• DocumentCode
    1653612
  • Title

    High performance ultra-wide bandwidth systems via novel pulse shaping and frequency domain processing

  • Author

    Zhiqiang Wu ; Fang Zhu ; Nassar, C.R.

  • Author_Institution
    Dept. of ECE, Colorado State Univ., Fort Collins, CO, USA
  • fYear
    2002
  • Firstpage
    53
  • Lastpage
    58
  • Abstract
    Ultra-wide bandwidth (UWB) systems have emerged as a strong candidate for high-throughput short range wireless communications. Because of the UWB systems´ fine time resolution properties, a large path diversity gain can be exploited. However, to exploit this path diversity gain while avoiding inter symbol interference between data bits, the repetition period of data-modulated pulses must be larger than the time delay spread of multipath fading channels. This significantly reduces the throughput of UWB systems (making it spectrally inefficient, e.g., 0.05 b/s/Hz). If a larger throughput is desired (e.g.. a throughput requiring information-bearing pulses separated by less than the time delay spread), the BER performance degrades rapidly. In this work, we propose a novel pulse waveform referred to as the carrier interferometry (CI) pulse waveform for use in UWB systems: CI supports significant increases fit throughput with negligible performance loss. Specifically, the CI pulse waveform corresponds to the superpositioning of N orthogonal subcarriers. At the receiver side, the received pulse is decomposed into its subcarriers and recombined to exploit diversity in the frequency domain. This frequency domain processing provides resistance to inter symbol interference (from data-modulated pulses positioned within the delay spread of the channel). As a direct result, much higher throughput is supported with small performance loss when CI pulse waveforms are employed. Simulation results over indoor channels confirm that the novel CI-UWB system is capable of significantly outperforming current UWB systems: at a fixed BER performance level of 10/sup -3/, the proposed system can provide up to 64 times the data rate of current time domain UWB systems.
  • Keywords
    broadband networks; diversity reception; fading channels; frequency-domain analysis; indoor radio; multipath channels; BER performance; UWB systems; carrier interferometry; data-modulated pulses; frequency domain; high-throughput short range wireless communications; indoor channels; inter symbol interference; multipath fading channels; path diversity gain; pulse waveform; received pulse; receiver; repetition period; subcarriers; throughput; ultra-wideband systems; Bandwidth; Bit error rate; Delay effects; Diversity methods; Frequency domain analysis; Interference; Performance loss; Pulse shaping methods; Throughput; Wireless communication;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Ultra Wideband Systems and Technologies, 2002. Digest of Papers. 2002 IEEE Conference on
  • Conference_Location
    Baltimore, MD, USA
  • Print_ISBN
    0-7803-7496-7
  • Type

    conf

  • DOI
    10.1109/UWBST.2002.1006318
  • Filename
    1006318