Journal of System Simulation ›› 2022, Vol. 34 ›› Issue (11): 2377-2385.doi: 10.16182/j.issn1004731x.joss.21-0589
• Modeling Theory and Methodology • Previous Articles Next Articles
Tian Zheng1(), Feng Li1(
), Naibao He1, Ya Gu2
Received:
2021-06-25
Revised:
2021-08-20
Online:
2022-11-18
Published:
2022-11-25
Contact:
Feng Li
E-mail:769447368@qq.com;lifeng@jsut.edu.cn
CLC Number:
Tian Zheng, Feng Li, Naibao He, Ya Gu. Nonlinear System Identification Based on Combined Signal Sources[J]. Journal of System Simulation, 2022, 34(11): 2377-2385.
[1] | Li Feng, Jia Li, Peng Daogang, et al. Neuro-fuzzy Based Identification Method for Hammerstein Output Error Model with Colored Noise[J]. Neurocomputing (S0925-2312), 2017, 244: 90-101. |
[2] | Lakhdar A, Yahya C. Modeling of a Distillation Column Based on NARMAX and Hammerstein Models[J]. International Journal of Modeling, Simulation and Scientific Computing (S1793-9623), 2017, 8(3): 227-240. |
[3] | Fouad Giri, Er-Wei Bai. Block-Oriented Nonlinear System Identification[M]. Berlin Heidelberg: Springer-Verlag, 2010. |
[4] | 桂卫华, 宋海鹰, 阳春华. Hammerstein-Wiener模型最小二乘向量机辨识及其应用[J]. 控制理论与应用, 2008, 25(3): 393-397. |
Gui Weihua, Song Haiying, Yang Chunhua. Hammerstein-Wiener Model Identified by Least-Squares-Support-Vector Machine and Its Application[J]. Control Theory and Applications, 2008, 25(3): 393-397. | |
[5] | Raphael Q, Claudio G. MPC Relevant Identification Method for Hammerstein and Wiener models[J]. Journal of Process Control (S0959-1524), 2019, 80: 78-88. |
[6] | Vojislav F. Recursive Identification of Block-Oriented Nonlinear Systems in the Presence of Outliers[J]. Journal of Process Control (S0959-1524), 2019, 78: 1-12. |
[7] | Li Junhong, Zheng Weixing, Gu Juping, et al. A Recursive Identification Algorithm for Wiener Nonlinear Systems with Linear State-Space Subsystem[J]. Circuits Systems and Signal Processing (S0278-081X), 2018, 37(6): 2347-2393. |
[8] | Qi Zhidong, Sun Qi, Ge Weiping, et al. Nonlinear Modeling of PEMFC Based on Fractional Order Subspace Identification[J]. Asian Journal of Control (S1561-8625), 2020, 22(5): 1892-1900. |
[9] | Cheng C M, Dong X J, Peng Z K, et al. Kautz Basis Expansion-based Hammerstein System Identification through Separable Least Squares Method[J]. Mechanical Systems and Signal Processing (S0888-3270), 2019, 121: 929-941. |
[10] | Jeremy G, James W. Frequency Domain Estimation of Parallel Hammerstein Systems Using Gaussian Process Regression[J]. IFAC PapersOnLine (S2405-8963), 2018, 51(15): 1014-1019. |
[11] | Lang Lijun, Chen Junru, Gao Jun, et al. Accelerating Frequency Domain Dielectric Spectroscopy Measurements on Insulation of Transformers Through System Identification[J]. IET Science, Measurement & Technology (S1751-8822), 2018, 12(2): 247-254. |
[12] | Li Shurong, Ge Yulei, Shi Yuhuan. An Iterative Dynamic Programming Optimization Based on Biorthogonal Spatial-Temporal Hammerstein Modeling for the Enhanced Oil Recovery of ASP Flooding[J]. Journal of Process Control (S0959-1524), 2019, 73: 75-88. |
[13] | Chidume C, Adamu A, Okereke L. Iterative Algorithms for Solutions of Hammerstein Equations in Real Banach Spaces[J]. Fixed Point Theory and Applications (S1687-1820), 2020, 3: 567-572. |
[14] | Chen Xinming, Chen Hanfu. Recursive Identification for MIMO Hammerstein Systems[J]. IEEE Transactions on Automatic Control (S0018-9286), 2011, 56(4): 895-902. |
