Microwave and Optical Electric Field Interaction in Microwave Polarization Detector Based on Photonic Technology for EMC Measurement
DOI:
https://doi.org/10.14203/jet.v16.7-10Keywords:
Microwave, optical, electric field, microwave polarization, EMCAbstract
We analyze the interaction of microwave and optical electric field in a microwave polarization detector based on photonic technology for Electromagnetic Compatibility (EMC) measurement. The detector consists of two orthogonal optical waveguides and patch antennas embedded with two orthogonal gaps fabricated on an Electro-Optic (EO) crystal. Wireless microwave signals can be received, separated and converted directly to lightwave signals through optical modulation using the proposed detector. This detector operates with no external power supply and with low microwave distortion. Microwave polarization can be identified using the proposed interface. In addition, it enables us to measure the magnitude and phase of the wireless signal simultaneously. The analysis of the device was done and presented at the operation frequency of 26 GHz. The proposed interface can be applied for EMC measurement through the radio-over-fiber link.Downloads
References
Henry W. Ott, Electromagnetic Compatibility Engineering, New Jersey: John Wiley & Sons, Inc., 2009.
C. H. Lee, Microwave Photonics, New York: CRC Press Taylor & Francis Group, 2007.
S. Shinada, T. Kawanishi, and M. Izutsu, “A 10-GHz resonant-type LiNbO3 optical modulator array”, IEEE Transaction Electronics, vol. E90-C, no. 5, pp. 1090-1095. 2007.
H. Murata, N. Kohmu, Y. N. Wijayanto, Y. Okamura, “Integration of patch antenna on optical modulators,“ IEEE Photonics Society News, vol. 28, no. 2, April 2014.
Y. N. Wijayanto, H. Murata, and Y. Okamura, “Novel electro-optic microwave-lightwave converters utilizing a patch antenna embedded with a narrow gap”, IEICE Electronic Express, vol. 8, no. 7, pp. 491-497. 2011.
Y. N. Wijayanto, H. Murata, H. Shiomi, and Y. Okamura, “Electro-optic microwave-lightwave converter using patch antenna embedded with a narrow gap for optical modulation”, in Proc. 2011 Conference on Lasers and Electro-Optics, Baltimore, USA, May, 2011.
W. Yuyu, S. Ukhty, W. Heroe, T. Yana, S. Arie, “Antena fraktal koch dengan catuan EMC pada UHF untuk aplikasi televisi digital terestrial”, Jurnal Elektronika dan Telekomunikasi, vol 15, no 1, pp. 1-5, 2016.
K. Zhang, and D. Li, Electromagnetic Theory for Microwaves and Optoelectronics, Berlin Heidelberg: Springer-Verlag, 2008.
R. Fitzpatrick, Maxwell’s Equation and the Principles of Electromagnetism, Hingham : Infinity Science Press, 2008.
R. E. Newnham, Properties of Materials, New York USA: Oxford University Press Inc., 2005.
Downloads
Published
Issue
Section
License
Authors who publish with this journal agree to the following terms:
The copyright to this article is transferred to BRIN if and when the article is accepted for publication. The undersigned hereby transfers any and all rights in and to the paper including without limitation all copyrights to BRIN. The undersigned hereby represents and warrants that the paper is original and that he/she is the author of the paper, except for material that is clearly identified as to its original source, with permission notices from the copyright owners where required. The undersigned represents that he/she has the power and authority to make and execute this assignment. The copyright transfer form can be downloaded here.
The corresponding author signs for and accepts responsibility for releasing this material on behalf of any and all co-authors. This agreement is to be signed by at least one of the authors who have obtained the assent of the co-author(s) where applicable. After submission of this agreement signed by the corresponding author, changes of authorship or in the order of the authors listed will not be accepted.

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.


