Skip to main navigation Skip to search Skip to main content

A compact and reconfigurable beam pattern ESPAR antenna with automatic impedance matching system

  • Sol Ji Yoo
  • , Kwang Seok Kim
  • , Tae Dong Yeo
  • , Soo Ji Lee
  • , Dong Jin Lee
  • , Jong Won Yu
  • Korea Advanced Institute of Science and Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

3 Scopus citations

Abstract

A compact ESPAR antenna that is composed of 1 active-RF element and 6 parasitic elements surrounding driven element is proposed in this paper. This antenna is operated at 915 MHz and reconfigurable beam patterns that changed not only beam angel but also beam width. Any beam patterns form, it is available to radiate and minimize the return loss by using automatic impedance matching system. The achievable realized gain is from 3.12 dBi to 4.8 dBi.

Original languageEnglish
Title of host publicationEuropean Microwave Week 2014
Subtitle of host publicationConnecting the Future, EuMW 2014 - Conference Proceedings; EuMC 2014: 44th European Microwave Conference
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages53-56
Number of pages4
ISBN (Electronic)9782874870354
DOIs
StatePublished - 15 Dec 2014
Event2014 44th European Microwave Conference, EuMC 2014 - Held as Part of the 17th European Microwave Week, EuMW 2014 - Rome, Italy
Duration: 6 Oct 20149 Oct 2014

Publication series

NameEuropean Microwave Week 2014: Connecting the Future, EuMW 2014 - Conference Proceedings; EuMC 2014: 44th European Microwave Conference

Conference

Conference2014 44th European Microwave Conference, EuMC 2014 - Held as Part of the 17th European Microwave Week, EuMW 2014
Country/TerritoryItaly
CityRome
Period6/10/149/10/14

Keywords

  • auto-impedance matching
  • beam steering
  • ESPAR antenna
  • reconfigurable beam patterns
  • single RF-MIMO(Multiple-Input-Multiple-Output)

Fingerprint

Dive into the research topics of 'A compact and reconfigurable beam pattern ESPAR antenna with automatic impedance matching system'. Together they form a unique fingerprint.

Cite this