IEEE OJAP

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IEEE OJAP

IEEE OJAP

@ieee_ojap

OJAP is the first open journal of the IEEE Antennas and Propagation Society

Piscataway, New Jersey, USA Katılım Kasım 2019
5 Takip Edilen168 Takipçiler
IEEE OJAP
IEEE OJAP@ieee_ojap·
Special Section on Antenna-Enabled Sensors and Systems, edited by Mahmoud Wagih, Gaetano Marrocco, Mohammad H. Zarifi, Jasmin Grosinger, Chaoyun Song and Qammer H. Abbasi is available here: ieeexplore.ieee.org/xpl/topics.jsp…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
Read the Guest Editorial: Antenna-Enabled Sensors and Systems, the New Frontier in Sustainable Wireless Systems by Guest Editors Mahmoud Wagih, Gaetano Marrocco, Mohammad H. Zarifi, Jasmin Grosinger, Chaoyun Song and Qammer H. Abbasi here: ieeexplore.ieee.org/document/10689…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
The Article Processing Charge (APC) for papers submitted in 2024 is USD $1995 per article, plus applicable local taxes. The APC for papers submitted in 2025 is USD $2075 per article, plus applicable local taxes. For discounts, please refer to ieeeaps.org/ieee-ojap-for-…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
[Call for Paper] Special Section on Advances in Antenna Design and Radio Propagation for Integrated Sensing and Communications Submission Deadline: March 31, 2025 More info: ieeeaps.org/advances-in-an…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
[Call for Paper] Special Section on Near-field Antenna Systems for Communications and Sensing Submission Deadline: January 31, 2025 More info: ieeeaps.org/near-field-ant…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
[Call for Paper] Special Section on Electromagnetic Medical Imaging and Sensing based on A Priori Knowledge and Machine Learning Submission Deadline: January 31, 2025 More info: ieeeaps.org/electromagneti…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
[Call For Proposals: Special Sections] Submission Deadline: May 1, 2024 The Editorial Board of the OJAP is looking for proposals for special sections on topics relevant to an emerging field of growing interest. More: ieeeaps.org/call-for-propo…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
Ortiz, Uddin, Guerra et al present an array thinning approach for a 25-element antenna array in a 5×5 grid at 5.4 GHz. To eliminate a max. number of antenna elements with minor gain loss and reduce the array size, weight, cost & power requirements. ieeexplore.ieee.org/document/10312…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
Y Hayash,Y. Katsuue, Y. Tanaka et al demonstrate an accurate antenna-gain determination method using the distance between the ACs of the antennas determined from the spatial phase distribution of the near field measured based on an electrooptic technique. ieeexplore.ieee.org/document/10310…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
Elizvan Juarez, Marco Panduro, David Covarrubias, Alberto Reyna, Carlos Del Rio present a new design technique to improve the reduction of phase shifters using sub-arrays and CORPS (coherently radiating periodic structures) technology. ieeexplore.ieee.org/document/10310… #APS #IEEE #OJAP
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IEEE OJAP
IEEE OJAP@ieee_ojap·
Cathers, LoVetri, Jeffrey et al introduce a novel approach to calibration that models the antennas and field propagation as 2-port networks , for which common network theory and de-embedding techniques can be applied. ieeexplore.ieee.org/document/10304…
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IEEE OJAP
IEEE OJAP@ieee_ojap·
R. Grove and J. Dall present a calibration technique that reduces the number of measurements required to obtain adequate calibration coefficients, compensating for all system imperfections that can be described in matrix form. ieeexplore.ieee.org/document/10308… #APS #IEEE #OJAP
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IEEE OJAP
IEEE OJAP@ieee_ojap·
A Koutinos, C Zekios and S. Georgakopoulos address the limitation of FPT by (1) extending FPT to wideband designs, (2) using feeding points located at different planes, and (3) designing feeding networks as unequal power dividers. ieeexplore.ieee.org/document/10305… #OJAP
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IEEE OJAP
IEEE OJAP@ieee_ojap·
B.BAHAROM , Y. Sugimoto, R.Bakar , K. SAKAKIBARA, N Kikuma, Y. Yamada and N. Rahman proposes a 2×2 lens array antenna composed of square-bottom lenses with a concave-convex lens shaping design to improve the uniformity and aperture efficiency. ieeexplore.ieee.org/document/10287… #OJAP
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IEEE OJAP
IEEE OJAP@ieee_ojap·
Junming Diao and Lu Liu propose to overcome the limitation of the Thévenin equivalent circuit in determining the loss and scattered powers when dealing with a lossy antenna that is near a large load impedance. Read more: ieeexplore.ieee.org/document/10265… #APS #IEEE #OJAP
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