DocumentCode
2760142
Title
A robust phase detection structure for M-PSK: theoretical derivations, simulation results, and system identification analysis
Author
Linn, Yair
Author_Institution
British Columbia Univ., Vancouver, BC
fYear
2005
fDate
1-4 May 2005
Firstpage
869
Lastpage
883
Abstract
In this paper we shall present a new non data aided (NDA) adaptive phase detection structure for carrier synchronization phase locked loops (PLLs) in M-ary phase shift keying (M-PSK) receivers. The structure´s principal novelty is in the fact that it dynamically adapts the phase detector´s S-curve to allow the PLL to perform optimally at virtually any input signal-to-noise ratio (SNR) at which it can sustain lock. Investigation of the detector will commence with theoretical derivations of its S-curve, self-noise, and phase-error variance performance. These theoretical predictions will then be verified by computer simulations. As a third method of analysis, simulated PLLs employing the new detector will be investigated using the Steiglitz-McBride system identification algorithm, which will prove that those PLLs indeed perform optimally at every SNR. The theoretical, simulation, and system identification investigations of the proposed structure will be contrasted with results obtained using other NDA and decision directed (DD) phase detectors. As those comparisons will show, the proposed detection scheme offers greatly improved phase-error variance performance as well as superior resistance to fading and to automatic gain control (AGC) imperfections. Moreover, the new detector has a very compact hardware implementation
Keywords
phase detectors; phase locked loops; phase shift keying; M-PSK; M-ary phase shift keying; S-curve; SNR; Steiglitz-McBride system identification algorithm; automatic gain control; carrier synchronization phase locked loops; decision directed phase detectors; non data aided adaptive phase detection structure; phase-error variance performance; robust phase detection structure; self-noise; signal-to-noise ratio; Adaptive signal detection; Analytical models; Computational modeling; Detectors; Phase detection; Phase locked loops; Phase shift keying; Robustness; Signal to noise ratio; System identification;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical and Computer Engineering, 2005. Canadian Conference on
Conference_Location
Saskatoon, Sask.
ISSN
0840-7789
Print_ISBN
0-7803-8885-2
Type
conf
DOI
10.1109/CCECE.2005.1557117
Filename
1557117
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