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Zhen-Zhong Qi
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2020 – today
- 2024
- [j11]Zhen-Zhong Qi, Zhi-Hua Xiao, Jia-Wei Yuan:
Dimension reduction based on approximate gramians via Laguerre polynomials for coupled systems. IMA J. Math. Control. Inf. 41(1): 30-56 (2024) - [j10]Ya-Xin Fang, Zhi-Hua Xiao, Zhen-Zhong Qi:
Low-rank balanced truncation of discrete time-delay systems based on Laguerre expansions. J. Frankl. Inst. 361(6): 106752 (2024) - 2023
- [j9]Hui Jin, Zhi-Hua Xiao, Qiu-Yan Song, Zhen-Zhong Qi:
Structure-preserving model order reduction for K-power bilinear systems via Laguerre functions. Int. J. Syst. Sci. 54(8): 1648-1660 (2023) - 2021
- [j8]Zhen-Zhong Qi, Yao-Lin Jiang, Zhi-Hua Xiao:
Model Order Reduction Based on Approximate Cross Gramian and Laguerre Series for Linear Input-Output Systems. IEEE Access 9: 22328-22338 (2021) - [j7]Zhen-Zhong Qi, Yao-Lin Jiang, Zhi-Hua Xiao:
Dimension reduction for k-power bilinear systems using orthogonal polynomials and Arnoldi algorithm. Int. J. Syst. Sci. 52(10): 2048-2063 (2021)
2010 – 2019
- 2019
- [j6]Zhen-Zhong Qi, Yao-Lin Jiang, Zhi-Hua Xiao:
Structure-preserved MOR method for coupled systems via orthogonal polynomials and Arnoldi algorithm. IET Circuits Devices Syst. 13(6): 879-887 (2019) - [j5]Zhi-Hua Xiao, Yao-Lin Jiang, Zhen-Zhong Qi:
Finite-time balanced truncation for linear systems via shifted Legendre polynomials. Syst. Control. Lett. 126: 48-57 (2019) - [j4]Yao-Lin Jiang, Zhen-Zhong Qi, Ping Yang:
Model Order Reduction of Linear Systems via the Cross Gramian and SVD. IEEE Trans. Circuits Syst. II Express Briefs 66-II(2): 422-426 (2019) - 2016
- [j3]Zhen-Zhong Qi, Yao-Lin Jiang, Zhi-Hua Xiao:
Time domain model order reduction using general orthogonal polynomials for K-power bilinear systems. Int. J. Control 89(5): 1065-1078 (2016) - [j2]Yao-Lin Jiang, Hai-Bao Chen, Zhen-Zhong Qi:
Nonlinear model order reduction based on tensor Kronecker product expansion with Arnoldi process. J. Frankl. Inst. 353(14): 3641-3655 (2016) - 2014
- [j1]Zhen-Zhong Qi, Yao-Lin Jiang, Zhi-Hua Xiao:
Model order reduction based on general orthogonal polynomials in the time domain for coupled systems. J. Frankl. Inst. 351(6): 3200-3214 (2014)
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last updated on 2024-06-03 01:01 CEST by the dblp team
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