Development of an Intelligent Power Module Inserter

Author:

Sato Junya1,Ichikawa Yoshiaki1,Yamada Takayoshi1,Ito Kazuaki1,Yamamoto Hidehiko1,Fujihara Motoharu2,Kawaguchi Satoshi2,Suzuki Takehiko2,Izawa Jin2

Affiliation:

1. Faculty of Engineering, Gifu University

2. Aisin AW Co., LTD

Publisher

Institute of Electrical Engineers of Japan (IEE Japan)

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Mechanical Engineering,Energy Engineering and Power Technology,Automotive Engineering

Reference8 articles.

1. (1) X. Li, R. Li, H. Qiao, C. Ma, and L. Li: “Human-inspired compliant strategy for peg-in-hole assembly using environmental constraint and coarse force information”, in Proc. IEEE/RSJ International Conference on Intelligent Robots and Systems, pp. 4743-4748 (2017)

2. (2) H. Park, J.-H. Bae, J.-H. Park, M.-H. Baeg, and J. Park: “Intuitive peg-in-hole assembly strategy with a compliant manipulator”, in Proc. IEEE International Conference on Intelligence and Safety for Robotics, pp. 1-5 (2013)

3. (3) K. Kronander, E. Burdet, and A. Billard: “Task transfer via collaborative manipulation for insertion assembly”, in Proc. Workshop on Human-Robot Interaction for Industrial Manufacturing, Robotics, Science and Systems, pp. 1-6 (2014)

4. (4) T. Tang, H. Lin, Y. Zhao, W. Chen, and M. Tomizuka: “Autonomous alignment of peg and hole by force/torque measurement for robotic assembly”, in Proc. IEEE International Conference on Automation Science and Engineering, pp. 162-167 (2016)

5. (5) T. Inoue, G. D. Magistris, A. Munawar, T. Yokoya, and R. Tachibana: “Deep reinforcement learning for high precision assembly tasks”, in Proc. IEEE/RSJ International Conference on Intelligent Robots and Systems, pp. 819-825 (2017)

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Evolutionary Image Processing for an Intelligent Power Module Inserter Robust to Different Lighting Environments;IEEJ Journal of Industry Applications;2022-07-01

2. High Precision Machining Force Control of VCM-driven Deburring Equipment;2022 IEEE 17th International Conference on Advanced Motion Control (AMC);2022-02-18

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