[1] |
LIU Z H, WANG X R, CAI Y J, et al. Dynamic risk assessment and active response strategy for industrial human-robot collaboration [J]. Computers & Industrial Engineering, 2020, 141: 106302.
|
[2] |
HUANG J, PHAM D T, LI R Y, et al. An experimental human-robot collaborative disassembly cell [J]. Computers & Industrial Engineering, 2021, 155: 107189.
|
[3] |
RENU R S, MOCKO G. Computing similarity of textbased assembly processes for knowledge retrieval and reuse [J]. Journal of Manufacturing Systems, 2016, 39: 101-110.
|
[4] |
DARVISH K, WANDERLINGH F, BRUNO B, et al. Flexible human-robot cooperation models for assisted shop-floor tasks [J]. Mechatronics, 2018, 51: 97-114.
|
[5] |
ABUDUWEILI A, LI S Y, LIU C L. Adaptable human intention and trajectory prediction for human-robot collaboration [DB/OL]. (2019-09-11). https://arxiv.org/abs/1909.05089.
|
[6] |
CHENG Y J, SUN L T, LIU C L, et al. Towards better human robot collaboration with robust plan recognition and trajectory prediction [DB/OL].(2020-02-17). https://arxiv.org/abs/1903.02199.
|
[7] |
LIU H Y, WANG L H. Collision-free human-robot collaboration based on context awareness [J]. Robotics and Computer-Integrated Manufacturing, 2021, 67: 101997.
|
[8] |
AMORIM A, GUIMARES D, MENDONA T, et al. Robust human position estimation in cooperative robotic cells [J]. Robotics and Computer-Integrated Manufacturing, 2021, 67: 102035.
|
[9] |
MAKRIS S, KARAGIANNIS P, KOUKAS S, et al. Augmented reality system for operator support in human-robot collaborative assembly [J]. CIRP Annals, 2016, 65(1): 61-64.
|
[10] |
RAATZ A, BLANKEMEYER S, RECKER T, et al. Task scheduling method for HRC workplaces based on capabilities and execution time assumptions for robots [J]. CIRP Annals, 2020, 69(1): 13-16.
|
[11] |
LIU H Y, WANG L H. Human motion prediction for human-robot collaboration [J]. Journal of Manufacturing Systems, 2017, 44: 287-294.
|
[12] |
BERG J, RECKORDT T, RICHTER C, et al. Action recognition in assembly for human-robot-cooperation using hidden Markov models [J]. Procedia CIRP, 2018, 76: 205-210.
|
[13] |
LI Z, JIN X L, JIA H Y, et al. The knowledge representation and reuse in product design [J]. Journal of Shanghai Jiao Tong University, 2006, 40(7): 1183- 1186 (in Chinese).
|
[14] |
HE L L, GUO W, JIANG P Y. A decision-making model for knowledge collaboration and reuse through scientific workflow [J]. Advanced Engineering Informatics, 2021, 49: 101345.
|
[15] |
ARANA-AREXOLALEIBA N, URRESTILLAANGUIOZAR N, CHRYSOSTOMOU D, et al. Transferring human manipulation knowledge to industrial robots using reinforcement learning [J]. Procedia Manufacturing, 2019, 38: 1508-1515.
|
[16] |
RAZIEI Z, MOGHADDAM M. Adaptable automation with modular deep reinforcement learning and policy transfer [J]. Engineering Applications of Artificial Intelligence, 2021, 103: 104296.
|
[17] |
RODR′IGUEZ I, NOTTENSTEINER K, LEIDNER D, et al. Pattern recognition for knowledge transfer in robotic assembly sequence planning [J]. IEEE Robotics and Automation Letters, 2020, 5(2): 3666-3673.
|
[18] |
GUO M H, CAI J X, LIU Z N, et al. PCT: Point cloud transformer [J]. Computational Visual Media, 2021, 7(2): 187-199.
|