| Year | Rank | Type | Title / Venue / Authors |
|---|---|---|---|
| 2026 | J | jnl |
Appl. Intell.
|
| 2025 | J | jnl |
IEEE Access
|
| 2025 | J | jnl |
IEEE Trans. Instrum. Meas.
|
| 2025 | J | jnl |
Neurocomputing
|
| 2025 | J | jnl |
IEEE Trans. Instrum. Meas.
|
| 2025 | J | jnl |
Expert Syst. Appl.
|
| 2025 | J | jnl |
Comput. Electron. Agric.
|
| 2024 | J | jnl |
IEEE Access
|
| 2024 | J | jnl |
IEEE Access
|
| 2024 | J | jnl |
IEEE Access
|
| 2024 | J | jnl |
IEEE Access
|
| 2024 | J | jnl |
Comput. Biol. Medicine
|
| 2023 | J | jnl |
IEEE Access
|
| 2023 | J | jnl |
Algorithms
|
| 2023 | J | jnl |
Optical Fiber Fabry-Pérot Microfluidic Sensor Based on Capillary Fiber and Side Illumination Method.
Sensors
|
| 2022 | J | jnl |
IEEE Access
|
| 2022 | J | jnl |
IEEE Access
|
| 2022 | J | jnl |
Short-Term HRV Detection and Human Fatigue State Analysis Based on Optical Fiber Sensing Technology.
Sensors
|
| 2021 | J | jnl |
IEEE Access
|
| 2021 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
Sensors
|
| 2020 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
IEEE Access
|
| 2020 | J | jnl |
Sensors
|
| 2020 | J | jnl |
CoRR
|
| 2019 | J | jnl |
Sensors
|
| 2019 | J | jnl |
IEEE Access
|
| 2019 | J | jnl |
CoRR
|
| 2019 | — | conf |
OFC
|
| 2018 | J | jnl |
IEEE Access
|
| 2018 | J | jnl |
CoRR
|
| 2018 | J | jnl |
Sensors
|
| 2018 | J | jnl |
Sensors
|
| 2018 | — | conf |
ICAIT
|
| 2018 | J | jnl |
JOCN
|
| 2018 | J | jnl |
IEEE Access
|
| 2018 | J | jnl |
IEEE Access
|
| 2017 | J | jnl |
JOCN
|
| 2015 | — | conf |
OFC
|
| 2015 | — | conf |
VTC Spring
|
| 2015 | — | conf |
VTC Spring
|
| 2014 | — | conf |
ONDM
|
| 2013 | — | conf |
OFC/NFOEC
|
| 2013 | J | jnl |
Nat.
|
| 2007 | J | jnl |
IEICE Trans. Electron.
|
| 2006 | J | jnl |
CoRR
|
| 2005 | J | jnl |
IEEE Commun. Lett.
|
| 2002 | J | jnl |
Signal Process.
|
| 2000 | J | jnl |
IEEE Trans. Biomed. Eng.
|
| 1998 | J | jnl |
IEEE Trans. Biomed. Eng.
|