Journal of the Franklin Institute, Volume 339Pergamon Press, 2002 Vols. 1-69 include more or less complete patent reports of the U. S. Patent Office for years 1825-1859. cf. Index to v. 1-120 of the Journal, p. [415] |
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Page 431
... response function Jui - Jung Liu * Department of Electrical Engineering , Lee - Ming Institute of Technology , Tai - Sain , Taipei , Taiwan Received 31 January 2000 ; received in revised form 24 April 2002 ; accepted 13 May 2002 ...
... response function Jui - Jung Liu * Department of Electrical Engineering , Lee - Ming Institute of Technology , Tai - Sain , Taipei , Taiwan Received 31 January 2000 ; received in revised form 24 April 2002 ; accepted 13 May 2002 ...
Page 432
... response functions would be to take advantage of the advances in the time domain analysis , and to concentrate on mapping the NARMAX model into the frequency domain [ 17-19 ] . Two case studies are considered in this paper to ...
... response functions would be to take advantage of the advances in the time domain analysis , and to concentrate on mapping the NARMAX model into the frequency domain [ 17-19 ] . Two case studies are considered in this paper to ...
Page 450
... response function of non - linear resonator system ( Continuous System ) . terms were excluded before estimating . The result of the estimation is y ( k ) = 9.8 × 101y ( k − 1 ) − 2.0 × 10 ̄1y ( k − 3 ) + 4.2 × 10-2u ( k − 1 ) ...
... response function of non - linear resonator system ( Continuous System ) . terms were excluded before estimating . The result of the estimation is y ( k ) = 9.8 × 101y ( k − 1 ) − 2.0 × 10 ̄1y ( k − 3 ) + 4.2 × 10-2u ( k − 1 ) ...
Contents
Contents | 1 |
Vol 339 No 2 MARCH 2002 | 129 |
PERGAMON ISSN 00160032 | 248 |
Copyright | |
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2002 The Franklin adaptive algorithm analysis angiogenesis applied approach Benjamin Franklin Medal Chebyshev Chebyshev polynomials chirp closed-loop computation consider constraints corresponding coset defined denote detection domain dynamic systems Elsevier Science Ltd encoding energy equation estimation example fault fault-tolerant feedback finite flywheel Franklin Institute Franklin Institute 339 Franklin Institute www.elsevier.com/locate/jfranklin frequency response frequency response functions gain given group machine homomorphism IEEE IEEE Trans implementation input k₁ mapping Mathematics matrix method NARMAX model noise nomograph nonlinear systems observer obtained optimal control optimal control problem output packet paleomagnetic paper parameters performance Petri net phase error PID controller polynomials proposed Published by Elsevier quadratic redundant residual ScienceDirect Section selectivity semiautomata semigroup shown in Fig signal processing simulation solution solve SPRO stability T₁ TDTL Theorem trajectories transfer function transform transitional filter University v₁ variables vector Widrow zero