山东大学学报(工学版) ›› 2015, Vol. 45 ›› Issue (1): 45-53.doi: 10.6040/j.issn.1672-3961.0.2014.123
高焕兵, 田国会
GAO Huanbing, TIAN Guohui
摘要: 面向电力行业应急救援和安全抢修作业装备发展的需求,设计了一种配电系统带电抢修作业机器人,并对其机械结构与控制系统进行了介绍。提出一种基于液压伺服驱动的6自由度机械臂的系统解决方案,通过运动学、动力学和有限元分析优化了部件结构和动力学性能,使其有效负载能力达到最大。针对作业过程中机器人本体与导线发生碰撞等引起的震荡问题,使用非对称控制方法,建立了机械臂的柔顺控制模型,降低了震荡的影响。将整体单目视觉的静态测量与双目手眼视觉系统的动态测量相结合,设计了复杂环境下目标点的高精度动态定位系统,实现了机械臂的局部自主路径规划与运动控制。通过实验验证了所开发的带电抢修作业机器人在10 kV以下配电线路应用的有效性和可行性。
中图分类号:
[1] Sawada J, Kusumoto K, Maikawa Y, et al. A Mobile Robot for Inspection of Power Transmission Lines[J]. IEEE Trans on Power Delivery, 1991, 6(1):309-315. [2] Yano K, Maruyama Y, Morita K, et al. Development of the Semi-automatic Hot-line Work Robot Systems "Phase Ⅱ"[C]//Proceedings of the 7th International Conference on Transmission and Distribution Construction and Live Line Maintenance. Washington: IEEE Press, 1995:212-218. [3] Shinya Tanaka, Yoshinqga Maruyama, Kyoji Yano. Work Automation with the Hot-Line Work Robot System "Phase Ⅱ"[C]//The 1996 IEEE International Conference on Robotics and Automation. Washington: IEEE Press, 1996:1261-1267. [4] Takaoka K, Yokoyama K, Wakisako H. Development of the fully-automatic live-line maintenance robot-phase III[C]//Proceedings of the 4th IEEE International Symposium on Assembly and Task Planning. Washington: IEEE Press, 2001: 423-428. [5] Yoshinaga Maruyaga, Robotic application for hot-line maintenance[J].Industrial Robot, 2000, 27(5):357-365. [6] Tsukahara K, Tanaka Y, Yingxin H, et al. An experimental robot system for power distribution line maintenance robots-system architecture and bolt insertion experiment[C]//Proceedings of the International Conference on Intelligent Robots and Systems. Washington: IEEE Press, 2008:1730-1736. [7] Santamaria A, Aracil R, Tuduri A, et al. Teleoperated Robots for Live Power Lines Maintenance[C]//Proceedings of the 14th International Conference and Exhibition on Electricity Distribution. Washington: IEEE Press, 1997:3.31.1-3.31.5. [8] Udod E, Molchanov V, Taloverya V, et al. Automated Apparatus for Live Work on Overhead Transmission Lines[C]//Proceedings of 1998 International Conference on Transmission and Distribution Construction and Live Line Maintenance. Washington: IEEE Press, 1998:19-26. [9] Zarei-nia K, Sepehri N, Olson T, et al. Haptic-enabled control of hydraulic manipulators applied to power line maintenance: Concept & implementation[C]//Proceedings of the 1st International Conference on Applied Robotics for the Power Industry. Washington: IEEE Press, 2010:1-6. [10] 赵明辉,朱建生. 加拿大带电作业介绍[J]. 四川电力技术, 1998,21(6):58-60. ZHAO Minghui, ZHU Jiansheng. Live Line Work in Canada[J]. Sichuan Electric Power Technology, 1998, 21(6):58-60. [11] Soler R, Guillet J. Robotic maintenance of the EDF transmission (63 to 400 kV) network: feasibility study and effects on tower design[C]//Proceedings of the 6th International Conference on Transmission &Distribution Construction & Live Line Maintenance. Washington: IEEE Press, 1993: 459-468. [12] Chang-HoiKim, Seungho Jung, Taewon Jeong. Relative Position Measurement Method for a Live-line Work Robot[C]//Proceedings of 2007 International Conference on Control, Automation and Systems. Washington: IEEE Press, 2007: 998-1001. [13] Joon-Young Park, Byung-Hak Cho, Seung-Hyun Byun, et al. Development of Cleaning Robot System for Live-line Suspension Insulator String[J].International Jonrnal of Control,Automation, and Systems. 2009,2(7):211-220. [14] Joon-Young Park, Byung-Hak Cho, Jae-Kyung Lee. Development of robot mechanism for inspection of live-line suspension insulator string in 345 kV power lines[C]//Proceedings of the 2008 International Conference on Control, Automation and Systems. Washington: IEEE Press, 2008:2062-2065. [15] 鲁守银, 马培荪, 戚晖, 等. 高压带电作业机器人的研制[J]. 电力系统自动化, 2003, 27(17):56-58. LU Shouyin, MA Peisun, QI Hui, et al. Research on High Voltage Electric Power Live Line Working Robot[J]. Automation of Electric Power Systems, 2003, 27(17):56-58. [16] 王公旺. 高压带电作业机器人运动控制系统的研究与实现[D]. 青岛:山东科技大学, 2010. WANG Gongwang. The Motion Control System Research and Implementation of High Voltage Live Line Working Robot[D]. Qingdao: Shandong University of Science and Technology, 2010. [17] Ju Dai, Xuecheng Su. Simulated robotic hot-line maintenance based on virtual reality[C]//Proceedings of the 4th World Congress on Intelligent Control and Automation. Washington: IEEE Press, 2002:1231-1235. [18] 李健,鲁守银, 李运厂, 等. 10 kV配电线路带电抢修作业机器人实用化研究[J]. 制造业自动化, 2012,34(22):90-94. LI Jian, LU Shouyin, LI Yunchang, et al. The practical research of robot on live repair working for 10 kV distribution lines[J]. Manufacturing Automation, 2012, 34(22):90-94. [19] Lee Woo-Song, Eom Jae-Hong, Won Jong-Dae, et al. A study on visual servoing control of industrial robot[C]//Proceedings of the 12th International Conference on Control, Automation and Systems. Washington: IEEE Press, 2012:1886-1890. [20] Huang Guo-Shing, Chen Xi-Sheng, Chang Chung-Liang. Development of dual robotic arm system based on binocular vision[C]//Proceedings of 2013 CACS International Automatic Control Conference. Washington: IEEE Press, 2013:97-102. |
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