Optimal correlator size for the TDSC-UWB detection method

Charbel Saber, Roger Lamberti, Muriel Muller, Yang Ni, Francisco Hirata-Flores

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This paper studies different aspects of the correlation process for a new TR-UWB detection method called Time Delayed Sampling & Correlation (TDSC). The TDSC concept is based on inter-correlation between two waveforms captured by two time delayed samplers. The objective is to determine different design parameters for silicon integration. In this paper we focus on the length of the correlation window and we give the minimum size of the register file in the waveform samplers; this value insures an optimal detection performance with indoor communication channels. In this work, all the simulations and validation use the IEEE 802.15.3a channel models.

Original languageEnglish
Title of host publicationMobility Conference 2007 - The 4th Int. Conf. Mobile Technology, Applications and Systems, Mobility 2007, Incorporating the 1st Int. Symp. Computer Human Interaction in Mobile Technology, IS-CHI 2007
Pages98-103
Number of pages6
DOIs
Publication statusPublished - 1 Dec 2007
Externally publishedYes
Event4th International Conference on Mobile Technology, Applications and Systems, Mobility 2007, Incorporating the 1st International Symposium on Computer Human Interaction in Mobile Technology, IS-CHI 2007 - Singapore, Singapore
Duration: 10 Sept 200712 Sept 2007

Publication series

NameMobility Conference 2007 - The 4th Int. Conf. Mobile Technology, Applications and Systems, Mobility 2007, Incorporating the 1st Int. Symp. Computer Human Interaction in Mobile Technology, IS-CHI 2007

Conference

Conference4th International Conference on Mobile Technology, Applications and Systems, Mobility 2007, Incorporating the 1st International Symposium on Computer Human Interaction in Mobile Technology, IS-CHI 2007
Country/TerritorySingapore
CitySingapore
Period10/09/0712/09/07

Keywords

  • correlation receiver
  • impulse radio (IR)
  • transmitted reference (TR)
  • ultra-wideband (UWB)

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