Ohishi Kiyoshi | Department Of Electrical Engineering Nagaoka University Of Technology
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概要
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- 同名の論文著者
- Department Of Electrical Engineering Nagaoka University Of Technologyの論文著者
関連著者
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Ohishi Kiyoshi
Department Of Electrical Engineering Nagaoka University Of Technology
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Mitsantisuk Chowarit
Department Of Electrical Engineering Nagaoka University Of Technology
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Miyazaki Toshimasa
Department Of Electrical Engineering Nagaoka University Of Technology
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Miyazaki Toshimasa
Department of Electrical and Electronic Systems Engineering, Nagaoka National College of Technology, Nagaoka, Niigata 940-8532, Japan
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OHISHI Kiyoshi
Nagaoka University of Technology
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Koide Daiichi
Science & Technical Research Laboratories Nhk (japan Broadcasting Corporation)
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Tokumaru Haruki
Science & Technical Research Laboratories Nhk (japan Broadcasting Corporation)
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MITSANTISUK Chowarit
Nagaoka University of Technology
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Shimada Naoki
Department Of Applied Biological Chemistry Division Of Agriculture And Agricultural Life Sciences Th
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MITSANTISUK Chowarit
Department of Electrical Engineering, Nagaoka University of Technology
著作論文
- Robust robot manipulator control with autonomous consideration algorithm of torque saturation
- Robust motion control with the consideration algorithm of joint torque saturation for a redundant manipulator
- Sensorless Interaction Force Control Based on B-Spline Function for Human-Robot Systems
- Perfect Tracking Control System with Prediction State Observer for Next-Generation Optical Disks
- High Performance Force Sensing Based on Kalman-Filter-Based Disturbance Observer Utilizing FPGA
- Velocity Control Based on a Wide Range of Velocity Estimation in FPGA
- Effectiveness of Coprime Factorization Controller on Two-inertia System Using Full Order State Observer
- Error Prediction Robust Tracking Control System Suppressing Harmonics Disturbance for Optical Disk Recording System
- Robustness of Position Control of Two-Inertia System Based on Acceleration Control (産業計測制御研究会 産業計測制御一般)
- High Precision Tracking Control based on Pseudo-Inverse Feedforward Control System for Next-Generation Optical Disks