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Novel Construction of Eight Transmit Antennas by Varying the Receiving Antennas Using Maximum Likelihood Decoding Algorithm

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Smart and Intelligent Systems

Abstract

In this paper, Multiple Input Multiple Output (MIMO) system with Space-Time Block Code (STBC) technique is used to satisfy the recent demands in the wireless communication system. That means the system should support the system’s high data rate, reliability, and performance in terms of the bit error rates. For achieving high data rates and high reliability, the antennas at the transmitter and the receiver side of the communication system should increase. Here we consider the 8 × 8 system it consists of eight antennas at both transmitter and receiver side. This 8 × 8 system matrix will design based on almouti codes. This almouti code with the STBC technique gives full data rates and high reliability. So by increasing the antennas, the high data rates by splitting the among the transmitter antennas. In this system at the receiver, the linear processing of the maximum likelihood (ML) decoding technique simplifies the decoding complexity. The simulation result shows the achieving high bit error rate (BER) and the channel capacity. The (8, 8) system outperforms the previous system without increasing the receiver decoding complexity.

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References

  1. Aktas E, Gama HE, Fitz MP (2003) On the design and maximum-likelihood decoding of space–time trellis codes. IEEE Areas Commun 51(6)

    Google Scholar 

  2. Berenguer I, Wang X (2003) Space-time coding and signal processing for MIMO communications. J Comput Sci Technol 18(6):689–702

    Article  MathSciNet  Google Scholar 

  3. Chaudhary S, Patil AJ (2012) Performance analysis of MIMO-space time block coding with different modulation techniques. IEEE Areas Tele Commun 3

    Google Scholar 

  4. Erotokritou ID (2006) Space-time block coding for multiple transmit antennas over time-selective fading channels. IEEE Trans Signal Proc

    Google Scholar 

  5. Khaleelahmed S, Venkateswara Rao N (2020) Energy efficient power allocation using salp particle swarm optimization model in MIMO–NOMA systems. Wireless Pers Commun 111(02):1235–1254. https://doi.org/10.1007/s11277-019-06911-z. ISSN: 1572–834X

  6. Khaleelahmed SK, Venkateswara Rao N (2019) Priority based scheduling for energy efficient power allocation in MIMO-NOMA system with multiple users. Int J Intell Eng Syst 12(4):348–357. https://doi.org/10.22266/ijies2019.0831.32. ISSN: 2185–3118

  7. Murthy NS (2020) Improved isolation metamaterial inspired mm-wave MIMO dielectric resonator antenna for 5G application. Progr Electromag Res C 100:247–261. https://doi.org/10.2528/PIERC19112603

    Article  Google Scholar 

  8. Murthy NS, Sri Gowri S, Prabhakara Rao B (2015) Space time block codes using multiple transmitting antennas. J Wireless Netw Commun 5(1):9–18. https://doi.org/10.5923/j.jwnc.20150501.02

  9. Murthy NS, Sri Gowri S, Prabhakara Rao B (2014) Orthogonal Stbcs for five, six and seven transmit antennas. Recent Adv Commun Netw Technol 3(2):93–96. ISSN: 2215–082X (Online), ISSN: 2215–2811

    Google Scholar 

  10. Murthy NS, Sri Gowri S, Prabhakara Rao B (2014) Non orthogonal quasi-orthogonal space-time block codes based on circulant matrix for eight transmit antennas. Int J Appl Eng Res 9(21):9341–9351. ISSN 0973–4562 (Scopus index)

    Google Scholar 

  11. Murthy NS, Sri Gowri S, Prabhakara Rao B (2013) Low delay general complex orthogonal space-time block code for seven and eight transmit antenna. Int J Eng Res Technol (IJERT) 2(6). ISSN: 2278–0181

    Google Scholar 

  12. Murthy NS, Sri Gowri S, Prabhakara Rao B (2013) Orthogonal space-time block codes for four, five and transmit antennas with 4/7 and 5/11 code rates. Int J Eng Res Appl (IJERA) 3(3):1380–1382. ISSN: 2248–9622

    Google Scholar 

  13. Murthy NS, Sri Gowri S, Prabhakara Rao B (2012) Orthogonal space-time block codes for 6 transmit antennas”, Int J Eng Res Appl (IJERA) 2(4):362–364. ISSN: 2248–9622

    Google Scholar 

  14. Murthy NS, Sri Gowri S, Prabhakara Rao B (2012) Two new general complex orthogonal space-time block codes for 6 and 16 transmit antenna. Int J Electron Commun Eng Technol 3(2). ISSN: 0976–6464

    Google Scholar 

  15. Murthy NS, Sri Gowri S (2012) Full rate general complex orthogonal space-time block code for 8-transmit antenna. Elsevier, Sciverse Science Direct Procedia Engineering in IWIEE 2012, China, Jan. 9–10. H Index: 11, IF: 0.61 (Scopus index). ISSN: 1877–7058

