An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling

There are mainly three issues for Near-Field Focusing (NFF) using an antenna array. First, it is required to know the distribution of the near electric field in 3D space for each antenna element. In general, a huge amount of data is required to express the near-field for each antenna element in a 3D...

Full description

Bibliographic Details
Main Authors: Sung Jun Yang, Young Dam Kim
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9576748/
_version_ 1818838555252752384
author Sung Jun Yang
Young Dam Kim
author_facet Sung Jun Yang
Young Dam Kim
author_sort Sung Jun Yang
collection DOAJ
description There are mainly three issues for Near-Field Focusing (NFF) using an antenna array. First, it is required to know the distribution of the near electric field in 3D space for each antenna element. In general, a huge amount of data is required to express the near-field for each antenna element in a 3D space with high resolution. Second, in the trade-off relationship between efficiency and accuracy for NFF, we require to solve the optimization problem in which energy can be concentrated to the focal point. Solving optimization problems with near-field represented by huge amounts of data is very inefficient. Third, accurate NFF must be performed by reflecting the mutual coupling phenomenon between antennas. In this paper, there are three key ideas to overcome the issues in the NFF by improving both accuracy and efficiency. The first is the extraction of the infinitesimal dipole model (IDM) using the active element pattern. This makes it possible to obtain a mathematical model of the antenna that perfectly reflects the mutual coupling effect. The second is the acquisition of near-field data to an adaptive resolution grid with appropriate resolution using the extracted IDM. This re-radiated near-field data has both accuracy and efficiency by maintaining high resolution only for a focal point. The third is an efficient optimization method for a desired focal area with an arbitrary elliptical shape using convex optimization. Through simulations for the verification, 4 types of grids with various resolutions are used to the same NFF problem. The computational time of the proposed method in optimization for the NFF could be reduced to 8% with a similar focal shift compared to a type of the finest resolution. In addition, the accuracy of the electromagnetic analysis of the proposed method was verified through comparative verification with the MoM results.
first_indexed 2024-12-19T03:40:15Z
format Article
id doaj.art-01047635fa5a4bd4b77bc7c3f6f1a5f6
institution Directory Open Access Journal
issn 2169-3536
language English
last_indexed 2024-12-19T03:40:15Z
publishDate 2021-01-01
publisher IEEE
record_format Article
series IEEE Access
spelling doaj.art-01047635fa5a4bd4b77bc7c3f6f1a5f62022-12-21T20:37:14ZengIEEEIEEE Access2169-35362021-01-01914377114378110.1109/ACCESS.2021.31206979576748An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole ModelingSung Jun Yang0https://orcid.org/0000-0002-7821-6237Young Dam Kim1https://orcid.org/0000-0002-3855-8902Foundation for Research on Information Technologies in Society (IT’IS), Zürich, SwitzerlandDepartment of Electronics Engineering, Chungnam National University, Daejeon, South KoreaThere are mainly three issues for Near-Field Focusing (NFF) using an antenna array. First, it is required to know the distribution of the near electric field in 3D space for each antenna element. In general, a huge amount of data is required to express the near-field for each antenna element in a 3D space with high resolution. Second, in the trade-off relationship between efficiency and accuracy for NFF, we require to solve the optimization problem in which energy can be concentrated to the focal point. Solving optimization problems with near-field represented by huge amounts of data is very inefficient. Third, accurate NFF must be performed by reflecting the mutual coupling phenomenon between antennas. In this paper, there are three key ideas to overcome the issues in the NFF by improving both accuracy and efficiency. The first is the extraction of the infinitesimal dipole model (IDM) using the active element pattern. This makes it possible to obtain a mathematical model of the antenna that perfectly reflects the mutual coupling effect. The second is the acquisition of near-field data to an adaptive resolution grid with appropriate resolution using the extracted IDM. This re-radiated near-field data has both accuracy and efficiency by maintaining high resolution only for a focal point. The third is an efficient optimization method for a desired focal area with an arbitrary elliptical shape using convex optimization. Through simulations for the verification, 4 types of grids with various resolutions are used to the same NFF problem. The computational time of the proposed method in optimization for the NFF could be reduced to 8% with a similar focal shift compared to a type of the finest resolution. In addition, the accuracy of the electromagnetic analysis of the proposed method was verified through comparative verification with the MoM results.https://ieeexplore.ieee.org/document/9576748/Near-field focusingarray antennaactive element patterninfinitesimal dipole modelingconvex optimization
spellingShingle Sung Jun Yang
Young Dam Kim
An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling
IEEE Access
Near-field focusing
array antenna
active element pattern
infinitesimal dipole modeling
convex optimization
title An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling
title_full An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling
title_fullStr An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling
title_full_unstemmed An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling
title_short An Accurate Near-Field Focusing of Array Antenna Based on Near-Field Active Element Pattern and Infinitesimal Dipole Modeling
title_sort accurate near field focusing of array antenna based on near field active element pattern and infinitesimal dipole modeling
topic Near-field focusing
array antenna
active element pattern
infinitesimal dipole modeling
convex optimization
url https://ieeexplore.ieee.org/document/9576748/
work_keys_str_mv AT sungjunyang anaccuratenearfieldfocusingofarrayantennabasedonnearfieldactiveelementpatternandinfinitesimaldipolemodeling
AT youngdamkim anaccuratenearfieldfocusingofarrayantennabasedonnearfieldactiveelementpatternandinfinitesimaldipolemodeling
AT sungjunyang accuratenearfieldfocusingofarrayantennabasedonnearfieldactiveelementpatternandinfinitesimaldipolemodeling
AT youngdamkim accuratenearfieldfocusingofarrayantennabasedonnearfieldactiveelementpatternandinfinitesimaldipolemodeling