funded

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