1. Cai, Q., Tang, J., Dai, K., Luo, Y.* Wang, J., and Wasse, A.D. (2026) Spatially efficient three-dimensional double-mass pendulum damper for offshore wind turbines. Marine Structures. 108: 104048.
2. Cai, Q., Dai, K*., and Zhu, S.* (2025) Wave energy converter-inspired ultra-low-frequency double-mass pendulum damper for vibration control of offshore wind turbines. Ocean Engineering. 340: 122213.
3. Cai, Q., Dai, K., and Zhu, S.* (2025) Double-mass pendulum energy harvester with tunable ultra-low frequency: An experimental study. Energy. 329: 136138.
4. Shi, X., Li, J., Zhu, S., Cai, Q.*, Dai, K., and Han, W. (2025) Negative stiffness energy-harvesting electromagnetic damper for vibration control of bridge stay cable. Engineering Structures, 322: 120072.
5. Cai, Q., Wang, J., Dai, K.*, Cheng, Y., Li, Y., Ma, W., and Sun, Z. (2025). Vibration reduction of offshore wind turbines using self-powered-feasible semi-active tuned mass damper. Ocean Engineering, 318, 120182.
6. Cai, Q., Hua, Y.Y., Zhu, S., Zhang, X., and Zuo H.R.* (2024) Bistable energy-harvesting track nonlinear energy sink in offshore wind turbines. Mechanical Systems and Signal Processing. 215: 111407. (AIE关键科学论文)
7. Cai, Q., and Zhu, S.* (2024) Nonlinear double-mass pendulum for vibration-based energy harvesting. Nonlinear Dynamics. 112: 5109-5128.
8. Cai, Q., and Zhu, S.* (2022) The nexus between vibration-based energy harvesting and structural vibration control: A comprehensive review. Renewable and Sustainable Energy Reviews. 155: 311920. (ESI高被引论文)
9. Cai, Q., and Zhu, S.* (2021) Applying double-mass pendulum oscillator with tunable ultra-low frequency in wave energy converter. Applied Energy. 298: 117228.
10. Cai, Q., and Zhu, S.* (2019) Enhancing the performance of electromagnetic damper cum energy harvester using microcontroller: Concept and experimental validation. Mechanical Systems and Signal Processing. 134: 106339.
*:通讯作者