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Modernization of DVB-S2 Standard Using Signal-Code Constructions Based on Amplitude Modulation of Many Components

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Języki publikacji
EN
Abstrakty
EN
It is proposed to modernize the DVB-S2 standard by using AMMC (amplitude modulation of many components) signals instead of 8PSK (8-phase shift keying) and APSK (amplitude-phase shift keying) signals, and to modernize the DVB-S2 standard equipment by using the AMMC modulator and AMMC demodulator. Usage of AMMC makes it possible to reduce the symbol error rate in communication channel up to 52 times. The satellite digital video broadcast systems that apply signal-code constructions based on AMMC are characterized by a higher energy efficiency from 1 to 2.6 dB compared with signal-code constructions based on 8PSK and APSK.
Twórcy
  • Lviv Polytechnic National University
  • Warsaw University of Technology
Bibliografia
  • [1] N.C. Sagias, S. Papaharalabos , and P.T. Mathiopoulos, “Cooperative DVB-SH satellite broadcasting systems with rotated signal constellations”, China Communications, vol. 12, Issue 6, 2015, p. 59–72.
  • [2] T. Liu and I.B. Djordjevic, “Signal constellation design for cross-phase modulation dominated channels”, IEEE Photonics Journal, Vol. 7, Issue 4, 2015, p. 1–9.
  • [3] A. Agarwal and S.N. Mehta, “Combined effect of block interleaving and FEC on BER performance of OFDM based WiMAX (IEEE 802.16d) System”, American Journal of Electrical and Electronic Engineering, Vol. 3, No. 1, 2015, p. 4–12.
  • [4] I. Tache and C. Burlacu, “Perceptual Video Quality measurement method for satellite broadcasting”. in Proceedings of the 2014 6th International Conference on Electronics, Computers and Artificial Intelligence (ECAI), Bucharest (Romania), 2014, p. 43–46.
  • [5] M. Seniv, V. Yakovyna, and I. Symets, “Software for visualization of reliability block diagram and automated formulation of operability conditions of technical systems”, in Proceedings of the 14th Int. Conf. on Perspective Technologies and Methods in MEMS Design (MEMSTECH 2018), Lviv (Ukraine), 2018, p. 191–195. DOI: 10.1109/MEMSTECH.2018.8365731
  • [6] B. Mandziy, M. Seniv, N. Mosondz, and A. Sambir, “Programming visualization system of block diagram reliability for program complex ASNA-4”, in Proceedings of 13th Int. Conf.: The Experience of Designing and Application of CAD Systems in Microelectronics (CADSM 2015), Lviv (Ukraine), 2015, p. 258–262. DOI: 10.1109/CADSM.2015.7230851
  • [7] European Standard EN 300 421 v.1.1.2, ETCI, 1997, 24 p.
  • [8] European Standard EN 301 210 v.1.1.1, ETCI, 1999, 32 p.
  • [9] European Standard ETSI EN 302 307 v.1.3.1, ETCI, 2013, 84 p.
  • [10] I.V. Gorbatyy, “Optimization of signal-code constructions using the maximum efficiency criterion”, Radioelectronics and communications systems, Vol. 56, Issue 12, 2013, p. 560–567. DOI: 10.3103/S0735272713120029
  • [11] I.V. Horbatyi, “Research on properties of devices for shaping and processing of signals based on amplitude modulation of many components”, Radioelectronics and communications systems, Vol. 61, Issue 10, 2018, p. 467–476. DOI: 10.3103/S0735272718100047
  • [12] A. Bondariev, S. Altunin, I. Horbatyi, I. Maksymiv, “Firmware implementation and experimental research of the phase-locked loop with improved noise immunity”, Eastern-European Journal of Enterprise Technologies, Vol. 5, No 9 (95), 2018, p. 17–25. DOI: 10.15587/1729- 4061.2018.143178
  • [13] J.G. Proakis, “Digital Communications”, 4th ed., McGraw-Hill, 2001.
  • [14] B. Sklar, “Digital Communications: Fundamentals and Applications”, 2nd ed., New Jersey (USA): Prentice-Hall, 2001.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-378a3cac-5c0b-4299-9c12-1ee04a596f69
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