A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain
Multiple-input-multiple-output (MIMO) array antenna integrated with the double negative metamaterial superstrate is presented. The triangular metamaterial unit cell is designed by combining two triangular elements positioned in complementary on the same plane at different sizes. Such design with mor...
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John Wiley and Sons Inc.
2020
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Online Access: | http://umpir.ump.edu.my/id/eprint/32035/1/A%20triangular%20MIMO%20array%20antenna%20with%20a%20double%20negative%20metamaterial%20.pdf http://umpir.ump.edu.my/id/eprint/32035/ https://doi.org/10.1002/mmce.22320 https://doi.org/10.1002/mmce.22320 |
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my.ump.umpir.320352022-03-01T07:52:15Z http://umpir.ump.edu.my/id/eprint/32035/ A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain Ojo, Rasheed Jamlos, M. F. Soh, Ping Jack Mohd Aminudin, Jamlos Norfatihah, Bahari Lee, Yeng Seng Al‐Bawri, Samir Salem Mohamad Shaiful, Abdul Karim Khairil Anuar, Khairi TJ Mechanical engineering and machinery Multiple-input-multiple-output (MIMO) array antenna integrated with the double negative metamaterial superstrate is presented. The triangular metamaterial unit cell is designed by combining two triangular elements positioned in complementary on the same plane at different sizes. Such design with more gaps is used to excite rooms for more capacitance effects to shift the resonance frequency thus enlarging the bandwidth of the MIMO antenna. The unit cell is arranged in 7 × 7 periodic array created a superstrate metamaterial plane where the Cstray exists in parallel between the two consecutive cells. It is found that the existence of Cstray and gaps for each unit cells significantly influenced the bandwidth of the MIMO antenna. The higher value of the capacitance will lead to the negativity of permittivity. The superstrate plane is then located on top of the 4 × 2 MIMO with a gap of 5 mm. The integration resulted in improving the bandwidth to 12.45% (5.65-6.4GHz) compared to only 3.49% bandwidth (5.91-6.12GHz) of the MIMO antenna itself. Moreover, the negative permeability characteristic is created by a strong magnetic field between the complementary unit cells to have 14.05-dBi peak gain. Besides that, the proposed antenna managed to minimize the mutual coupling and improve the mean effective gain, envelope correlation coefficient, and multiplexing efficiency. John Wiley and Sons Inc. 2020-07-02 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/32035/1/A%20triangular%20MIMO%20array%20antenna%20with%20a%20double%20negative%20metamaterial%20.pdf Ojo, Rasheed and Jamlos, M. F. and Soh, Ping Jack and Mohd Aminudin, Jamlos and Norfatihah, Bahari and Lee, Yeng Seng and Al‐Bawri, Samir Salem and Mohamad Shaiful, Abdul Karim and Khairil Anuar, Khairi (2020) A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain. International Journal of RF and Microwave Computer-Aided Engineering, 30 (8). pp. 1-2. ISSN 1096-4290 https://doi.org/10.1002/mmce.22320 https://doi.org/10.1002/mmce.22320 |
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TJ Mechanical engineering and machinery Ojo, Rasheed Jamlos, M. F. Soh, Ping Jack Mohd Aminudin, Jamlos Norfatihah, Bahari Lee, Yeng Seng Al‐Bawri, Samir Salem Mohamad Shaiful, Abdul Karim Khairil Anuar, Khairi A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
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Multiple-input-multiple-output (MIMO) array antenna integrated with the double negative metamaterial superstrate is presented. The triangular metamaterial unit cell is designed by combining two triangular elements positioned in complementary on the same plane at different sizes. Such design with more gaps is used to excite rooms for more capacitance effects to shift the resonance frequency thus enlarging the bandwidth of the MIMO antenna. The unit cell is arranged in 7 × 7 periodic array created a superstrate metamaterial plane where the Cstray exists in parallel between the two consecutive cells. It is found that the existence of Cstray and gaps for each unit cells significantly influenced the bandwidth of the MIMO antenna. The higher value of the capacitance will lead to the negativity of permittivity. The superstrate plane is then located on top of the 4 × 2 MIMO with a gap of 5 mm. The integration resulted in improving the bandwidth to 12.45% (5.65-6.4GHz) compared to only 3.49% bandwidth (5.91-6.12GHz) of the MIMO antenna itself. Moreover, the negative permeability characteristic is created by a strong magnetic field between the complementary unit cells to have 14.05-dBi peak gain. Besides that, the proposed antenna managed to minimize the mutual coupling and improve the mean effective gain, envelope correlation coefficient, and multiplexing efficiency. |
format |
Article |
author |
Ojo, Rasheed Jamlos, M. F. Soh, Ping Jack Mohd Aminudin, Jamlos Norfatihah, Bahari Lee, Yeng Seng Al‐Bawri, Samir Salem Mohamad Shaiful, Abdul Karim Khairil Anuar, Khairi |
author_facet |
Ojo, Rasheed Jamlos, M. F. Soh, Ping Jack Mohd Aminudin, Jamlos Norfatihah, Bahari Lee, Yeng Seng Al‐Bawri, Samir Salem Mohamad Shaiful, Abdul Karim Khairil Anuar, Khairi |
author_sort |
Ojo, Rasheed |
title |
A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
title_short |
A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
title_full |
A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
title_fullStr |
A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
title_full_unstemmed |
A triangular MIMO array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
title_sort |
triangular mimo array antenna with a double negative metamaterial superstrate to enhance bandwidth and gain |
publisher |
John Wiley and Sons Inc. |
publishDate |
2020 |
url |
http://umpir.ump.edu.my/id/eprint/32035/1/A%20triangular%20MIMO%20array%20antenna%20with%20a%20double%20negative%20metamaterial%20.pdf http://umpir.ump.edu.my/id/eprint/32035/ https://doi.org/10.1002/mmce.22320 https://doi.org/10.1002/mmce.22320 |
_version_ |
1726791651401138176 |