[15] | 李峰, 谢良旭, 李博, 等. 基于组合式信号的Hammerstein OE模型辨识[J]. 江苏理工学院学报, 2019, 25(6): 66-72. |
Li Feng, Xie Liangxu, Li Bo, et al. Combined Signals Based on Identification Method of the Hammerstein OE Model[J]. Journal of Jiangsu Institute of Technology, 2019, 25(6): 66-72. | |
[16] | Kajal K, Utkal M, Vineet P, et al. Identification Scheme for Fractional Hammerstein Models with the Delayed Haar Wavelet[J]. IEEE-CAA Journal of Automatica Sinica (S2329-9266), 2020, 7(3): 822-892. |
[17] | Ding Feng, Wang Xuehai, Chen Qijia, et al. Recursive Least Squares Parameter Estimation for a Class of Output Nonlinear Systems Based on the Model Decomposition[J]. Circuits Systems and Signal Processing (S0278-081X), 2016, 35(9): 3323-3338. |
[18] | Ding Jie, Chen Jiazhong, Lin Jinxing, et al. Particle Filtering Based Parameter Estimation for Systems with Output-error Type Model Structures[J]. Journal of the Franklin Institute (S0016-0032), 2019, 36(10): 5521-5540. |
[19] | Ding Feng. Hierarchical Multi-innovation Stochastic Gradient Algorithm for Hammerstein Nonlinear System Modeling[J]. Applied Mathematical Modelling (S0307-904X), 2013, 37(4): 1694-1704. |
[20] | Jia Li, Li Xunlong, Chui Minsen. The Identification of Neuro-fuzzy Based MIMO Hammerstein Model with Separable Input Signals[J]. Neurocomputing (S0925-2312), 2016, 174: 530-541. |
[21] | Ding Feng, Shi Yang, Chen Tongwen. Auxiliary Model-Based Least-Squares Identification Methods for Hammerstein Output-Error System[J]. Systems and Control Letters (S0167-6911), 2007, 56(5): 373-380. |
[22] | Wang Dongqing, Ding Feng. Parameter Estimation Algorithms for Multivariable Hammerstein CARMA Systems[J]. Information Sciences (S0020-0255), 2016, 355/356: 237-248. |
[23] | Lang Ziqiang. On Identification of the Controlled Plants Described by the Hammerstein Systems[J]. IEEE Transactions on Automatic Control (S0018-9286), 2002, 39(3): 569-573. |
[24] | Martin E, Lennart L. Linear Approximations of Nonlinear FIR Systems for Separable Input Processes[J]. Automatica (S0005-1098), 2005, 41(3): 459-473. |
[25] | Li Feng, Jia Li, Peng Daogang. Identification method of neuro-fuzzy-based Hammerstein model with colored noise[J]. IET Control Theory and Applications (S1751-8644), 2017, 11(17): 3026-3037. |
[26] | Wang Jeenshing, Chen Yenping. A Hammerstein Recurrent Neurofuzzy Network with an Online Minimal Realization Learning Algorithm[J]. IEEE Transactions on Fuzzy Systems (S1063-6706), 2008, 16(6): 1597-1612. |
[27] | Tang Yinggan, Li Zhonghui, Guan Xinping. Identification of Nonlinear System Using Extreme Learning Machine Based Hammerstein Model[J]. Communication in Nonlinear Science and Numerical Simulation (S1007-5704), 2014, 19(9): 3171-3183. |
[28] | Bai Erwei, Li Kang. Convergence of the Iterative Algorithm for a General Hammerstein System Identification[J]. Automatica (S0005-1098), 2010, 46: 1891-1896. |
[29] | Chen Jing, Wang Xiuping. Identification of Hammerstein Systems with Continuous Nonlinearity[J]. Information Processing Letters (S0020-0190), 2015, 115: 822-827. |
[30] | Shen Qianyan, Ding Feng. Multi-innovation Parameter Estimation for Hammerstein MIMO Output-error Systems Based on the Key-term Separation[J]. IFAC-PapersOnLine (S2405-8963), 2015, 48(8): 457-462. |
