Review of engine control-oriented combustion models J Tang, GG Zhu, Y Men International Journal of Engine Research 23 (3), 347-368, 2022 | 23 | 2022 |
Stochastic Bayesian optimization for predicting borderline knock J Tang, A Pal, W Dai, C Archer, J Yi, G Zhu International Journal of Engine Research 24 (3), 793-807, 2023 | 16 | 2023 |
A Gray-Box Surrogate Vehicle Energy Consumption Model Capable of Real-Time Updating L Hua, J Tang, H Dourra, G Zhu IEEE/ASME Transactions on Mechatronics 28 (4), 2092-2100, 2023 | 7 | 2023 |
Borderline knock adaptation based on online updated surrogate models J Tang, W Dai, C Archer, J Yi, G Zhu International Journal of Engine Research 24 (7), 2958-2972, 2023 | 6 | 2023 |
Cycle-based LQG knock control using identified exhaust temperature model J Tang, W Dai, C Archer, J Yi, G Zhu International Journal of Engine Research 24 (7), 3047-3060, 2023 | 4 | 2023 |
Borderline knock prediction using machine learned kriging model J Tang, A Pal, W Dai, C Archer, J Yi, G Zhu 2022 American control conference (ACC), 3038-3043, 2022 | 3 | 2022 |
Research on Modeling of EPS with Bond-Graph Theory and Simulating of Steering Maneuverability J Tang, HB Jiang, GQ Geng, NW Xue Key Engineering Materials 464, 736-740, 2011 | 3 | 2011 |
Tire-Road Friction Coefficient Estimation Based on Fusion of Model-and Data-Based Methods J Tang, H Dourra, G Zhu ASME Letters in Dynamic Systems and Control 3 (1), 011006, 2023 | 2 | 2023 |
汽车电动转向系统反向助力控制策略仿真 唐健, 江浩斌, 孙宣峰 计算机仿真 28 (11), 306-310, 2011 | 2 | 2011 |
A Survey of Vehicle System and Energy Models L Hua, J Tang, G Zhu Actuators 14 (1), 10, 2025 | | 2025 |
LQG Cycle-to-Cycle Knock Control Based on Identified Exhaust Temperature Model J Tang, W Dai, C Archer, J Yi, G Zhu 2023 American Control Conference (ACC), 3227-3232, 2023 | | 2023 |
Data Driven Based Estimation and Control for Automotive Systems J Tang Michigan State University, 2022 | | 2022 |
转向管柱和测力方向盘的连接结构 唐健, 雷应锋, 吴勋, 冯悦 CN Patent CN103,926,033 B, 2016 | | 2016 |