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QPSK-Modulation Modem Invariant to the Rotation of the Signal Constellation Plane Cover

QPSK-Modulation Modem Invariant to the Rotation of the Signal Constellation Plane

Open Access
|Mar 2019

References

  1. [1] N. P. Nikitin, V. I. Luzin, Televizionnye tsifrovye sistemy [Television digital systems]. Yekaterinburg: UrFU, 2016, 106 p. (In Russian)
  2. [2] E. A. Sukachev, Cellular Networks of Radio Communication with Mobile Objects: Tutorial, 3rd ed. Odessa: ONAT named after O. S. Popova, 2013, 256 р. (in Russian)
  3. [3] M. I. Mazurkov, Sistemy shirokopolosnoi radiosvyazi [Broadband radio communication systems]. Odessa: Nauka i tekhnika, 2009, 344 р. (in Russian)
  4. [4] B. Sklyar, Digital communication. Theoretical bases and practical application, 2nd ed. Trans. from English. E. G. Groza and others. Moscow: Williams, 2016, 1099 p.
  5. [5] B. I. Shakhtarin, Sinkhronizatsiya v radiosvyazi i radionavigatsii [Synchronization in Radio Communication and Radio Navigation]. Moscow: Hotline – Telecom, p. 256, 2011. (in Russian)
  6. [6] A. V. Sadchenko, O. A. Kushnirenko, O. I. Yefimov, V. V. Punko, S. Y. Parovyi, А. В. Садченко, О. А. Кушниренко, О. И. Ефимов, В. В. Пунько, and С. Ю. Паровой, “Correlation Scheme of Frame Synchronization in Communication Systems With QPSK-Modulation,” Tekhnologiya i Konstruirovanie v Elektronnoi Apparature, vol. 6, pp. 22–28, 2017. https://doi.org/10.15222/tkea2017.6.22 (in Russian)10.15222/TKEA2017.6.22
  7. [7] V. P. Malakhov and A. V. Sadchenko, “Reducing the Complexity of the Technical Implementation of Information Transfer Systems Using the Sequences of Gold,” Odes’kyi Politechnichnyi Universytet. Pratsi, no. 1, pp. 138–141, 2004. (in Russian)
  8. [8] A. V. Sadchenko, O. A. Kushnirenko, and A. V. Troyansky, “The Algorithm of Random Length Sequences Synthesis for Frame Synchronization of Digital Television Systems,” Odes’kyi Politechnichnyi Universytet. Pratsi, no. 3 pp. 97–103, 2015. https://doi.org/10.15276/opu.3.47.2015.1410.15276/opu.3.47.2015.14
  9. [9] A. V. Sadchenko, V. A. Averochkin, O. A. Kushnirenko, and N. A. Petrusenko, “Algorithm for the Synthesis of Binary Sync Codes of Arbitrary Length With Good Aperiodic Autocorrelation Functions,” in 13th ISPC “Modern Information and Electronic Technologies” (MIET-2012), Odessa, Ukraine, p. 181, 2012. (in Russian)
  10. [10] A. V. Sadchenko, V. A. Averochkin, and O. A. Kushnirenko, “Improving the Reliability of Synchronization of Codedivision-Based Communication Systems,” in 12th ISPC “Modern Information and Electronic Technologies” (MIET-2011), Odessa, Ukraine, pp. 191, 2011. (in Russian)
  11. [11] Umesharaddy and B. K. Sujatha, “Optimization of QPSK MODEM with AWGN Implemented in FPGA”, in 2017 International Conference on Inventive Systems and Control (ICISC), pp. 1–6, Jan. 2017. https://doi.org/10.1109/icisc.2017.806872110.1109/icisc.2017.8068721
  12. [12] E. Kabalci, Y. Kabalci, and I. Develi, “Modelling and Analysis of a Power Line Communication System With QPSK Modem for Renewable Smart Grids”, International Journal of Electrical Power & Energy Systems, vol. 34, no. 1, pp. 19–28, Jan. 2012. https://doi.org/10.1016/j.ijepes.2011.08.02110.1016/j.ijepes.2011.08.021
  13. [13] W. Song and Q. Yao, “Design and Implement of QPSK Modem Based on FPGA,” in 2010 3rd International Conference on Computer Science and Information Technology, vol. 9, Jul. 2010. https://doi.org/10.1109/iccsit.2010.556400010.1109/iccsit.2010.5564000
  14. [14] M. AL-Rawi and M. AL-Rawi, “Effect of Changing the Symbol Rate of QAM Modem on the Performance of 32kb/s ADPCM System,” Journal of Siberian Federal University. Engineering & Technologies, vol. 9, no. 2, pp. 197–203, Mar. 2016. https://doi.org/10.17516/1999-494x-2016-9-2-197-20310.17516/1999-494X-2016-9-2-197-203
  15. [15] P. D. Thombare and A. M. Shah, “Low Power QPSK Modulator on FPGA,” International Journal of Avanced Research Computer Science and Software Engineering, vol. 4, no. 1, Jan. 2014.
  16. [16] M. Mukesh, L. Abhishek, and R. R. Bhambar, “QPSK Modulator and Demodulator Using FPGA for SDR,” International. Journal of Engineering Research and Applications, vol. 4, no. 4, pp. 394–397, April 2014.
  17. [17] P. R. Kolankar and S. V. Sakhare, “A Review on FPGA Implementation of Low Power QPSK Modulator by Using Hardware Co-Simulation,” International Journal of Engineering Research and Applications, vol. 4, no. 2, pp. 458–461, Feb. 2014.
  18. [18] Umesharaddy, and B. K. Sujatha, “Performance Improvement of QPSK Modem Implemented I FPGA,” in 2015 International Conference on Smart Sensors10.1109/SMARTSENS.2015.7873621
  19. [19] B. Krongold, T. Pfau, N. Kaneda, and S. C. J. Lee, “Comparison Between PS-QPSK and PDMQPSK With Equal Rate and Bandwidth,” IEEE Photonics Technology Letters, vol. 24 no. 3 pp. 203–205, Feb 2012. https://doi.org/10.1109/lpt.2011.217497810.1109/lpt.2011.2174978
  20. [20] G. Elamary, G. Chester, and J. Neasham “A Simple Digital VHDL QPSK Modulator Designed Using CPLD/FPGA for Biomedical Devices Applications,” in Proceedings of the World Congress on Engineering, vol. 1, July 2009. ISBN 978-988.
Language: English
Page range: 149 - 156
Published on: Mar 12, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2019 Andrey Sadchenko, Oleg Kushnirenko, published by Riga Technical University
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.