[31] | Ding Feng, Wang Yanjiao, Dai Jiyang, et al. A Recursive Least Squares Parameter Estimation Algorithm for Output Nonlinear Autoregressive Systems Using the Input-output Data Filtering[J]. Journal of the Franklin Institute (S0016-0032), 2017, 354(15): 6938-6955. |
[1] | Da Jiang, Zhiqin Cai, Zhongzhen Liu, Haijun Peng, Zhigang Wu. Reinforcement-learning-based Adaptive Tracking Control for a Space Continuum Robot Based on Reinforcement Learning [J]. Journal of System Simulation, 2022, 34(10): 2264-2271. |
[2] | Yue Xu, Li Jia, Xuanyi Fu. Variable Pitch Control of Wind Power Generation System Based on Wiener Model [J]. Journal of System Simulation, 2022, 34(8): 1741-1749. |
[3] | Baolin Du, Dachang Zhu, Yihua Pan. Fuzzy Super-twisting Second Order Sliding Mode Trajectory Tracking Control for Robotic Manipulator [J]. Journal of System Simulation, 2022, 34(6): 1343-1352. |
[4] | Qi Xiaolong, Yang Xuguang. Time-varying Output Formation Tracking Control of Discrete-time Heterogeneous Multi-agent Systems [J]. Journal of System Simulation, 2022, 34(1): 36-44. |
[5] | Li Fei, Su Zhong. Intelligent Control of Wastewater Treatment Processes Based on Adaptive Immune Optimization [J]. Journal of System Simulation, 2021, 33(12): 3012-3020. |
[6] | Fan Cunli, Dai Juan, Liu Haitao, Su Zhong, Zhu Cui, Xu Wenting. Trajectory Tracking Control of Planetary Entry Phase Based on Neural Network and Fractional Sliding Mode [J]. Journal of System Simulation, 2021, 33(11): 2697-2703. |
[7] | Xu Shanling, Li Junhong, Liu Mengru, Hua Liang. Chaotic Gravitational Search Iterative Identification for Wiener Systems [J]. Journal of System Simulation, 2021, 33(9): 2138-2146. |
[8] | Meng Jianjun, Wang Zhongjun, Xu Ruxun, Li Decang. Research on Active Suspension Control of High-speed Train Based on Fuzzy Compound Strategy [J]. Journal of System Simulation, 2021, 33(7): 1554-1564. |
[9] | Zhang Ruimin, Chen Qiaoyu. Trajectory Tracking Control of Robotic Manipulators Based on Smooth Second-order Sliding Mode [J]. Journal of System Simulation, 2021, 33(6): 1315-1322. |
[10] | Wang Wei, Chen Zhimei, Wang Zhenyan. Compensation Sliding Cross Coupling Control Research of Cartesian Coordinate Robot [J]. Journal of System Simulation, 2021, 33(4): 867-874. |
[11] | Sun Yuzhen, Tang Yiwei, Li Shuai. Load System Modeling of Ultra-Supercritical Coal-Fired Power Unit Based on Improved Particle Swarm Optimization [J]. Journal of System Simulation, 2021, 33(4): 875-882. |
[12] | Lan Yonghong, He Jinlin. Guaranteed Cost Preview and Repetitive Control for Uncertain Linear Discrete Time-Delay Systems [J]. Journal of System Simulation, 2021, 33(3): 529-538. |
[13] | Wang Ziyun, Wang Peiyu, Zhan Yacong. Time-varying parameter system modeling method based on zonotope-ellipsoid double filtering [J]. Journal of System Simulation, 2020, 32(11): 2084-2092. |
[14] | Zhu Hongkun, Yin Jiawei, Feng Wenyu, Hua Liang, Fei Minrui, Zhang Kun. Research and Application of a Lightweight Real-time Human Posture Detection Model [J]. Journal of System Simulation, 2020, 32(11): 2155-2165. |
[15] | Zhang Yun, Wang Cong, Zhang Hongli, Ma Ping. Chaos Control of Permanent Magnet Synchronous Motor Based on Finite Time LaSalle Invariant Set [J]. Journal of System Simulation, 2020, 32(10): 1956-1963. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||