Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system

The precise positioning of an autonomous robot in the wireless sensor network with a high refresh rate is important for well-ordered and efficient systems. An orthogonally transmitted simultaneous multi-beam system improves the geometric dilution of precision (GDOP) and expedites the refresh rate of...

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Main Authors: Md Arif Hussain Ansari, Law, Choi Look
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/146424
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1464242021-02-16T08:57:48Z Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system Md Arif Hussain Ansari Law, Choi Look School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Beamforming Gaussian Beams The precise positioning of an autonomous robot in the wireless sensor network with a high refresh rate is important for well-ordered and efficient systems. An orthogonally transmitted simultaneous multi-beam system improves the geometric dilution of precision (GDOP) and expedites the refresh rate of the system. In this paper, the beam-pattern analysis of an electronically steerable multibeam impulse radio ultra-wideband (IR-UWB) transmitter tag is presented and demonstrated. The multi-beam transmitter tag is optimized to improve the real-time positioning accuracy of an autonomous robot for an indoor positioning and tracking system. Two linear arrays of four elements with an interelement spacing of 18 cm and 10.2 cm are proposed and optimized. The array with spacing 10.2 cm is intentionally configured to produce orthogonal beams, which eventually provides better geometric dilution of precision. The beam steering-angle analysis is performed to better utilize the steering delay range and scanning angle range. The radiation intensity in the direction of the transmitted beam is calculated. Consequently, an intensity table for the Gaussian-modulated multi-cycle IR-UWB beamforming array is proposed. The intensity table gives an easier way to calculate the peak intensity and the number of cycles of the radiated IR-UWB pulse in the transmitted beam direction. The proposed beamforming transmitter arrays are observed to achieve the scanning range from-60° (-90°) to +60° (+90°) with a scanning resolution of 5° and 8° in the measurements. Nanyang Technological University National Research Foundation (NRF) Published version The authors would like to acknowledge the support of ST Engineering in this work. This research was partially supported by the ST Engineering — NTU Corporate Lab through the NRF CorporateLaboratory@University scheme (Project Reference C-RP10B). 2021-02-16T08:57:48Z 2021-02-16T08:57:48Z 2019 Journal Article Md Arif Hussain Ansari & Law, C. L. (2020). Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system. Progress In Electromagnetics Research B, 86, 1-18. doi:10.2528/PIERB19080805 1937-6472 https://hdl.handle.net/10356/146424 10.2528/PIERB19080805 2-s2.0-85086066565 86 1 18 en C-RP10B Progress In Electromagnetics Research B © 2020 The Electromagnetics Academy. All rights reserved. This paper was published in Progress In Electromagnetics Research B and is made available with permission of The Electromagnetics Academy. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
Beamforming
Gaussian Beams
spellingShingle Engineering::Electrical and electronic engineering
Beamforming
Gaussian Beams
Md Arif Hussain Ansari
Law, Choi Look
Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system
description The precise positioning of an autonomous robot in the wireless sensor network with a high refresh rate is important for well-ordered and efficient systems. An orthogonally transmitted simultaneous multi-beam system improves the geometric dilution of precision (GDOP) and expedites the refresh rate of the system. In this paper, the beam-pattern analysis of an electronically steerable multibeam impulse radio ultra-wideband (IR-UWB) transmitter tag is presented and demonstrated. The multi-beam transmitter tag is optimized to improve the real-time positioning accuracy of an autonomous robot for an indoor positioning and tracking system. Two linear arrays of four elements with an interelement spacing of 18 cm and 10.2 cm are proposed and optimized. The array with spacing 10.2 cm is intentionally configured to produce orthogonal beams, which eventually provides better geometric dilution of precision. The beam steering-angle analysis is performed to better utilize the steering delay range and scanning angle range. The radiation intensity in the direction of the transmitted beam is calculated. Consequently, an intensity table for the Gaussian-modulated multi-cycle IR-UWB beamforming array is proposed. The intensity table gives an easier way to calculate the peak intensity and the number of cycles of the radiated IR-UWB pulse in the transmitted beam direction. The proposed beamforming transmitter arrays are observed to achieve the scanning range from-60° (-90°) to +60° (+90°) with a scanning resolution of 5° and 8° in the measurements.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Md Arif Hussain Ansari
Law, Choi Look
format Article
author Md Arif Hussain Ansari
Law, Choi Look
author_sort Md Arif Hussain Ansari
title Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system
title_short Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system
title_full Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system
title_fullStr Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system
title_full_unstemmed Beam-pattern analysis of multi-beam high peak power IR-UWB transmitter tag for indoor positioning and tracking system
title_sort beam-pattern analysis of multi-beam high peak power ir-uwb transmitter tag for indoor positioning and tracking system
publishDate 2021
url https://hdl.handle.net/10356/146424
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