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Rongjun Cheng
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2020 – today
- 2024
- [j16]Qiang-Xian Huang, Jian Xu, Xianzhi Qin, Liansheng Zhang, Rongjun Cheng, Hongli Li, Chaoqun Wang, Rui-Jun Li:
Three-Dimensional Nano Measurement System Based on Resonant Trigger Probe. IEEE Trans. Instrum. Meas. 73: 1-9 (2024) - [j15]Liyou Li, Hao Lyu, Ting Wang, Rongjun Cheng:
STdi4DMPC: Distributed Model Predictive Control for Connected and Automated Truck Platoon With Mixed Traffic Flow Based on Spatiotemporal Trajectory Prediction. IEEE Trans. Veh. Technol. 73(10): 14563-14579 (2024) - [i1]Ting Wang, Ye Li, Rongjun Cheng, Guojian Zou, Takao Dantsuji, Dong Ngoduy:
Knowledge-data fusion oriented traffic state estimation: A stochastic physics-informed deep learning approach. CoRR abs/2409.00644 (2024) - 2023
- [c4]Liyou Li, Hao Lyu, Rongjun Cheng:
STAdi-DMPC: A Trajectory Prediction Based Longitudinal Control of Connected and Automated Truck Platoon for Mixed Traffic Flow. ITSC 2023: 2908-2913 - 2022
- [j14]Wenkai Zhao, Rui-Jun Li, Liuhui Duan, Zhenying Cheng, Rongjun Cheng, Qiang-Xian Huang, Kuang-Chao Fan:
New Radius and Roundness Measurement for Microspheres Using a High-Precision Run-Out Error Separation Method. IEEE Trans. Instrum. Meas. 71: 1-10 (2022) - 2021
- [j13]Weilin Ren, Rongjun Cheng, Hongxia Ge:
Bifurcation analysis for a novel heterogeneous continuum model considering electronic throttle angle changes with memory. Appl. Math. Comput. 401: 126079 (2021) - 2020
- [j12]Weilin Ren, Rongjun Cheng, Hongxia Ge, Qi Wei:
Bifurcation Control in an Optimal Velocity Model via Double Time-Delay Feedback Method. IEEE Access 8: 216162-216175 (2020) - [j11]Qingying Wang, Hongxia Ge, Rongjun Cheng:
A New Two-Lane Lattice Hydrodynamic Model considering the Traffic Interruption Probability under Honk Environment. Complex. 2020: 1737318:1-1737318:12 (2020) - [j10]Rui-Jun Li, Yongjun Wang, Pan Tao, Rongjun Cheng, Zhenying Cheng, Yongqing Wei, Xueming Dang:
Drift Reduction of a 4-DOF Measurement System Caused by Unstable Air Refractive Index. Sensors 20(21): 6329 (2020)
2010 – 2019
- 2019
- [j9]Ting Wang, Rongjun Cheng, Hongxia Ge:
Analysis of a Novel Two-Lane Lattice Hydrodynamic Model Considering the Empirical Lane Changing Rate and the Self-Stabilization Effect. IEEE Access 7: 174725-174733 (2019) - 2018
- [j8]Rongjun Cheng, Hongxia Ge, Jufeng Wang:
The nonlinear analysis for a new continuum model considering anticipation and traffic jerk effect. Appl. Math. Comput. 332: 493-505 (2018) - [j7]Rongjun Cheng, Feng-Xin Sun, Jufeng Wang:
Meshless analysis of two-dimensional two-sided space-fractional wave equation based on improved moving least-squares approximation. Int. J. Comput. Math. 95(3): 540-560 (2018) - [j6]Rui-Jun Li, Peng Xu, Peng-Yu Wang, Kuang-Chao Fan, Rongjun Cheng, Qiang-Xian Huang:
Development of a Micro/Nano Probing System Using Double Elastic Mechanisms. Sensors 18(12): 4229 (2018) - 2017
- [j5]Bo Li, Yulong Zhao, Cun Li, Rongjun Cheng, Dengqiang Sun, Songli Wang:
A Differential Resonant Accelerometer with Low Cross-Interference and Temperature Drift. Sensors 17(1): 178 (2017) - 2015
- [j4]Hongxia Ge, Yu Cui, Keqiang Zhu, Rongjun Cheng:
The control method for the lattice hydrodynamic model. Commun. Nonlinear Sci. Numer. Simul. 22(Issues): 903-908 (2015) - [c3]Rongjun Cheng, Yulong Zhao, Cun Li, Bian Tian, Bo Li:
Research on slide-film damping effect to achieve a high-performance resonant pressure senor. NEMS 2015: 99-102 - 2014
- [j3]Xin Yu, Rongjun Cheng, Huachen Jiang, Qian Zhang, Chao Xu:
The approximation for the boundary optimal control problem of Burgers-Fisher equation with constraints. Appl. Math. Comput. 243: 889-898 (2014) - [c2]Cun Li, Yulong Zhao, Rongjun Cheng:
A micro resonant acceleration sensor comprising silicon support with temperature isolator and quartz doubled ended tuning fork. NEMS 2014: 346-349 - [c1]Rongjun Cheng, Yulong Zhao, Cun Li:
Feasibility study of a pressure sensor based on double-ended tuning fork quartz resonator. NEMS 2014: 354-357
2000 – 2009
- 2008
- [j2]Rongjun Cheng, Hongxia Ge:
The meshless method for a two-dimensional parabolic problem with a source parameter. Appl. Math. Comput. 202(2): 730-737 (2008) - [j1]Rongjun Cheng:
Determination of a control parameter in a one-dimensional parabolic equation using the moving least-square approximation. Int. J. Comput. Math. 85(9): 1363-1373 (2008)
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