| Year | Rank | Type | Title / Venue / Authors |
|---|---|---|---|
| 2026 | J | jnl |
Robotics Comput. Integr. Manuf.
|
| 2026 | J | jnl |
Robotics Comput. Integr. Manuf.
|
| 2025 | J | jnl |
J. Intell. Manuf.
|
| 2025 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2025 | J | jnl |
Adv. Eng. Informatics
|
| 2025 | J | jnl |
Adv. Eng. Informatics
|
| 2025 | J | jnl |
Appl. Soft Comput.
|
| 2025 | J | jnl |
CoRR
|
| 2024 | J | jnl |
Robotics Comput. Integr. Manuf.
|
| 2024 | J | jnl |
J. Intell. Manuf.
|
| 2023 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2023 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2023 | J | jnl |
Int. J. Prod. Res.
|
| 2023 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2022 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2021 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2021 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2021 | J | jnl |
IEEE Trans. Robotics
|
| 2021 | J | jnl |
Int. J. Comput. Integr. Manuf.
|
| 2021 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2021 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2021 | J | jnl |
IEEE Trans. Robotics
|
| 2021 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
IEEE Trans. Ind. Informatics
|
| 2020 | J | jnl |
Multim. Tools Appl.
|
| 2020 | J | jnl |
Robotics Comput. Integr. Manuf.
|
| 2020 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2020 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2020 | J | jnl |
IEEE Access
|
| 2019 | J | jnl |
IEEE Trans. Ind. Informatics
|
| 2019 | J | jnl |
IEEE Trans Autom. Sci. Eng.
|
| 2019 | J | jnl |
IEEE Access
|
| 2019 | J | jnl |
J. Ambient Intell. Humaniz. Comput.
|
| 2019 | J | jnl |
Int. J. Prod. Res.
|
| 2019 | J | jnl |
Comput. Math. Methods Medicine
|
| 2019 | J | jnl |
IEEE Access
|
| 2018 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2018 | J | jnl |
IEEE Trans. Fuzzy Syst.
|
| 2018 | J | jnl |
IEEE CAA J. Autom. Sinica
|
| 2018 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2018 | — | conf |
High Dynamic Control of a Flexure Fast Tool Servo Using On-line Sequential Extreme Learning Machine.
AIM
|
| 2017 | J | jnl |
IEEE Access
|
| 2017 | J | jnl |
Mob. Networks Appl.
|
| 2017 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2017 | — | conf |
CIS/RAM
|
| 2017 | — | conf |
AIM
|
| 2017 | A | conf |
IROS
|
| 2017 | J | jnl |
IEEE Access
|
| 2017 | J | jnl |
Comput. Aided Des.
|
| 2017 | J | jnl |
Int. J. Comput. Integr. Manuf.
|
| 2017 | J | jnl |
J. Sensors
|
| 2016 | J | jnl |
Comput. Oper. Res.
|
| 2016 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2016 | J | jnl |
J. Intell. Manuf.
|
| 2016 | J | jnl |
Ind. Manag. Data Syst.
|
| 2016 | — | conf |
ICIA
|
| 2015 | J | jnl |
Int. J. Syst. Sci.
|
| 2015 | J | jnl |
IEEE Trans. Fuzzy Syst.
|
| 2015 | — | conf |
APMS (2)
|
| 2015 | J | jnl |
Comput. Ind. Eng.
|
| 2014 | J | jnl |
IEEE Trans. Cybern.
|
| 2014 | J | jnl |
Adv. Robotics
|
| 2014 | J | jnl |
Int. J. Comput. Integr. Manuf.
|
| 2014 | J | jnl |
IEEE Trans. Cybern.
|
| 2014 | J | jnl |
Adaptive Neural Control for a Class of Nonlinear Time-Varying Delay Systems With Unknown Hysteresis.
IEEE Trans. Neural Networks Learn. Syst.
|
| 2014 | J | jnl |
Int. J. Humanoid Robotics
|
| 2014 | J | jnl |
Soft Comput.
|
| 2014 | J | jnl |
IEEE Trans Autom. Sci. Eng.
|
| 2014 | J | jnl |
IEEE Trans. Ind. Electron.
|
| 2013 | J | jnl |
IEEE Trans. Syst. Man Cybern. Syst.
|
| 2013 | — | conf |
ROBIO
|
| 2013 | — | conf |
ROBIO
|
| 2013 | J | jnl |
IEEE Trans. Neural Networks Learn. Syst.
|
| 2013 | J | jnl |
Eng. Appl. Artif. Intell.
|
| 2012 | — | conf |
ICIRA (2)
|
| 2011 | C | conf |
CSCWD
|
| 2010 | J | jnl |
J. Intell. Manuf.
|
| 2009 | — | conf |
CSO (2)
|
| 2008 | J | jnl |
J. Intell. Manuf.
|
| 2008 | J | jnl |
Comput. Ind.
|
| 2007 | J | jnl |
J. Comput. Inf. Sci. Eng.
|
| 2007 | J | jnl |
Int. J. Comput. Integr. Manuf.
|
| 2006 | J | jnl |
Adv. Eng. Softw.
|