Title :
An adaptive maximally decimated channelized UWB receiver with cyclic prefix
Author :
Feng, Lei ; Namgoong, Won
Author_Institution :
Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
Abstract :
The frequency channelized receiver based on hybrid filter bank is a promising receiver structure for ultra-wideband (UWB) radio because of its relaxed circuit requirements and robustness to interference. The uncertainties in the analog analysis filters and the time varying nature of the propagation channels necessitate adaptive methods in practical frequency channelized receivers. Adaptive synthesis filters, however, suffer from slow convergence speed especially when maximally decimated to reduce the analog-digital converter sampling frequency. To improve the convergence speed, the cyclic prefix is applied to the transmitted data. The propagation channel and the channelizer can then be modeled as a circulant matrix and block CM, respectively. Such matrix representation enables the transmitted data to be recovered by two cascaded one-tap equalizers, one of which corresponds to the channelizer and the other to the propagation channel. The cascaded structure is attractive as it allows the estimation of the propagation channel and the channelizer, which vary at vastly different rates, to be updated separately. Adaptive algorithms for both the fractionally spaced equalizer and the symbol spaced equalizer are derived. After initial convergence during startup, the adaptive performance of the channelized receiver to different propagation channels is similar to that of an ideal full band receiver.
Keywords :
adaptive equalisers; adaptive filters; cascade networks; channel bank filters; matrix algebra; radio receivers; signal sampling; ultra wideband communication; Cyclic Prefix; UWB radio; UWB receiver; adaptive algorithms; adaptive synthesis filters; analog analysis filters; analog-digital converter; cascaded one-tap equalizers; convergence speed; fractionally spaced equalizer; frequency channelized receiver; hybrid filter bank; matrix representation; propagation channel; propagation channels; relaxed circuit requirements; sampling frequency; symbol spaced equalizer; Adaptive filters; Channel bank filters; Circuits; Convergence; Equalizers; Filter bank; Frequency; Matrix converters; Receivers; Ultra wideband technology; Adaptive; channelized receiver; cyclic prefix (CP); equalization; filter bank; ultra wideband (UWB);
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2005.852937