nr |
titel |
auteur |
tijdschrift |
jaar |
jaarg. |
afl. |
pagina('s) |
type |
1 |
A Collaborative Learning Spatiotemporal Three-Dimensional Fuzzy Framework for Modeling Complex Distributed Parameter Systems
|
Zhou, Gang |
|
|
59 |
8 |
p. 179-184 |
artikel |
2 |
Backstepping Control for a Class of Hyperbolic-Parabolic Systems ⁎ ⁎ This work is supported by National Natural Science Foundation of China (62173084, 61773112) and the Project of Science and Technology Commission of Shanghai Municipality, China (23ZR1401800, 22JC1401403)
|
Li, Yongyu |
|
|
59 |
8 |
p. 202-207 |
artikel |
3 |
Bilateral Control for an Unstable 2-D Reaction-Diffusion Equation with Unequal Input Delays at the Boundaries ⁎ ⁎ This work is supported by National Natural Science Foundation of China (62173084, 61773112) and the Project of Science and Technology Commission of Shanghai Municipality, China (23ZR1401800, 22JC1401403), in part by the Fundamental Research Funds for the Central Universities and Graduate Student Innovation Fund of Donghua University CUSF-DH-D-2023043.
|
Guan, Dandan |
|
|
59 |
8 |
p. 255-260 |
artikel |
4 |
Boundary feedback control for mixed-autonomy traffic flow system with Markov jumping parameters ⁎ ⁎ This work was supported by the National Natural Science Foundation of China (Nos. U2233211, 62273014), Beijing Natural Science Foundation (No. L243026), R&D Program of Beijing Municipal Education Commission (Nos. KZ20231000523, KM202310005032), the Beijing Nova Program (No. 20220484133), the Beijing Municipal College Faculty Construction Plan for Outstanding Young Talents (No. BPHR202203011).
|
Lv, Xin |
|
|
59 |
8 |
p. 19-24 |
artikel |
5 |
Boundary feedback control of a 2x2 weakly hyperbolic system: Lyapunov-based approach
|
Amirat, M.O. |
|
|
59 |
8 |
p. 155-160 |
artikel |
6 |
Concurrent learning adaptive stabilization of 2 × 2 linear hyperbolic PDE systems with boundary parameter uncertainty
|
Xiao, Yu |
|
|
59 |
8 |
p. 196-201 |
artikel |
7 |
Constrained port-Hamiltonian modeling and structure-preserving discretization of the Rayleigh beam ⁎ ⁎ The authors acknowledge financial support from: Chilean ANID projects Becas/ Doctorado Nacional/ 2021-21211290, ECOS 220040, FONDECYT 1231896, BASAL AFB240002; the French ISITE-BFC project - CPHS2D - ANR-15-IDEX-0003, EIPHI Graduate School ANR-17-EURE-0002, IMPACTS Project ANR-21-CE48-0018; and the European MSCA Project MODCONFLEX 101073558.
|
Ponce, Cristobal |
|
|
59 |
8 |
p. 108-113 |
artikel |
8 |
Contents
|
|
|
|
59 |
8 |
p. i-vii |
artikel |
9 |
Control Oriented Modular Modelling of a Floating Wind Turbine: The Port-Hamiltonian Approach ⁎ ⁎ This project has received funding from the European Union’s Horizon Europe research and innovative programme under the Marie Sklodowska-Curie Actions (MSCA) grant agreement No. 101073558 (ModConFlex)
|
Diaz, Ignacio |
|
|
59 |
8 |
p. 125-130 |
artikel |
10 |
Data-driven Boundary Optimal Control for Diffusion-Reaction Processes Considering Actuator Dynamic Properties ⁎ ⁎ This work was supported in part by the National Natural Science Foundation of China under Grants 62373375 and U2341216, and the Science and Technology Innovation Program of Hunan Province under Grant 2024RC1011.
