Opto-Electronic Engineering, Volume. 47, Issue 10, 200338(2020)
Research status and key technologies analysis of operating robots for nuclear environment
[3] [3] Nagatani K, Kiribayashi S, Okada Y, et al. Emergency response to the nuclear accident at the Fukushima Daiichi Nuclear Power Plants using mobile rescue robots[J]. Journal of Field Robotics, 2013, 30(1): 44–63.
[4] [4] Kim I S, Choi Y, Jeong K M. A new approach to quantify safety benefits of disaster robots[J]. Nuclear Engineering and Tech-nology, 2017, 49(7): 1414–1422.
[5] [5] Edmondson R, Vaden J, Hyatt B, et al. 3D vision upgrade kit for TALON robot[J]. Proceedings of SPIE, 2010, 7692: 76920J.
[6] [6] Otaki M. Environmental monitoring robots for nuclear emergen-cies[J]. Advanced Robotics, 2002, 16(6): 501–504.
[7] [7] Byrd J S, Devries K R. A six-legged telerobot for nuclear appli-cations development[J]. The International Journal of Robotics Research, 1990, 9(2): 43–52.
[8] [8] Meleran H, Harry H T. Utility/manufacturers robot user group: a status overview during its first seven years[C]//Proceedings of the 2nd ASME-JSME Nuclear Engineering Joint Conference, 1993: 263–266.
[9] [9] Bartholet T G. OEDX I: A new class of mobile robotics[J]. Ro-botics and Remote Handling in Hostile Environments, 1984, 18(10): 261–268.
[10] [10] Roman H T. Robotic applications in PSE&G’s nuclear and fossil power plants[J]. IEEE Transactions on Energy Conversion, 1993, 8(3): 584–592.
[11] [11] Houssay L P. Robotics and radiation hardening in the nuclear industry[D]. Gainesville, FL: University of Florida, 2000.
[12] [12] Kobayashi T, Miyajima K, Yanagihara S. Development of remote surveillance squads for information collection on nuclear acci-dents[J]. Advanced Robotics, 2002, 16(6): 497–500.
[13] [13] Oka K, Shibanuma K. Development of a radiation-proof robot[J]. Advanced Robotics, 2002, 16(6): 493–496.
[14] [14] Abouaf J. Trial by fire: teleoperated robot targets Chernobyl[J]. IEEE Computer Graphics and Applications, 1998, 18(4): 10–14.
[15] [15] Kawatsuma S, Fukushima M, Okada T. Emergency response by robots to Fukushima‐Daiichi accident: summary and lessons learned[J]. Industrial Robot, 2012, 39(5): 428–435.
[16] [16] Mano T, Hamada S. Development of a robot system for nuclear emergency preparedness[J]. Advanced Robotics, 2002, 16(6): 477–479.
[17] [17] Hosoda Y, Yamamoto H, Hattori M, et al. 'SWAN': a robot for nuclear disaster prevention support[J]. Advanced Robotics, 2002, 16(6): 485–488.
[18] [18] Isozaki Y, Nakai K. Development of a work robot with a mani-pulator and a transport robot for nuclear facility emergency preparedness[J]. Advanced Robotics, 2002, 16(6): 489–492.
[19] [19] Yuguchi Y, Satoh Y. Development of a robotic system for nuclear facility emergency preparedness—observing and work-assisting robot system[J]. Advanced Robotics, 2002, 16(6): 481–484.
[20] [20] Nagatani K, Kiribayashi S, Okada Y, et al. Emergency response to the nuclear accident at the FuKushima Daiichi nuclear power plants using mobile rescue robots[J]. Journal of Field Robotics, 2013, 30(1): 44–63.
[21] [21] Qian H H, Xu Y S, Xu W F. The State-of-arts and key technolo-gies for telerobotics in nuclear applications[C]//Proceedings of the 32nd Chinese Control Conference, 2013: 6016–6017.
[28] [28] Zhang X J, Zhang J H, Yuan J, et al. Development of an un-derwater robot for nuclear reactor vessel[C]//2013 IEEE Interna-tional Conference on Robotics and Biomimetics, 2013: 1699–1703.
[34] [34] Zakaria A H, Mustafah Y M, Abdullah J, et al. Development of autonomous radiation mapping robot[J]. Procedia Computer Science, 2017, 105: 81–86.
[35] [35] GuBW, ChoiSY, Choi Y S, et al. Novel roaming and stationary tethered aerial robots for continuous mobile missions in nuclear power plants[J]. Nuclear Engineering and Technology, 2016, 48(4): 982–996.
[41] [41] Jilek T, Zalud L, Kocmanova P. Robotic autonomous outdoor gamma radiation monitoring and mapping[J]. International Journal of Systems Applications, Engineering & Development, 2016, 10(2): 162–168.
[42] [42] Wang C Z,Hu S,GaoCM, et al. Nuclear radiation degradation study on HD camera based on CMOS image sensor at different dose rates[J]. Sensors, 2018, 18(2): 514.
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Feng Chang, Wang Congzheng, Zhao Jianping, Cheng Yong, Cai Gen, Dou Pu, Liao Libin. Research status and key technologies analysis of operating robots for nuclear environment[J]. Opto-Electronic Engineering, 2020, 47(10): 200338
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Received: Aug. 28, 2020
Accepted: --
Published Online: Jan. 12, 2021
The Author Email: Chang Feng (fc407@ioe.ac.cn)