英文论文: 通讯作者*
[28] Sun C, Wang L, Qiu C, Li JY* (2026) Self-powered active control of high-rise building under wind excitation via model predictive control.Advances in Structural Engineering.https://doi.org/10.1177/13694332261488528.
[27] Xing H, Li G, Li JY*(2026) Enhancing Self-Powered Active Control Tolerance to Cable Tension Variations Using Neural Network-Based Identification.Structural Control and Health Monitoring.https://doi.org/10.1155/stc/6451025.
[26] Li JY*, Ma M, Xia Z, Yang G, Li G* (2026) Design and Parametric Optimization of a Tubular Auxetic Piezoelectric Energy Harvester.Thin-Walled Structures.https://doi.org/10.1016/j.tws.2026.115077.
[25] Li JY*, Li Y, Fu Y, Zhang J* (2026), Machine Learning-Based Bi-Objective Optimization of Offshore Turbine Sets Considering Yaw Control.Marine Structures. https://doi.org/10.1016/j.marstruc.2026.104111. (**船舶学院 TOP**)
[24] Li G, Liu S, Li JY*, Yan J (2025), Research on Vibration Control of Dynamic Cables Based on Novel Integrated Control and Energy Harvesting Buoy System.Ocean Engineering.https://doi.org/10.1016/j.oceaneng.2025.123415.
[23] Li JY*, Li Y, Song Y, Zhou H*, Wang L (2025), Reliability analysis of a high-rise benchmark building with novel self-powered active mass damper under random wind excitations.Mechanical Systems and Signal Processing.https://doi.org/10.1016/j.ymssp.2025.113575.
[22] Xu Q, Sun R*, Li JY*, Zhao X (2025), Self-powered electromagnetic shunt damper for semi-active vibration control.International Journal of Mechanical Sciences. https://doi.org/10.1016/j.ijmecsci.2025.110761.
[21] Hua Y, Li JY*(2025), The self-powering condition of the active skyhook H-bridge circuit based electromagnetic damper (HB-EMD) as the SDOF isolator.Journal of Vibration and Control.https://doi.org/10.1177/10775463251367612.
[20] Hua Y, Li JY*, Zhu S* (2025), Self-powered actively-controlled lateral suspensions of high-speed trains using energy-regenerative electromagnetic damper and model predictive control ***International Journal of Structural Stability and Dynamics. https://doi.org/10.1142/S0219455426500665.
[19] Shi X, Wang J, Wu Z, Xing H, Li JY* (2025), Robustness Analysis of Self-Powered Active Electromagnetic Suspension System Using Interval Model.Journal of Vibration Engineering & Technologies.https://doi.org/10.1007/s42417-024-01630-7.
[18] Shen W, Fu Y*, Kong Q, Li JY* (2024) Noise-robust automated sudden damage detection using blind source separation enhanced by variational mode decomposition and support vector machine based on shapelet transform.Journal of Sound and Vibration. https://doi.org/10.1016/j.jsv.2024.118783.
[17] Shi X, Wei X, Li JY*, Xing H, Cai Q (2024) Robustness Evaluation of Negative Stiffness Damper for Cable Vibration Mitigation Based on Interval Model with Experimental Validation ***Structural Control & Health Monitoring.https://doi.org/10.1155/2024/1258183.
[16] Li JY, Zhu S, Zhang J, Ma R, & Zuo H* (2024) Vibration control of offshore wind turbines with a novel energy-adaptive self-powered active mass damper, Engineering Structures. 302: 117450 (IF2022: 5.5, JCR-Q1)
[15] Shi X, Yu Q, Hua Y, Wu Z, Li JY* and Zhu S (2023) Active control for vehicle suspension using a self-powered dual-function active electromagnetic damper, Journal of Sound and Vibration. 569: 117976 (IF2022: 4.7, JCR-Q1)
[14] Mao J, Su X, Wang H*, and Li JY (2023) Automated Bayesian Operational Modal Analysis of the Long-Span Bridge Using Machine-Learning Algorithms, Engineering Structures. 289: 116336 (IF2022: 5.5, JCR-Q1)
[13] Shi X, Wu Z, Hua Y, Shi W, Zhu S, and Li JY* (2023) Tracking active control forces by using a semi-active vehicle suspension integrated with negative stiffness, International Journal of Structural Stability and Dynamics. 2450019 (IF2021: 2.957, JCR-Q2)
[12] Li JY, Lu J, and Zhou H* (2023) Reliability Analysis of Structures with Inerter-based Isolation Layer Under Stochastic Seismic Excitations, Reliability Engineering & System Safety. 235: 10922 (IF2021: 7.247, JCR-Q1)
[11] Li JY, Shen J, and Zhu S* (2023) Adaptive self-powered active vibration control to cable structures, Mechanical Systems and Signal Processing. 188 : 110050 (IF2021: 8.934, JCR-Q1)
[10] Shi X, Ma J, Xing L, Li JY* and Zhu S* (2022) Analytical study on the effects of flexural rigidity and negative stiffness in the optimal tuning of inerter-based damper for cable vibration mitigation, Advances in Structural Engineering. 25(16): 3316-3333 (Invited paper) (IF2021: 2.438, JCR-Q3)
