DocumentCode
2901347
Title
Opimzation of Full-Time and Time Shared Noncoherent Code Tracking Loops
Author
Ward, R. ; Polydoros, A.
Author_Institution
TRW, One Space Park, Redondo Beach, Ca. 90278
Volume
1
fYear
1985
fDate
20-23 Oct. 1985
Firstpage
30
Lastpage
34
Abstract
Four noncoherent correlative code tracking loops are presented and analyzed using the Renewal Theory framework. The results include the standard noncoherent delay lock loop, the time shared version of that loop known as the tau dither loop, and modified versions of each. From the stochastic differential equation, the generalized S-curve and statistics of the equivalent noise at the input of the loop filter can be derived for each loop. Computation of the noise statistics (autocorrelation and power spectral density) allow determination of the intensity coefficients used as inputs to the renewal equations. The solutions from these steps lead to the probability density of the tracking error. Optimization of the loop structures to minimize the tracking error variance and mean time to lose lock is indicated by the simulation results.
Keywords
Code standards; Delay effects; Density measurement; Equations; Signal generators; Signal to noise ratio; Standards development; Statistics; Time measurement; Tracking loops;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 1985. MILCOM 1985. IEEE
Conference_Location
Boston, MA, USA
Type
conf
DOI
10.1109/MILCOM.1985.4794933
Filename
4794933
Link To Document