论文
[1] 井下无线射频识别信号传输特性的模拟研究. 2023, 测井技术, 47(5).
[2] Pattern recognition‑based decoding method for the negative pulsed downlink signal with a narrow pulse width, 2021, Journal of Petroleum Exploration and Production Technology, 11(2), SCI四区
[3] Load torque analysis and compensation device design for low power drilling fluid continuous wave generator, 2021, Journal of Petroleum Exploration and Production Technology, 11(5), SCI四区
[4] A continuous phase-frequency modulation technique and adaptive pump noise cancellation method of continuous-wave signal over mud telemetry channel, 2021, Digital Signal Processing, 117, SCI二区
[5] Modeling and Analysis of the Load Torque Acting on the Drilling Fluid Continuous Wave Generator, 2020, IEEE Access, 8, SCI二区
[6] Mathematical model and analysis of characteristics of downhole continuous pressure wave signal, 2020, Journal of Petroleum Science and Engineering, 186, SCI三区
[7] 井下钻井液连续波波形特征影响规律的研究, 2018, 2018年度钻井技术研讨会暨第十八届石油钻井院(所)长会议论文集, 2018
[8] Trajectory Planning Based on Optimal Control and Exact Derivatives, 2019, International Conference on Intelligent Robotics and Applications, 2019, EI
[9] Design and Analysis of Motor Control System for Drilling Fluid Continuous Wave Generator Based on Improved Active Disturbance Rejection Control and Hysteresis Current Control, 2019, International Conference on Intelligent Robotics and Applications, 2019, EI
[10] A frequency-domain propagation model of bypass downlink system with transfer matrix method, 2017, Journal of Petroleum Science and Engineering, 159, SCI三区
[11] Mathematical model and optimum design approach of sinusoidal pressure wave generator for downhole drilling tool, 2017, Applied Mathematical Modelling, 47, SCI一区
[12] A systematic optimization approach for the calibration of parallel kinematics machine tools by a laser tracker, 2014, International Journal of Machine Tools and Manufacture, 86, SCI二区
[13] Chaotic particle swarm optimization for automatic surface or curve localization, 2014, Key Engineering Materials, 620, EI
[14] Design and experiment verification of a new heavy friction-stir-weld robot for large-scale complex surface structures, 2015, Industrial Robot, 42 (4), SCI四区
[15] Propagation model with multi-boundary conditions for periodic mud pressure wave in long wellbore, 2015, APPLIED MATHEMATICAL MODELLING, 39, SCI一区
专利
[1] 一种基于波纹管的井下油压补偿动密封装置及方法, 国家发明专利, ZL202110920568.5
[2] 一种钻井液连续波信号调制系统及方法, 国家发明专利, ZL202110921086.1
[3] 超高温井随钻仪器电路的无源式冷却设备、仪器及系统, 国家发明专利, ZL202011370811.2
[4] 一种旋转导向工具地面指令下传系统及方法, 发明专利, ZL202110920558.1
[5] 基于模式识别的窄脉宽负脉冲式下传信号解码方法及系统, 国家发明专利, ZL202011485920.9
[6] 一种单向连续旋转电机驱动剪切阀式泥浆脉冲发生器, 国家发明专利, ZL201811303237.1
[7] 一种用于丛式井防碰的主动测距系统及方法, 国家发明专利, ZL201811624528.0
[8] 钻井液连续波频率连续相位平滑编码调制解调系统及方法, 国家发明专利, 2020, ZL201710081186.1
[9] 一种泥浆脉冲信号泵噪声实时去除方法, 国家发明专利, ZL201610388971.7
[10] 基于低频弹性波响应特征的井筒气侵早期主动监测方法, 国家发明专利, ZL201611216470.7
[11] 一种振荡剪切式泥浆脉冲发生器及控制方法, 国家发明专利, ZL201410612319.X
[12] 一种全旋转动态指向式旋转导向系统及导向控制方法, 国家发明专利, ZL201611234579.3
[13] 一种机械臂关节扭矩测量装置, 国家发明专利, ZL201310216440.6
[14] 一种滑枕悬伸变形补偿装置及方法, 国家发明专利, ZL201210562935X
[15] 一种低功耗连续波发生器, 国家发明专利, ZL201610389342.6
[16] 一种随钻测量连续波信号去噪方法, 国家发明专利, ZL202311219563.5