Developments in the Analysis of Large Antenna Arrays with Disjoint Elements

Efficient electromagnetic analysis of very large antenna arrays is important for various applications, including e.g., radio astronomy. The method of moments (MoM) is generally the most suitable computational electromagnetics method to deal with such open-region problems. However, its computational...

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Veröffentlicht in:2021 15th European Conference on Antennas and Propagation (EuCAP) S. 1 - 3
Hauptverfasser: Sewraj, Keshav, Chose, Matthews, Botha, Matthys M.
Format: Tagungsbericht
Sprache:Englisch
Veröffentlicht: EurAAP 22.03.2021
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Abstract Efficient electromagnetic analysis of very large antenna arrays is important for various applications, including e.g., radio astronomy. The method of moments (MoM) is generally the most suitable computational electromagnetics method to deal with such open-region problems. However, its computational cost grows rapidly with problem size. This paper presents a brief overview of past work as well as the latest developments by the authors, on devising fast MoM-based methods for arrays with identical disjoint elements and arbitrary layouts. Two different lines of development are reported on, namely methods aimed at efficiently solving the full MoM system through the use of macro basis functions and adaptive cross approximation (ACA) acceleration, and a fast-converging iterative method involving localised solutions.
AbstractList Efficient electromagnetic analysis of very large antenna arrays is important for various applications, including e.g., radio astronomy. The method of moments (MoM) is generally the most suitable computational electromagnetics method to deal with such open-region problems. However, its computational cost grows rapidly with problem size. This paper presents a brief overview of past work as well as the latest developments by the authors, on devising fast MoM-based methods for arrays with identical disjoint elements and arbitrary layouts. Two different lines of development are reported on, namely methods aimed at efficiently solving the full MoM system through the use of macro basis functions and adaptive cross approximation (ACA) acceleration, and a fast-converging iterative method involving localised solutions.
Author Sewraj, Keshav
Chose, Matthews
Botha, Matthys M.
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  givenname: Matthews
  surname: Chose
  fullname: Chose, Matthews
  organization: Stellenbosch University,Department of Electrical & Electronic Engineering,Stellenbosch,South Africa
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  givenname: Matthys M.
  surname: Botha
  fullname: Botha, Matthys M.
  email: mmbotha@sun.ac.za
  organization: Stellenbosch University,Department of Electrical & Electronic Engineering,Stellenbosch,South Africa
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Snippet Efficient electromagnetic analysis of very large antenna arrays is important for various applications, including e.g., radio astronomy. The method of moments...
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SubjectTerms Adaptive cross approximation (ACA)
Adaptive systems
Computational efficiency
Computational electromagnetics
domain decomposition
Europe
Iterative methods
Layout
macro basis function (MBF)
Radio astronomy
sparse direct solver
Title Developments in the Analysis of Large Antenna Arrays with Disjoint Elements
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