|
Sun, Jingyi |
|
|
59 |
8 |
p. 191-195 |
artikel |
11 |
Discrete-time modeling and analysis of a class of linear thermodynamic distributed parameter systems
|
Xie, Junyao |
|
|
59 |
8 |
p. 173-178 |
artikel |
12 |
Disturbance observer-based control for 2D nonlinear Kuramoto-Sivashinsky equation with average measurements ⁎ ⁎ This work is partially supported by the National Natural Science Foundation of China (No. 62273239, 12301576, 62173348) and the Shanghai Sailing Program (No. 23YF1429100).
|
Cai, Rui-Yang |
|
|
59 |
8 |
p. 49-53 |
artikel |
13 |
Dynamics and motion-planning for microfluidic flow within elastic walls
|
Ströhle, Timo |
|
|
59 |
8 |
p. 237-242 |
artikel |
14 |
Dyna-Style Learning with a Macroscopic Model for Vehicle Platooning in Mixed-Autonomy Traffic
|
Zou, Yichuan |
|
|
59 |
8 |
p. 7-12 |
artikel |
15 |
Estimator-Based H∞ Boundary Control for Semilinear Itô-Type Stochastic Parabolic Partial Differential Systems ⁎ ⁎ This work was supported in part by the Natural Science Foundation of Shandong Province under Grant ZR2024QF187, in part by the Research Start-up Funds of Hangzhou International Innovation Institute of Beihang University under Grant 2024KQ059, and in part by the Doctoral Research Start-Up Fund Project of Weifang University under Grant 2023BS33.
|
Zhang, Xiu-Mei |
|
|
59 |
8 |
p. 214-219 |
artikel |
16 |
Event-Triggered Control of Freeway Traffic Flow with Connected and Automated Vehicles
|
Wang, Xinyong |
|
|
59 |
8 |
p. 31-36 |
artikel |
17 |
Filter-based adaptive control of a wave equation through lower-order persistent excitation conditions ⁎ ⁎ This paper was financially supported in part by the National Natural Science Foundation of China under Grant 62225304, Grant 6242780169, Grant 12131008, in part by the Beijing Natural Science Foundation under Grant 25JL004 and in part by the Science, Technology & Innovation Project of Xiongan New Area under Grant 2023XAGG0062.
|
Meng, Tingting |
|
|
59 |
8 |
p. 37-42 |
artikel |
18 |
Finite-dimensional boundary control for 1-D semilinear wave equation
|
Wang, Pengfei |
|
|
59 |
8 |
p. 161-166 |
artikel |
19 |
Finite-time observer for a time-varying cascade of an ODE in a system of balance laws ⁎ ⁎ Yubo Bai would like to acknowledge the funding from the China Scholarship Council (No. 202206100101). The work of Christophe Prieur has been partially supported by MIAI@Grenoble Alpes (ANR-19-P3IA-0003). Zhiqiang Wang is partially supported by the Science & Technology Commission of Shanghai Municipality (No. 23JC1400800).
|
Bai, Yubo |
|
|
59 |
8 |
p. 137-142 |
artikel |
20 |
Fixed-Time Boundary Stabilization for Aw-Rascle-Zhang Traffic model ⁎ ⁎ This work is partially supported by the National Natural Science Foundation of China (Nos. U2233211, 62273014), Beijing Natural Science Foundation (No. L243026), R&D Program of Beijing Municipal Education Commission (Nos. KZ20231000523, M202310005032), Beijing Nova Program (No. 20220484133), and Beijing Municipal College Faculty Construction Plan for Outstanding Young Talents (No. BPHR202203011).
