Title :
Studies of optimal FIR estimator of clock state employing measurement of time errors
Author :
Shmaliy, Yuriy S. ; Ibarra-Manzano, Oscar
Author_Institution :
FIMEE, Guanajuato Univ., Salamanca, Mexico
Abstract :
In this paper we investigate a p-shift full horizon optimal finite impulse response (FIR) estimator of clock state employing all the measurement data available of the time interval error (TIE). A solution proposed is general for filtering (p = 0), prediction (p > 0), and smoothing (p <; 0) of discrete time clock models in state space. The optimal estimator self-determines the clock initial mean square state by solving the discrete algebraic Riccati equation on a measurement interval of N points. Noise is allowed to be zero-mean with arbitrary distribution and covariance functions. The unbiased FIR estimator is proposed in the batch form producing near optimal estimates when N ≫ 1 or the clock initial mean square state dominates noise in the order of magnitudes. An application is given to a master clock.
Keywords :
FIR filters; Riccati equations; clocks; mean square error methods; smoothing methods; TIE; arbitrary distribution; clock initial mean square state; covariance functions; discrete algebraic Riccati equation; finite impulse response; optimal FIR estimator; time interval error; Clocks; Covariance matrix; Finite impulse response filter; Noise; Noise measurement; Smoothing methods;
Conference_Titel :
Frequency Control Symposium (FCS), 2010 IEEE International
Conference_Location :
Newport Beach, CA
Print_ISBN :
978-1-4244-6399-2
DOI :
10.1109/FREQ.2010.5556349