Two Dimensional Signal Spreading in UMTS LTE: Exploiting Time-Frequency Diversity to Increase Throughput

  • Authors:
  • J. Blumenstein;M. Šimko;R. Marsalek;Z. Fedra;J. Prokopec;M. Rupp

  • Affiliations:
  • Department of Radio Electronics, Brno University of Technology, Brno, Czech Republic 612 00;Institute of Telecommunications, Vienna University of Technology, Vienna, Austria A-1040;Department of Radio Electronics, Brno University of Technology, Brno, Czech Republic 612 00;Department of Radio Electronics, Brno University of Technology, Brno, Czech Republic 612 00;Department of Radio Electronics, Brno University of Technology, Brno, Czech Republic 612 00;Institute of Telecommunications, Vienna University of Technology, Vienna, Austria A-1040

  • Venue:
  • Wireless Personal Communications: An International Journal
  • Year:
  • 2013

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Abstract

This paper proposes a two-dimensional spreading method in UMTS Long Term Evolution (LTE). Such a method brings additional time-frequency diversity which is beneficial in terms of the ability to decode transmitted data at the receiver site under multipath fading. Additional diversity is provided due to the fact that chips of transmitted signals are spread using a Walsh-Hadamard spreading sequence over several subcarriers as well as over several time-slots simultaneously. A comparison with state-of-the-art LTE downlink transmission is provided. To enable reproducibility and to increase credibility of our results, an open source Vienna LTE simulator is utilized. LTE transmissions with the proposed 2D spreading are tested on several channel models. Simulations show that apart from an Additive White Gaussian Noise channel model, this 2D spreading based method outperforms the throughput performance of standard LTE. At high Signal to Noise Ratio (SNR), the throughput increase in most channel models is higher than 10 %.