| Year | Rank | Type | Title / Venue / Authors |
|---|---|---|---|
| 2025 | J | jnl |
Neurocomputing
|
| 2025 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2025 | J | jnl |
Syst. Control. Lett.
|
| 2025 | J | jnl |
IEEE Trans. Cybern.
|
| 2024 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2024 | J | jnl |
IEEE Syst. J.
|
| 2024 | J | jnl |
IEEE Trans. Aerosp. Electron. Syst.
|
| 2024 | J | jnl |
IEEE Trans. Neural Networks Learn. Syst.
|
| 2024 | J | jnl |
CoRR
|
| 2024 | J | jnl |
IEEE Trans. Emerg. Top. Comput. Intell.
|
| 2024 | J | jnl |
IEEE Trans. Control. Syst. Technol.
|
| 2024 | C | conf |
ICARCV
|
| 2024 | J | jnl |
IEEE Trans. Circuits Syst. II Express Briefs
|
| 2023 | J | jnl |
Neural Process. Lett.
|
| 2023 | C | conf |
SAFEPROCESS
|
| 2023 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2023 | J | jnl |
J. Syst. Sci. Complex.
|
| 2023 | J | jnl |
IEEE Trans. Neural Networks Learn. Syst.
|
| 2023 | J | jnl |
IEEE Trans. Veh. Technol.
|
| 2023 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2022 | J | jnl |
IEEE Trans. Autom. Control.
|
| 2022 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2022 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2022 | J | jnl |
IEEE Trans. Cybern.
|
| 2022 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2022 | J | jnl |
Appl. Math. Comput.
|
| 2022 | J | jnl |
IEEE Trans. Control. Syst. Technol.
|
| 2022 | J | jnl |
IEEE Trans. Cybern.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2021 | J | jnl |
J. Syst. Sci. Complex.
|
| 2021 | J | jnl |
IEEE Trans. Ind. Informatics
|
| 2021 | J | jnl |
IEEE Trans. Aerosp. Electron. Syst.
|
| 2021 | J | jnl |
Disturbance Observer-Based Finite-Time Control Design for a Quadrotor UAV With External Disturbance.
IEEE Trans. Aerosp. Electron. Syst.
|
| 2021 | J | jnl |
Biomed. Signal Process. Control.
|
| 2021 | J | jnl |
Int. J. Intell. Robotics Appl.
|
| 2021 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2020 | J | jnl |
Int. J. Robotics Autom.
|
| 2020 | J | jnl |
J. Frankl. Inst.
|
| 2020 | J | jnl |
J. Frankl. Inst.
|
| 2020 | J | jnl |
IEEE Trans. Ind. Informatics
|
| 2020 | J | jnl |
J. Frankl. Inst.
|
| 2020 | J | jnl |
IEEE Trans. Cybern.
|
| 2020 | J | jnl |
Wirel. Networks
|
| 2020 | — | conf |
WCSP
|
| 2019 | J | jnl |
IEEE Trans. Veh. Technol.
|
| 2019 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2019 | J | jnl |
IEEE Access
|
| 2019 | — | conf |
CAA SAFEPROCESS
|
| 2019 | J | jnl |
Int. J. Syst. Sci.
|
| 2019 | J | jnl |
IEEE Access
|
| 2019 | J | jnl |
IEEE Access
|
| 2019 | — | conf |
RCAR
|
| 2018 | J | jnl |
IEEE Access
|
| 2018 | — | conf |
ICCA
|
| 2018 | J | jnl |
Trans. Inst. Meas. Control
|
| 2018 | J | jnl |
IMA J. Math. Control. Inf.
|
| 2018 | J | jnl |
J. Frankl. Inst.
|
| 2018 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2018 | J | jnl |
J. Frankl. Inst.
|
| 2018 | C | conf |
ICCC
|
| 2018 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2017 | J | jnl |
Finite-time sliding mode attitude control for rigid spacecraft without angular velocity measurement.
J. Frankl. Inst.
|
| 2016 | J | jnl |
J. Syst. Control. Eng.
|
| 2015 | J | jnl |
J. Syst. Control. Eng.
|
| 2015 | J | jnl |
Wirel. Pers. Commun.
|
| 2015 | J | jnl |
Real-Time Trajectory and Attitude Coordination Control for Reusable Launch Vehicle in Reentry Phase.
IEEE Trans. Ind. Electron.
|
| 2015 | J | jnl |
Sci. China Inf. Sci.
|
| 2014 | J | jnl |
J. Syst. Control. Eng.
|
| 2013 | J | jnl |
J. Frankl. Inst.
|
| 2012 | J | jnl |
Circuits Syst. Signal Process.
|
| 2010 | — | conf |
CDC
|
| 2009 | — | conf |
CDC
|
| 2009 | J | jnl |
Sci. China Ser. F Inf. Sci.
|
| 2009 | J | jnl |
Eur. J. Oper. Res.
|
| 2008 | — | conf |
ICNSC
|
| 2008 | — | conf |
ICNSC
|
| 2008 | — | conf |
ICNSC
|