Title :
A blind approach to identification of Hammerstein-Wiener systems corrupted by nonlinear-process noise
Author :
Wang, Jiandong ; Chen, Tongwen ; Wang, Long
Author_Institution :
Dept. of Ind. Eng. & Manage., Peking Univ., Beijing, China
Abstract :
This paper proposes a new blind approach to identification of Hammerstein-Wiener models, where a linear dynamics is embedded between two static nonlinearities. The blind approach directly aims at estimating immeasurable inner input and output, with noise effects in consideration. By exploiting input´s piece-wise constant property, the parameters of the inverse output nonlinearity and the denominator of the linear dynamics are consistently identified via an iterative instrumental-variable based method from the output measurements only; next, a subspace direct equalization method estimates the immeasurable inner input. The blind approach does not require an explicit parametrization of the input nonlinearity; moreover, the input nonlinearities are more general than static nonlinearities and may include finite-memory nonlinearities such as hysteresisrelay and hysteresis backlash. The proposed blind approach is validated and compared with the blind approach proposed by Bai in 2002 through numerical simulations.
Keywords :
control nonlinearities; iterative methods; linear systems; nonlinear control systems; parameter estimation; stochastic processes; Hammerstein-Wiener system; blind approach; explicit parametrization; finite-memory nonlinearity; hysteresis backlash; hysteresisrelay; identification; immeasurable inner input estimation; immeasurable inner output estimation; input piece-wise constant property; inverse output nonlinearity; iterative instrumental-variable based method; linear dynamics; numerical simulation; parameter estimation; static nonlinearity; subspace direct equalization method; Control nonlinearities; Educational institutions; Engineering management; Hysteresis; Industrial engineering; Instruments; Iterative methods; Nonlinear control systems; Parameter estimation; Relays;
Conference_Titel :
Asian Control Conference, 2009. ASCC 2009. 7th
Conference_Location :
Hong Kong
Print_ISBN :
978-89-956056-2-2
Electronic_ISBN :
978-89-956056-9-1