4.6 Article

Novel Compact UWB Planar Monopole Antenna Using a Ribbon-Shaped Slot

Journal

IEEE ACCESS
Volume 10, Issue -, Pages 61951-61959

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/ACCESS.2022.3182443

Keywords

UWB; planar monopole antenna; slot

Funding

  1. Technology Innovation Program (Development of Industrial Intelligent Technology for Manufacturing, Process, and Logistics) - Ministry of Trade, Industry & Energy (MOTIE, South Korea) [20013726]
  2. Korea Evaluation Institute of Industrial Technology (KEIT) [20013726] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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This paper presents a novel compact UWB planar monopole antenna designed for precise indoor positioning system. The antenna operates in the frequency range of 3.1 GHz to 10.8 GHz and exhibits wide bandwidth and omnidirectional radiation patterns. The proposed design meets the requirements for integration with printed circuit boards and offers good performance in complex multipath environments.
Ultra-Wideband (UWB) is a wireless communication technology that can be utilized for precise indoor positioning system. UWB is low power-consuming and resistant to complex multipath environments, thanks to a short pulse signal. Since the main desired characteristics of the UWB antennas for radiofrequency localization systems are wide bandwidth, omnidirectional radiation pattern, and low profile for simple integration with printed circuit boards, various planar monopole antennas for UWB applications were proposed to meet the requirements. In order to satisfy these conditions, in this paper, a novel compact UWB planar monopole antenna operating in 3.1 GHz-10.8 GHz is designed on FR-4 substrate. The overall size of the antenna is 12.5 x 12.5 x 1 mm(3), which is 0.129 lambda(0) x 0.258 lambda(0) x 0.01 lambda(0) in free space at the lowest frequency. The transmission line is designed based on a coplanar waveguide with ground (CPWG) and vias in the CPWG are employed to eliminate non-radiating phenomenon at some specific frequencies. The shape of the radiator is modified from the hexagonal shape and a ribbon-shaped slot inside the radiator is adapted to improve the operating frequency range. The proposed UWB planar monopole antenna is fabricated and measured. The proposed antenna provides good antenna performance from 3.1 to 10.8 GHz and also the radiation patterns at various frequencies are omnidirectional pattern.

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