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Improving Human-Robot Physical Interaction Comfort in Material Handling Tasks Using a Smart Platform


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BANERJEE, S.; ACHARYA, K. N.; CHATTOPADHYAY, D. P.: Studies on energy expenditure of rickshaw pullers. [online]. Indian Journal of Physiology and Pharmacology. 1959, Vol. 3, Issue 3, pp. 147-160. Available from WWW: https://iipp.com/IJPP%20archives/1959_3_3/1959_3_3_toc.php Search in Google Scholar

BLAYA, J. A.; HERR, H.: Adaptive Control of a Variable-Impedance Ankle-Foot Orthosis to Assist Drop-Foot Gait. IEEE Transactions on Neural Systems and Rehabilitation Engineering. 2004, Vol. 12, Issue 1, pp. 2–31. DOI: 10.1109/TNSRE.2003.823266 Search in Google Scholar

BAUD, R.; MANZOORI, A. R.; IJSPEERT, A.; BOURI, M.: Review of control strategies for lower-limb exoskeletons to assist gait. Journal of NeuroEngineering and Rehabilitation. 2021, Vol. 18. DOI: 10.1186/s12984-021-00906-3 Search in Google Scholar

DUCHAINE, V.; GOSSELIN, C. M.: General Model of Human-Robot Cooperation Using a Novel Velocity Based Variable Impedance Control. In: Second Joint EuroHaptics Conference and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems (WHC’07). Tsukuba, Japan, IEEE, 2007, pp. 446–51. DOI: 10.1109/WHC.2007.59 Search in Google Scholar

HAISMAN, M. F.; WINSMANN, F. R.; GOLDMAN, R. F.: Energy cost of pushing loaded handcarts. Journal of Applied Physiology. 1972, Vol. 33, Issue 2, pp. 181–183. DOI: 10.1152/jappl.1972.33.2.181 Search in Google Scholar

JÄGER, M.; LUTMANN, A.; LAURIG, W.: The load on the spine during the transport of dustbins. Applied Ergonomics. 1984, Vol. 15, Issue 2, pp. 91–98. DOI: 10.1016/0003-6870(84)90278-3 Search in Google Scholar

HOGAN, N.: Impedance control of industrial robots. Robotics and Computer-Integrated Manufacturing. 1984, Vol. 1, Issue 1, pp. 97–113. DOI: 10.1016/0736-5845(84)90084-x Search in Google Scholar

VOLPE, B. T.; KREBS, H. I.; HOGAN, N.; EDELSTEIN, L.; DIELS, C.; AISEN, M.: A novel approach to stroke rehabilitation: Robot-aided sensorimotor stimulation. Neurology. 2000, Vol. 54, Issue 10, pp. 1938–1944. DOI: 10.1212/WNL.54.10.1938 Search in Google Scholar

KANA, S.; TEE, K.-P.; CAMPOLO, D.: Human-Robot co-manipulation during surface tooling: A general framework based on impedance control, haptic rendering and discrete geometry. Robotics and Computer-Integrated Manufacturing. 2021, Vol. 67. DOI: 10.1016/j. rcim. 2020.10203 3 Search in Google Scholar

KUMAR, S.; NARAYAN, Y.; BACCHUS, Ch.: Symmetric and Asymmetric Two-Handed Pull-Push Strength of Young Adults. Human Factors. 1995, Vol. 37, Issue 4, pp. 854–865. DOI: 10.1518/001872095778995526 Search in Google Scholar

LACHNER, J.; SCHETTINO, V.; ALLMENDINGER, F.; FIORE, M. D.; FICUCIELLO, F.; SICILIANO, B.; STRAMIGIOLI, S.: The influence of coordinates in robotic manipulability analysis. Mechanism and Machine Theory. 2020, Vol. 146. DOI: 10.1016/j.mechmachtheory.2019.103722 Search in Google Scholar

LEE, Ch. W.; WONG, W. P.; IGNATIUS, J.; RAHMAN, A.; TSENG, M.-L.: Winner determination problem in multiple automated guided vehicle considering cost and flexibility. Computers & Industrial Engineering. 2020, Vol. 142. DOI: 10.1016/i.cie.2020.106337 Search in Google Scholar

LEE, K. S.; CHAFFIN, D. B.; HERRIN, G. D.; WAIKAR, A. M.: Effect of handle height on lower-back loading in cart pushing and pulling. Applied Ergonomics. 1991, Vol. 22, Issue 2, pp. 117 123. DOI: 10.1016/0003-6870(91)90310-e Search in Google Scholar

LEE, S.-D.; JUNG, S.: Human-actuator collaborative control by a novel frequency- division technique for linear maneuverability of control moment gyroscopic actuators. Mechatronics. 2018, Vol. 55, pp. 224-233. DOI: 10.1016/i.mechatronics.2018.05.001 Search in Google Scholar

NAR: Real Estate in a Digital Age 2018 Report. [online]. National Association of REALTORS®, 2018. [accessed 2023-02-01]. Available from WWW: https://www.nar.realtor/sites/default/files/documents/2018-real-estate-in-a-digital-world-12-12-2018.pdf Search in Google Scholar

NREI: National Real Estate Investor®: 2019 Outlook. [online]. 2019. [accessed 2023¬02-02]. Available from WWW: https://mf.freddiemac.com/docs/nrei.pdf Search in Google Scholar

PALMA, P.; SEWERYN, K.; RYBUS, T.: Impedance Control Using Selected Compliant Prismatic Joint in a Free-Floating Space Manipulator. Aerospace. 2022, Vol. 9, Issue 8. DOI: 10.3390/aerospace9080406 Search in Google Scholar

ROUSE, E. J.; HARGROVE, L. J.; PERREAULT, E. J.; PESHKIN, M. A.; KUIKEN, T. A.: Development of a Mechatronic Platform and Validation of Methods for Estimating Ankle Stiffness During the Stance Phase of Walking. Journal of Biomechanical Engineering. 2013, Vol. 135, Issue 8. DOI: 10.1115/1.4024286 Search in Google Scholar

SUTTON, R. S.; BARTO, A. G.: Reinforcement Learning: An introduction. 2nd edition. MIT Press, Cambridge, MA, USA, 2018. ISBN 978-0-262-03924-6. Search in Google Scholar

TANAKA, T.; MATSUMURA, R.; MIURA, T.: Influence of Varied Load Assistance with Exoskeleton-Type Robotic Device on Gait Rehabilitation in Healthy Adult Men. International Journal of Environmental Research and Public Health. 2022, Vol. 19, Issue 15. DOI: 10.3390/ijerph19159713 Search in Google Scholar

CBRE: The Czech Republic Commercial Real Estate Market Outlook: Recovery Will Continue in 2022. [online]. 2021. [accessed 2023-01-31]. Available from WWW: https://www.cbre.cz/en/about-cbre/presscenter/articles/cbre_market_outlook_2022 Search in Google Scholar

van der LINDE, R. Q.; LAMMERTSE, P.: HapticMaster - a generic force controlled robot for human interaction. Industrial Robot. 2003, Vol. 30, Issue 6, pp. 515-524. DOI: 10.1108/01439910310506783 Search in Google Scholar

WATKINS, Ch. J. C. H.; DAYAN, P.: Q-learning. Machine Learning. 1992, Vol. 8, pp. 27W292. DOI: 10.1007/BF00992698 Search in Google Scholar

WATKINS, Ch. J. C. H: Learning from Delayed Rewards. PhD Thesis. [online]. University of Cambridge, England, 1989. Available from WWW: https://www.cs.rhul.ac.uk/~chrisw/thesis.html Search in Google Scholar