|
Lu, Mengyao |
|
|
59 |
8 |
p. 25-30 |
artikel |
21 |
Hybrid Schrödinger-Liouville and projective dynamics
|
Krhac, Kaja |
|
|
59 |
8 |
p. 208-213 |
artikel |
22 |
Intermittent Sampled-Data Control for Coupled PDE-ODE Systems
|
Zheng, Jin-Yang |
|
|
59 |
8 |
p. 220-225 |
artikel |
23 |
Lyapunov criterion for output-to-state stability of distributed parameter systems ⁎ ⁎ This work was partially supported by German Research Foundation (DFG), grants: MI 1886/2-2 and MI 1886/3-1.
|
Chen, Qiaoling |
|
|
59 |
8 |
p. 60-65 |
artikel |
24 |
Modeling and coordination control for master-slave flexible manipulators with bending-twisting deformation
|
Gao, Shiqi |
|
|
59 |
8 |
p. 226-231 |
artikel |
25 |
Modeling floating bodies in shallow water ⁎ ⁎ The authors acknowledge the support of the European Union (Horizon Europe MSCA project ModConFlex, grant number 101073558)
|
Kortabitarte, Maddalen Irigoien |
|
|
59 |
8 |
p. 114-118 |
artikel |
26 |
Neural Operator based Reinforcement Learning for Control of first-order PDEs with Spatially-Varying State Delay ⁎ ⁎ The paper is supported by the National Natural Science Foundation of China (62173084,62403305), the Project of Science and Technology Commission of Shanghai Municipality, China (23ZR1401800, 22JC1401403).
|
Hu, Jiaqi |
|
|
59 |
8 |
p. 167-172 |
artikel |
27 |
Neural-Operator Control for Traffic Flow Models with Stochastic Demand
|
Zhang, Yihuai |
|
|
59 |
8 |
p. 1-6 |
artikel |
28 |
Neural Operator Learning for Delay Compensation Control in Backstepping of 2 × 2 Hyperbolic PDEs ⁎ ⁎ The authors supported by the National Natural Science Foundation of China (62403305, 62173084), the Project of Science and Technology Commission of Shanghai Municipality, China (23ZR1401800, 22JC1401403).
|
Zhang, Jing |
|
|
59 |
8 |
p. 149-154 |
artikel |
29 |
Neural Operators for Adaptive Control of Traffic Flow Models ⁎ ⁎ This work was supported by the National Natural Science Foundation of China under Grants 92471108, 12131008.
|
Lyu, Kaijing |
|
|
59 |
8 |
p. 13-18 |
artikel |
30 |
Nonlinear Observer Design for an Undamped Wave Equation with Distributed Disturbance
|
Schaum, Alexander |
|
|
59 |
8 |
p. 96-101 |
artikel |
31 |
Nonlinear Predictor Feedback Design for State-Dependent Input Delay Integro-Differential Equations ⁎ ⁎ Sponsor and financial support acknowledgment goes here.
|
Li, Tong |
|
|
59 |
8 |
p. 185-190 |
artikel |
32 |
Numerically efficient motion planning for the Euler-Bernoulli beam
|
Kupke, Bastian |
|
|
59 |
8 |
p. 249-254 |
artikel |
33 |
Observer-Based Output-Feedback Stabilization of Continua of Linear Hyperbolic PDEs Using Backstepping ⁎ ⁎ Funded by the European Union (ERC, C-NORA, 101088147). Views and opinions expressed are however those of the authors only and do not necessarily reflect those of the European Union or the European Research Council Executive Agency. Neither the European Union nor the granting authority can be held responsible for them.
|
Humaloja, Jukka-Pekka |
|
|
59 |
8 |
p. 143-148 |
artikel |
34 |
Optimality of the decay rate for degenerate heat-wave coupled system ⁎ ⁎ This work was supported by the Natural Science Foundation of China grant NSFC-62473281, 62073236.
|
Han, Zhong-Jie |
|
|
59 |
8 |
p. 243-248 |
artikel |
35 |
Output Regulation of Piezoelectric Tube Actuated Flexible Optical Fiber Using the Port Hamiltonian Framework ⁎ ⁎ This project has been supported by the EIPHI Graduate School (contract “ANR-17-EURE-0002”), by the Horizon Europe research and innovative programme under the Marie Sklodowska-Curie Actions (MSCA) grant agreement No. 101073558 (ModConFlex).