[9] Li JY and Zhu S*(2022) Cable vibration mitigation by using an H-bridge-based electromagnetic inerter damper with energy harvesting function, Structural Control and Health Monitoring. 29(12): e3120 (IF2021: 6.058, JCR-Q1)
[8] Li JY and Zhu S*(2022) Self-powered active vibration control: concept, modeling, and testing, Engineering. 11: 126-137 (IF2021: 12.834, JCR-Q1)
[7] Li JY and Zhu S*(2021) Tunable electromagnetic damper with synthetic impedance and self-powered functions, Mechanical Systems and Signal Processing. 159: 107822
[6] Shi X, Zhao F, Yan Z, Zhu S* and Li JY (2021) High-performance vibration isolation technique using passive negative stiffness and semi-active damping, Computer-Aided Civil and Infrastructure Engineering. 36(8): 1034-1055 (IF2021: 10.066, JCR-Q1)
[5] Li JY and Zhu S*(2021) Advanced vibration isolation technique using versatile electromagnetic shunt damper with tunable behavior, Engineering Structures. 242: 112503
[4] Li JY, Zhu S*, Shi X and Shen W (2020) Electromagnetic shunt damper for bridge cable vibration mitigation: full-scale experimental study, Journal of Structural Engineering - ASCE.146(1): 04019175(https://ascelibrary.org/doi/full/10.1061/(ASCE)ST.1943-541X.0002477)) (**建工学院 TOP, **[香港工程师协会 | 卓越结构大奖](https://www.wolai.com/jyli/fe1VhsJ539uEaTpKgtn1JW))
[3] Li JY, Zhu S* and Shen J (2019) Enhance the damping density of eddy current and electromagnetic dampers, Smart Structures and Systems. 24(1): 15-26.https://koreascience.kr/article/JAKO201921358168479.page
[2] Li JY and Zhu S* (2018) Versatile behaviors of electromagnetic shunt damper with a negative impedance converter, IEEE/ASME Transactions on Mechatronics. 23(3) : 1415-1424.https://ieeexplore.ieee.org/document/8309311/
[1] Shi X, Zhu S*, Li JY and Spencer BF (2016) Dynamic behavior of stay cables with passive negative stiffness dampers, Smart Materials and Structures. 25(7): 075044.https://iopscience.iop.org/article/10.1088/0964-1726/25/7/075044/meta
发表中文期刊论文:
[1] 王璐浩, 李钢, **李锦阳***(2025)基于模型预测控制的自供能主动减震系统. **工程力学**. ([**Link**](https://doi.org/https://doi.org/10.6052/j.issn.1000-4750.2025.05.0262))
会议和报告:
[14] “大跨斜拉桥拉索结构的自供能主动控制” ([Invited Talk](https://www.notion.so/6b0d8202fe2a412b9718f683ba56d1d6?pvs=21)) 第五届江苏省工程师学会风工程学术会议暨基础设施智能抗风防灾及韧性提升国际论坛,*Nanjing, China, 9-11 Jun 2023*
[13] “超长斜拉索的自供能主动控制研究”,第九届结构抗振控制与健康监测学术会议*(SVCHM-9th), Changsha, China, 12-14 May 2023*
[12] “Long-term self-adaptive active vibration control to stay cable without external power supply" *The 16th International Symposium on Structural Engineering (ISSE-16), Tianjin, China, 1-4 Apr 2023*
[11] “Self-powered active control on a single degree of freedom system under seismic excitation”*The 19th Asia-Pacific Vibration Conference (APVC2021), Qingdao, China, 14-17 October 2021*
[10] “Self-powered active control system and its applications” (Invited Talk) *State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, China, 20 Aug 2022*
[9] “Novel self-powered active isolation: a case study on a single-degree-of-freedom system” (Best Paper Award)*The 2nd ZHITU Symposium on Advances in Civil Engineering, UNIST, Ulsan, South Korea (online), 28-29 Sep 2021*
[8] “Structural vibration control using electromagnetic dampers” (Invited Talk)*Summer School of Huazhong University of Science and Technology (HUST), Wuhan, China, 14 July 2021*
[7] “Self-powered electromagnetic damper with tunable synthetic impedance behavior” (Invited Talk) *Proceedings of 8th International Conference on Vibration Engineering (ICVE2021), Shanghai, China, 24-26 July 2021*
[6] “Versatile behaviors of electromagnetic shunt damper”*CEE Research Salon (Str Unit), Hong Kong, China, 1 Nov 2019*
[5] “Using electromagnetic shunt dampers to emulate various mechanical dampers”*The 7th World Conference on Structural Control and Monitoring (7WCSCM), Qingdao, China, July 22-25, 2018*
[4] “Full-scale bridge cable vibration control using electromagnetic shunt damper”*ZHITU Symposium, Hangzhou, China, 12-14 Jul 2018*
[3] “Using electromagnetic shunt dampers to emulate various mechanical dampers”*The 8th Asia and Pacific Young Researchers and Graduates Symposium (YRGS2017), Tokyo, Japan, 07-08 Sep 2017*
[2] “Emulation of various mechanical dampers using electromagnetic shunt damper - Negative Impedance Converter with Voltage Inversion (EMSD-VNIC)”*3MSSTC, Illinois, US, 06-07 Oct 2017*
[1] “Electromagnetic shunt damper with VNIC”*Proceedings of the International Conference on Smart Infrastructure and Construction, Cambridge, UK, 27–29 Jun 2016*