Title :
Coefficient sensitivity and structure optimization of multidimensional state-space digital filters
Author :
Xiao, Chengshan ; Agathoklis, P. ; Hill, D.J.
Author_Institution :
Wireless Networks, Nortel, Nepean, Ont., Canada
fDate :
9/1/1998 12:00:00 AM
Abstract :
In this work, a new coefficient sensitivity measure for multidimensional (n-D) digital systems in state-space representation is proposed. This is motivated by the fact that coefficients equal to 0 or ±1 can be implemented exactly using finite wordlength, and thus have no contribution to coefficient quantization errors. The relationship between commonly used sensitivity measures for 2-D and n-D systems and the new one proposed here is discussed. It is shown that in evaluating the accuracy between a finite wordlength implementation of a transfer function and the ideal one, the proposed sensitivity measure is more useful than the commonly used ones. Furthermore, the proposed measure confirms that realizations with Schur and/or Hessenberg structures can be used to obtain more accurate finite wordlength implementations of transfer functions than the ones obtained using fully parametrized minimum sensitivity structures
Keywords :
filtering theory; multidimensional digital filters; optimisation; roundoff errors; sensitivity analysis; state-space methods; transfer functions; Hessenberg structures; Schur structures; coefficient sensitivity; finite wordlength implementation; multidimensional digital filters; state-space representation; structure optimization; transfer function; Convergence; Digital filters; Hypercubes; Level set; Limit-cycles; Lyapunov method; Multidimensional systems; Power system stability; Sufficient conditions; Taxonomy;
Journal_Title :
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on