(1)Li Zhongshen;Chen Qihuai; Chen Yongjie; Lin Tianliang; Ren Haoling; Gong Wen ; HighPerformance Control Strategy for Low-Speed Torque of IPMSM in Electric Construction Machinery, Machines, 2022, 1(9): 810
(2)Li Zhongshen;Lin Tianliang; Gao Qifa ; Energy Consumption Prediction of Electric Construction Machinery Based on Condition Identification, IEEE Access, 2022, 10: 127461- 127468
(3)Li Zhongshen;Mo Xiaoqin; Guo Shangjia; Lan Weiyao; Huang Chunqing ; 4-Degree-of-freedom anti-windup scheme for plants with actuator saturation, Journal of Process Control, 2016.11, 47(11): 111-120
(4)Li Zhongshen;Su Ling; Lin Tianliang ; Overflow Energy Loss Recovery System Based on Hydraulic motor-Electric Generator, Applied Sciences-Basel, 2021.1, 11(3): 1-24
(5)Li Zhongshen;Lin Tianliang; Zhao Yi; Chen Qihuai; Fu Shengjie; Ren Haoling; Gong Wen; Electric Motor Control for Online Tuning Based on Positive Flow System for Electric Construction Machinery, Applied Sciences, 2022, 12(19): 10072
(6)Li Zhongshen;Luo Tao; Lv Yuan; Guo Tong; Lin Tianliang ; A Digital Denoising Method Based on Data Frequency Statistical Filtering, Applied Sciences, 2022, 12(24): 12740.
(7)Li Zhongshen;Lin Yuanzheng; Chen Qihuai; Wu Kai; Lin Tianliang; Ren Haoling; Gong Wen; Control Strategy of Speed Segmented Variable Constant Power Powertrain of Electric Construction Machinery,Applied Sciences, 2022, 12(19): 9734
(8)林瑜阳;李钟慎;基于连通二部图的二阶多智能体系统分组一致性分析,信息与控制, 2017, 46(1): 7-12