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A Power-Efficient GFDM System

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Advances in Electrical and Computer Technologies

Part of the book series: Lecture Notes in Electrical Engineering ((LNEE,volume 672))

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Abstract

To meet the requirements of future wireless communication systems, many advanced multicarrier modulation waveforms are coming into picture. Generalized frequency division multiplexing (GFDM) is one of the most suitable candidates for fifth-generation wireless systems. The objective of the work is to propose a less complex and power-efficient generalized frequency division multiplexing (GFDM) system. To achieve the good power efficiency of the system, it is important to reduce the peak-to -average power ratio (PAPR) of the GFDM signal. The work presented here suggests GFDM transmitter in combination with constant amplitude zero autocorrelation precoding technique for power efficiency improvement.

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References

  1. Marsch P, Raaf B, Szufarska A, Mogensen P, Guan H, Farber M, Redana S, Pedersen K, Kolding T (2012) Future mobile communication networks: challenges in the design and operation. IEEE, Vehicular Technol Magazine, pp 16–23

    Google Scholar 

  2. Mirahmadi M, Al-Dweik A, Shami A (2013) BER reduction of OFDM based broadband communication systems over multipath channels with impulsive noise. IEEE Trans Commun 4602–4615

    Google Scholar 

  3. Van De Beek J, Berggren F (2008) Out-of-band power suppression in OFDM. IEEE Commun Lett 609–611

    Google Scholar 

  4. Fettweis G, Krondorf M, Bittner S (2009) GFDM-generalized frequency division multiplexing. Proceedings 69th IEEE VTC. Spring, Barcelona, Spain, pp. 1–4

    Google Scholar 

  5. Michailow N, Datta R, Krone S, Lentmaier M, Fettweis G (2012) Generalized frequency division multiplexing: a flexible multicarrier modulation scheme for 5th generation cellular networks. Proc Ger Microw Conf 1–4

    Google Scholar 

  6. Han SH, Lee JH (2005) An overview of peak-to-average power ratio reduction techniques for multicarrier transmission. IEEE Wirel Commun Mag 56–65

    Google Scholar 

  7. Sendrei L, Marchevský, S (2015) On the performance of GFDM systems undergoing nonlinear amplification. Acta electrotechnica et informatica. pp. 9–14

    Google Scholar 

  8. Jayati E, Suryani W (2017) Analysis of nonlinear distortion effect based on saleh model in GFDM system. IEEE International conference on communication. Network and satellite (Comnesat)

    Google Scholar 

  9. Zahra S, Omidi MJ, Arman F, Hamid S (2015) Polynomial-based compressing and iterative expanding for PAPR reduction in GFDM. 23rd Iranian conference on electrical engineering (ICEE)

    Google Scholar 

  10. Yang W, Wei H, Zhongpei Z (2006) CAZAC sequence and its application in LTE random access. Proceedings of 2006 IEEE information theory workshop (ITW’06)

    Google Scholar 

  11. Michailow N, Matthe M, Gaspar I, Caldevilla A, Mendes L, Festag A, Fettweis G (2014) Generalized frequency division multiplexing for 5th generation cellular networks (Invited paper) communications. IEEE Trans 1–1

    Google Scholar 

  12. Maximilian M, Luciano M, Ivan G, Nicola M, Dan Z, Fettweis G (2016) Precoded GFDM transceiver with low complexity time domain processing. EURASIP J Wirel Commun Networking 1–9

    Google Scholar 

  13. Michailow N, Krone S, Lentmaier M, Fettweis G (2012) Bit error rate performance of generalized frequency division multiplexing. 76th IEEE VTC fall, Quebec City, QC, Canada, 1–5

    Google Scholar 

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Correspondence to Chhavi Sharma .

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Sharma, C., Kumar, A., Tomar, S.K. (2020). A Power-Efficient GFDM System. In: Sengodan, T., Murugappan, M., Misra, S. (eds) Advances in Electrical and Computer Technologies. Lecture Notes in Electrical Engineering, vol 672. Springer, Singapore. https://doi.org/10.1007/978-981-15-5558-9_72

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  • DOI: https://doi.org/10.1007/978-981-15-5558-9_72

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  • Publisher Name: Springer, Singapore

  • Print ISBN: 978-981-15-5557-2

  • Online ISBN: 978-981-15-5558-9

  • eBook Packages: Computer ScienceComputer Science (R0)

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