CFP last date
20 January 2025
Reseach Article

Suppression of Mixing Spurs

Published on February 2017 by Aakriti Bakshi
National Conference on Latest Initiatives and Innovations in Communication and Electronics
Foundation of Computer Science USA
IICE2016 - Number 2
February 2017
Authors: Aakriti Bakshi
7b368be3-f37c-4261-9ec3-bba0d355c8a4

Aakriti Bakshi . Suppression of Mixing Spurs. National Conference on Latest Initiatives and Innovations in Communication and Electronics. IICE2016, 2 (February 2017), 13-17.

@article{
author = { Aakriti Bakshi },
title = { Suppression of Mixing Spurs },
journal = { National Conference on Latest Initiatives and Innovations in Communication and Electronics },
issue_date = { February 2017 },
volume = { IICE2016 },
number = { 2 },
month = { February },
year = { 2017 },
issn = 0975-8887,
pages = { 13-17 },
numpages = 5,
url = { /proceedings/iice2016/number2/26957-1686/ },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Proceeding Article
%1 National Conference on Latest Initiatives and Innovations in Communication and Electronics
%A Aakriti Bakshi
%T Suppression of Mixing Spurs
%J National Conference on Latest Initiatives and Innovations in Communication and Electronics
%@ 0975-8887
%V IICE2016
%N 2
%P 13-17
%D 2017
%I International Journal of Computer Applications
Abstract

Microwave Photonic mixer is proposed and its major critical problem i. e. spurious signals are suppressed using various optical components. These optical components are either added or removed from the system to get the desired outputs. The outputs of both optical and electrical analyzers are also measured.

References
  1. Z. Tang and S. Pan, "Microwave photonic mixer with suppression of mixing spurs" in Proc. 14th Int. Conf. Optical Commun. Netw. (ICOCN), 2015, pp. 1-3.
  2. G. K. Gopalakrishnan, W. K. Burns, and C. H. Bulmer, "Microwave optical mixing in LiNbO3 modulators " IEEE Trans. Microwave Theory Tech. , vol. 41, no. 12, pp. 2383-2391, Dec. 1993.
  3. Z. Z. Tang, F. Z. Zhang, D. Zhu, X. H. Zou, and S. L. Pan, "A photonic frequency down-converter based on single dual drive Mach-Zehnder modulator" in the MWP 2013, paper W4-8, 2013.
  4. Z. Tang and S. Pan, "A filter free photonic microwave single sideband mixer" IEEE Microwave Theory and Technique Society, vol. 26, pp. 67-69, Dec. 2015.
  5. Z. Z. Tang and S. L. Pan, "A reconfigurable photonic microwave mixer" in the MWP 2014, pp. 343-345, 2014.
  6. A. J. Seeds, "Microwave photonics," IEEE Transactions on Microwave Theory and Techniques, vol. 50, no. 3, pp. 877-887, 2002.
  7. Jianping Yao, "A tutorial on microwave photonics," IEEE Photonics Society Newsletter, pp. 4-12, 2012.
  8. B. Hraimel, X. Zhang, Y. Pei, K. Wu, T. Liu, T. Xu and Q. Nie, "Optical single sideband modulation with tunable optical carrier to sideband ratio in radio over fiber systems," Journal of Lightwave Technology, vol. 29, no. 5, pp. 775-781, 2011.
  9. Qi Zhou and Mable P. Fok, "Microwave photonic mixer based on polarization rotation and polarization dependent modulation," IEEE Photonics Technology Letters, vol. 27, no. 23, 2015.
  10. Sai Naing Min Htet, "Generation of optical carrier suppressed signal for radio-over-fiber system using dual-drive Mach-Zehnder modulator," International Journal of Scientific and Research Publications, vol. 4, Issue. 9, 2014.
  11. E. H. W. Chan and R. A. Minasian, "Microwave photonic down-converter with high conversion efficiency," IEEE Journal of Lightwave Technology, vol. 30, no. 23, pp. 3580-3585, 2012.
Index Terms

Computer Science
Information Sciences

Keywords

Microwave Photonic Mixer Spurious Signals Mach-zehnder Modulator