    Google Scholar 

  16. Murthy NS, Sri Gowri S, Prabhakara Rao B (2014) New high rates non-orthogonal STBCs for seven and eight transmit antennas. IETE Natl J Innov Res II(II), pp 9–12. ISSN: 2320–8961

    Google Scholar 

  17. Murthy NS, Sri Gowri S, Prabhakara Rao B (2014) Quasi-Orthogonal space-time block codes based on circulant matrix for eight transmit antennas. In: IEEE International conference on communication and signal processing- ICCSP 14, Melmaruvathur, 3–5th April 2014

    Google Scholar 

  18. Murthy NS, Sri Gowri S, Prabhakara Rao B (2014) New orthogonal space-time block code for eight transmit antenna. In: Third international conference on recent trends in engineering & technology (ICRTET’2014), 28–30th. Elsevier Publications, Chandwad, Nasik

    Google Scholar 

  19. Murthy NS, Sri Gowri S, Prabhakara Rao B (2013) Orthogonal space-time block code for six transmit antenna”, international conference on communications, networking and signal processing 19–21 September 2013, School of Electronics Engineering, VIT University, Vellore, Tamilnadu, India

    Google Scholar 

  20. Murthy NS, Sri Gowri S, Prabhakara Rao B (2013) Orthogonal Space-Time Block Code for maximal rate Nine Transmit antenna. In: Second international conference on communication and signal processing on April 2013, QIS engineering college, Ongole

    Google Scholar 

  21. Murthy NS, Sri Gowri S (2012) Complex orthogonal space-time block codes rates 3/7,4/8 and 6/8for 3,4 and 4transmit antennas in space time coding. In: International conference on devices, circuits and systems–ICDCS 2012, Mar 15–16, 2012, Karunya University, Coimbatore, IEEE Explore

    Google Scholar 

  22. Murthy NS, Sri Gowri S, Satyanarayana P (2011) Complex orthogonal space-time block codes rates 5/13 and 6/14 for 5 and 6 transmit antennas. Wireless Communications, Networking and Mobile Computing (WiCOM). In: 2011 7th International conference Sept 23–25 at Wuhan, China, IEEE Explore Digital Object Identifier. https://doi.org/10.1109/wicom.2011.6040107

  23. Murthy NS, Praneeth KJ, Praneeth Sai P (2020) Spectral efficiency of the linear, precoded zero force and mrc using massive mimo. Int J Adv Sci Technol 29(3):6618–6622

    Google Scholar 

  24. Nimmagadda SM (2020) Enhancement of efficiency and performance gain of massive MIMO system using trial-based rider optimization algorithm. Wireless Pers Commun. https://doi.org/10.1007/s11277-020-07921-y

    Article  Google Scholar 

  25. Nimmagadda SM (2020) Optimal spectral and energy efficiency trade-off for massive MIMO technology: analysis on modified lion and grey wolf optimization. Soft Comput 24:12523–12539. https://doi.org/10.1007/s00500-020-04690-5

  26. Padarti VK, Nandhanavanam VR (2018) A novel method for joint-PAPR mitigation in OFDM-based massive MIMO downlink systems. Int J Eng Technol 7(3):1185–1188. ISSN No: 2227–524X

    Google Scholar 

  27. Papadias CB, Foschini GJ (2003) Capacity-approaching space–time codes for systems employing four transmitter antennas. IEEE Trans Inform Theory 49(3):726–733

    Google Scholar 

  28. Papadias CB, Foschini GJ (2001) A space-time coding approach for systems employing four transmit antennas. ICASSP 4(7):2481–2484

    Google Scholar 

  29. Shr K-T, Chen H-D, Huang Y-H (2010) A low- complexity viterbi decoder for space-time trellis codes. IEEE Trans Circuits Syst Regul Papers 57(4):873–855

    Google Scholar 

  30. Vijaya Kumar P, Venkateswara Rao N (2020) Adaptive SOICAF algorithm for PAPR mitigation in OFDM systems. Wireless Pers Commun 113(2):927–943. ISSN No: 0929–6212. Springer

    Google Scholar 

  31. Zhang H, Yuan D, Chen H-H (2010) On array- processing-based quasi-orthogonal space-time block-coded OFDM systems. IEEE Trans Veh Technol 59(1):508–513

    Article  Google Scholar 

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Nimmagadda, S., Gandham, V., Shaik, K. (2022). Novel Construction of Eight Transmit Antennas by Varying the Receiving Antennas Using Maximum Likelihood Decoding Algorithm. In: Dawn, S., Das, K.N., Mallipeddi, R., Acharjya, D.P. (eds) Smart and Intelligent Systems. Algorithms for Intelligent Systems. Springer, Singapore. https://doi.org/10.1007/978-981-16-2109-3_44

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