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Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication

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Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication. / Wulff, Michael; Wang, Lei; Yang, Cheng et al.
2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting. IEEE, 2022.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Wulff, M, Wang, L, Yang, C & Schuster, C 2022, Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication. in 2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting. IEEE. https://doi.org/10.1109/AP-S/USNC-URSI47032.2022.9887018

APA

Wulff, M., Wang, L., Yang, C., & Schuster, C. (2022). Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication. In 2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting IEEE. https://doi.org/10.1109/AP-S/USNC-URSI47032.2022.9887018

Vancouver

Wulff M, Wang L, Yang C, Schuster C. Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication. In 2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting. IEEE. 2022 doi: 10.1109/AP-S/USNC-URSI47032.2022.9887018

Author

Wulff, Michael ; Wang, Lei ; Yang, Cheng et al. / Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication. 2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting. IEEE, 2022.

Bibtex

@inproceedings{c39ca6c0dafe4129887b30145e5af9be,
title = "Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication",
abstract = "Optimization of antenna arrays is essential to achieve high data rates in modern communication systems. One promising array used in future communication systems is the uniform circular array (UCA) carrying orbital angular momentum (OAM) modes. In a UCA, the array elements are arranged in a circle with uniform angular spacing. The OAM modes are defined by the excitation of an array, i.e. an OAM mode is excited by exciting each element with equal amplitude and a phase increasing linearly around the array. When one OAM mode is excited and another OAM mode is received, this is called inter mode interference (IMI). Within an array this could be caused by a non-symmetrical array structure. In this paper, the IMI of non-symmetrical UCAs operating OAM waves is explored with comparison to the symmetrical UCA. It is shown, that change in geometric deviation along the array can be used to determine the dominant IMI, which allows the prediction of the IMI when designing an OAM array. These predictions are validated using an elliptical array and an array with misaligned elements. Knowledge of the IMI caused by a geometrical deviation can be used in the future to prevent or correct this IMI.",
author = "Michael Wulff and Lei Wang and Cheng Yang and Christian Schuster",
year = "2022",
month = sep,
day = "21",
doi = "10.1109/AP-S/USNC-URSI47032.2022.9887018",
language = "English",
isbn = "9781665496582",
booktitle = "2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting",
publisher = "IEEE",

}

RIS

TY - GEN

T1 - Inter Mode Interference in Circular Antenna Arrays for Orbital Angular Momentum (OAM) Based Communication

AU - Wulff, Michael

AU - Wang, Lei

AU - Yang, Cheng

AU - Schuster, Christian

PY - 2022/9/21

Y1 - 2022/9/21

N2 - Optimization of antenna arrays is essential to achieve high data rates in modern communication systems. One promising array used in future communication systems is the uniform circular array (UCA) carrying orbital angular momentum (OAM) modes. In a UCA, the array elements are arranged in a circle with uniform angular spacing. The OAM modes are defined by the excitation of an array, i.e. an OAM mode is excited by exciting each element with equal amplitude and a phase increasing linearly around the array. When one OAM mode is excited and another OAM mode is received, this is called inter mode interference (IMI). Within an array this could be caused by a non-symmetrical array structure. In this paper, the IMI of non-symmetrical UCAs operating OAM waves is explored with comparison to the symmetrical UCA. It is shown, that change in geometric deviation along the array can be used to determine the dominant IMI, which allows the prediction of the IMI when designing an OAM array. These predictions are validated using an elliptical array and an array with misaligned elements. Knowledge of the IMI caused by a geometrical deviation can be used in the future to prevent or correct this IMI.

AB - Optimization of antenna arrays is essential to achieve high data rates in modern communication systems. One promising array used in future communication systems is the uniform circular array (UCA) carrying orbital angular momentum (OAM) modes. In a UCA, the array elements are arranged in a circle with uniform angular spacing. The OAM modes are defined by the excitation of an array, i.e. an OAM mode is excited by exciting each element with equal amplitude and a phase increasing linearly around the array. When one OAM mode is excited and another OAM mode is received, this is called inter mode interference (IMI). Within an array this could be caused by a non-symmetrical array structure. In this paper, the IMI of non-symmetrical UCAs operating OAM waves is explored with comparison to the symmetrical UCA. It is shown, that change in geometric deviation along the array can be used to determine the dominant IMI, which allows the prediction of the IMI when designing an OAM array. These predictions are validated using an elliptical array and an array with misaligned elements. Knowledge of the IMI caused by a geometrical deviation can be used in the future to prevent or correct this IMI.

U2 - 10.1109/AP-S/USNC-URSI47032.2022.9887018

DO - 10.1109/AP-S/USNC-URSI47032.2022.9887018

M3 - Conference contribution/Paper

SN - 9781665496582

BT - 2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting

PB - IEEE

ER -