A novel word length selection method for a guaranteed H-infinity interference rejection performance and overflow oscillation-free realization of 2-D digital filters

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초록

This paper examines the problem of the local overflow stability and disturbance attenuation performance analysis of two-dimensional (2-D) Roesser digital filters in the presence of external interferences. In particular, by utilizing the local properties of saturation nonlinearity and Lyapunov stability theory, a novel linear matrix inequality (LMI)-based condition is proposed that not only ensures the nonexistence of overflow oscillations, but also yields the H-infinity interference rejection performance of 2-D digital filters under the overflow constraint. It is worth mentioning here that in contrast to the traditional approaches based on modeling the saturation with a global sector-bound condition, the proposed approach provides a less conservative bound for the attenuation of disturbances and renders the idea of minimum word length for realizing the 2-D (Roesser) filter to eliminate overflow oscillations and attain the specified H-infinity interference attenuation performance index. Finally, a numerical simulation example is also provided, which demonstrates the superiority of the proposed method over the existing techniques.

키워드

Digital filter2-D filterFinite word lengthOverflow oscillation eliminationLocal stabilityExternal interferenceGLOBAL ASYMPTOTIC STABILITYROESSER MODELROBUST STABILITYDISCRETE-SYSTEMSQUANTIZATIONELIMINATIONSTABILIZATIONCOMBINATIONCRITERIONL(2)
제목
A novel word length selection method for a guaranteed H-infinity interference rejection performance and overflow oscillation-free realization of 2-D digital filters
저자
Arif, IrzaTufail, MuhammadRehan, MuhammadAhn, Choon Ki
DOI
10.1007/s11045-017-0504-x
발행일
2018-10
유형
Article
저널명
Multidimensional Systems and Signal Processing
29
4
페이지
1331 ~ 1350