DocumentCode
2931504
Title
Nonlinear equalization for frame-differential IR-UWB receivers
Author
Krall, Christoph ; Witrisal, Klaus ; Koeppl, Heinz ; Leus, Geert ; Pausini, Marco
Author_Institution
Christian Doppler Lab. for Nonlinear Signal Process., Graz, Austria
fYear
2005
fDate
5-8 Sept. 2005
Firstpage
576
Lastpage
581
Abstract
This paper shows equalization approaches for high-data-rate transmitted-reference (TR) IR-UWB systems employing an autocorrelation receiver front-end. Using a maximum likelihood sequence detector (MLSD) with decision feedback (in the back-end of the TR-receiver), a significant improvement of the receiver performance is possible. To avoid the high complexity of the MLSD detector, alternative equalizer structures are evaluated. If the parameters of the channel are not known a priori, an equalizer has to be adapted during the transmission of training data. Such an adaptive equalizer is presented as a reference. Furthermore, we study the design of minimum mean square error (MMSE) equalizers assuming knowledge of the channel. A linear MMSE equalizer is designed using the linear and nonlinear channel coefficients. Then the concept of the linear equalizer is extended to a nonlinear Volterra equalizer which further improves the performance of the IR-UWB receiver structure. All proposed methods are discussed and the effects are shown with computer simulations.
Keywords
decision feedback equalisers; least mean squares methods; maximum likelihood detection; radio receivers; ultra wideband communication; MMSE; adaptive equalizer; autocorrelation receiver front-end; decision feedback; equalizer structures; frame-differential IR-UWB receivers; maximum likelihood sequence detector; minimum mean square error equalizers; nonlinear Volterra equalizer; nonlinear equalization; Autocorrelation; Delay; Detectors; Equalizers; Feedback; Intersymbol interference; Kernel; Laboratories; Mean square error methods; Signal processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultra-Wideband, 2005. ICU 2005. 2005 IEEE International Conference on
Print_ISBN
0-7803-9397-X
Type
conf
DOI
10.1109/ICU.2005.1570052
Filename
1570052
Link To Document