Phase‐only transmit beampattern synthesis with sparse arrays via alternating optimisation‐alternating direction of the multipliers method

To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a novel algorithm via alternating optimisation‐alternating direction of the multipliers method is developed. This method uses the total transmitting powe...

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Published in:IET microwaves, antennas & propagation Vol. 18; no. 10; pp. 791 - 800
Main Authors: Li, Lifeng, Liu, Xingang, Wang, Xiangrong, Hu, Mengkai, Du, Yufeng
Format: Journal Article
Language:English
Published: Wiley 01.10.2024
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ISSN:1751-8725, 1751-8733
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Abstract To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a novel algorithm via alternating optimisation‐alternating direction of the multipliers method is developed. This method uses the total transmitting power as the objective function to optimise the sparsity and the amplitude of excitation simultaneously. Numerical results are provided to verify its effectiveness. The authors propose a novel algorithm via alternating optimisation‐alternating direction of the multipliers method to get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements.
AbstractList To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a novel algorithm via alternating optimisation‐alternating direction of the multipliers method is developed. This method uses the total transmitting power as the objective function to optimise the sparsity and the amplitude of excitation simultaneously. Numerical results are provided to verify its effectiveness. The authors propose a novel algorithm via alternating optimisation‐alternating direction of the multipliers method to get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements.
Abstract To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a novel algorithm via alternating optimisation‐alternating direction of the multipliers method is developed. This method uses the total transmitting power as the objective function to optimise the sparsity and the amplitude of excitation simultaneously. Numerical results are provided to verify its effectiveness.
To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a novel algorithm via alternating optimisation‐alternating direction of the multipliers method is developed. This method uses the total transmitting power as the objective function to optimise the sparsity and the amplitude of excitation simultaneously. Numerical results are provided to verify its effectiveness.
Author Wang, Xiangrong
Hu, Mengkai
Du, Yufeng
Li, Lifeng
Liu, Xingang
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Snippet To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a novel...
Abstract To get simultaneously sparse and constant modulus excitation to reduce the complexity of the array and the mutual effect of neighbouring elements, a...
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Title Phase‐only transmit beampattern synthesis with sparse arrays via alternating optimisation‐alternating direction of the multipliers method
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