|
Vargas, Mario |
|
|
59 |
8 |
p. 131-136 |
artikel |
36 |
Parameter Identification for PDEs via Qualitative Constraints ⁎ ⁎ Research reported here was supported by the National Institute of General Medical Sciences of the National Institutes of Health under award numbers R01GM152736 and P20GM104420. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.
|
Blanco-Rodriguez, Rodolfo |
|
|
59 |
8 |
p. 72-77 |
artikel |
37 |
PDE Modeling of the Cooling Fluid Temperature in Battery Pack
|
Ferreira, Patryck |
|
|
59 |
8 |
p. 84-89 |
artikel |
38 |
PINN Fine-tuning Scheme for Distributed Parameter Systems Modeling with Dynamic Loss Balance*
|
Yang, Xu |
|
|
59 |
8 |
p. 90-95 |
artikel |
39 |
Polynomial Stability of an Elastic Plate with Dynamical Boundary Control
|
Sun, Yanan |
|
|
59 |
8 |
p. 232-236 |
artikel |
40 |
RLS-MAMBA: Enhanced SOC Estimation and Parameter Identification for Lithium-Ion Batteries
|
Li, Jiahui |
|
|
59 |
8 |
p. 78-83 |
artikel |
41 |
Spatial decay of perturbations in transport equations with optimal boundary control ⁎ ⁎ B.O. extends his gratitude to the Thüringer Graduiertenförderung for funding his scholarship.
|
Oppeneiger, Benedikt |
|
|
59 |
8 |
p. 66-71 |
artikel |
42 |
Stabilization for Variable Coefficients Rayleigh Beam Systems under Nonlinear Boundary Controls
|
Xu, Ming |
|
|
59 |
8 |
p. 43-48 |
artikel |
43 |
State estimation for stochastic parabolic systems: A two-step estimation method ⁎ ⁎ This work was supported by the National Natural Science Foundation of China under Grant 62473112.
|
Gao, Yu |
|
|
59 |
8 |
p. 54-59 |
artikel |
44 |
The linear regulator problem for passive system with strong stability ⁎ ⁎ This work was supported the Israel Science Foundation-NSFC grant no. 3621/21, the State Scholarship Fund of China Scholarship Council (no.202306370286), the science and technology innovation program of Hunan province (no. 2022RC1188), and by the National Natural Science Foundation of China (no. 62173348)
|
Li, Bingsen |
|
|
59 |
8 |
p. 267-272 |
artikel |
45 |
The well-posedness of an impedance passive nonlinear system with a static monotone feedback operator ⁎ ⁎ This work was supported the Israel Science Foundation-NSFC grant no. 3621/21, and by the Agence National de la Recherche (ANR) under the ROTATION project (grant no. ANR-24-CE48-0759).
|
Marx, Swann |
|
|
59 |
8 |
p. 261-266 |
artikel |
46 |
Well-posedness of a class of infinite-dimensional port-Hamiltonian systems with boundary control and observation ⁎ ⁎ Bouchra Elghazi acknowledges funding from the European Union Horizon Europe MSCA Grant No. 101073558 (ModConFlex).
|
Elghazi, Bouchra |
|
|
59 |
8 |
p. 102-107 |
artikel |
47 |
Well-Posedness of the Hodge Wave Equation on a Compact Manifold ⁎ ⁎ Funded by the European Union (Horizon Europe MSCA project ModConFlex, grant number 101073558). Views and opinions expressed are however those of the author only and do not necessarily reflect those of the European Union or the European Research Council Executive Agency. Neither the European Union nor the granting authority can be held responsible for them.
|
Testa, Filippo |
|
|
59 |
8 |
p. 119-124 |
artikel |