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“An Integrated Approach to Characterize the Behavior of a Human Fingertip in Contact with a Silica Window”, IEEE Transactions on Haptics, vol. 10, no. 1, pp. 123-129, 2017 [Online]. Available: http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=7579582
, “An Integrated Approach to Characterize the Behavior of a Human Fingertip in Contact with a Silica Window”, IEEE Transactions on Haptics, vol. 10, no. 1, pp. 123-129, 2017 [Online]. Available: http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=7579582
, “A Multimodal Perception Framework for Users Emotional State Assessment in Social Robotics”, FUTURE INTERNET, vol. 9, 2017.
, “Postural Hand Synergies during Environmental Constraint Exploitation”, Fronters in Neurorobotics, 2017 [Online]. Available: https://www.frontiersin.org/articles/10.3389/fnbot.2017.00041/full
[PDF] (2.03 MB)
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“Preliminary results toward a naturally controlled multi-synergistic prosthetic hand”, in International Conference on Rehabilitation Robotics (ICORR), 2017 [Online]. Available: http://ieeexplore.ieee.org/abstract/document/8009437/
[PDF] (5.73 MB)
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“The Quest for Natural Machine Motion: An Open Platform to Fast-Prototyping Articulated Soft Robots”, IEEE Robotics and Automation Magazine , vol. 24, no. 1, pp. 48 - 56, 2017 [Online]. Available: http://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=7857692
[PDF] (2.01 MB)
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“Strain and angular sensing fabrics for human motion analysis in daily life”, in Smart textiles : fundamentals, design, and interaction, Dordrecht: Springer International Publishing, 2017, pp. 49–70.
, “Towards Minimum-Information Adaptive Controllers for Robot Manipulators”, American Control Conference, AMC2017. IEEE, May 24–26 2017, Seattle USA, 2017 [Online]. Available: https://ieeexplore.ieee.org/document/7963602
2017_amc.pdf (924.22 KB)
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“Unvealing the principal modes of human upper limb movements through functional analysis”, Frontiers in Robotics and AI, vol. 4, p. 37, 2017.
frobt-04-00037-4.pdf (11.51 MB)
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“WALK-MAN: A High-Performance Humanoid Platform for Realistic Environments”, Journal of Field Robotics, vol. 34, no. 4, pp. 1 - 34, 2017 [Online]. Available: http://onlinelibrary.wiley.com/doi/10.1002/rob.21702/epdf
[PDF] (5.74 MB)
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“Advanced grasping with the Pisa/IIT softHand”, in Robotic Grasping and Manipulation Challenge , 2018, pp. pp. 19-38.
bonilla2018_chapter_advancedgraspingwiththepisaiit.pdf (2.81 MB)
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“Approximate hybrid model predictive control for multi-contact push recovery in complex environments”, in IEEE RAS International Conference on Humanoid Robots, 2018.
humanoids2017_preprint.pdf (966.31 KB)
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“Decentralized Trajectory Tracking Control for Soft Robots Interacting with the Environment”, IEEE Transactions on Robotics (T-RO)., vol. Early Access, 2018.
[PDF] (1.37 MB)
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“DeepDynamicHand: A Deep Neural Architecture for Labeling Hand Manipulation Strategies in Video Sources Exploiting Temporal Information”, Frontiers in Neurorobotics, 2018.
arapi_et_al_2018.pdf (2.8 MB)
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“Design and proof of concept for multi degree of freedom hydrostatically coupled dielectric elastomer actuators with roto-translational kinematics for object handling”, Smart Materials and Structures, 2018.
de_acutis_2018_smart_mater._struct._27_074005.pdf (1.78 MB)
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“Design and proof of concept for multi degree of freedom hydrostatically coupled dielectric elastomer actuators with roto-translational kinematics for object handling”, Smart Materials and Structures, 2018.
de_acutis_2018_smart_mater._struct._27_074005.pdf (1.78 MB)
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“Dynamic Control of Soft Robots Interacting with the Environment”, in IEEE International Conference on Soft Robotics, 24 - 28 April 2018, Livorno, Italy, 2018 [Online]. Available: https://ieeexplore.ieee.org/abstract/document/8404895
[PDF] (1.34 MB)
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“A Novel Approach to Under-Actuated Control of Fluidic Systems”, in 2018 IEEE International Conference on Robotics and Automation (ICRA), 2018 [Online]. Available: http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=8460859&isnumber=8460178
a_novel_approach_to_under-actuated_control_of_fluidic_systems.pdf (1.75 MB)
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“A Planning and Control System for Self-Driving Racing Vehicles”, in 2018 IEEE 4th International Forum on Research and Technology for Society and Industry (RTSI), Palermo, Italy, 2018, pp. 1-6.
roboracertsi_2018.pdf (2.63 MB)
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“The softpro project: Synergy-based open-source technologies for prosthetics and rehabilitation”, in International Symposium on Wearable Robotics, 2018.
werob2018_softpro_.pdf (2.51 MB)
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“Towards Dexterous Manipulation with Augmented Adaptive Synergies: the Pisa/IIT SoftHand 2”, IEEE Transactions on Robotics, vol. Early Access, 2018.
softhand2_tro-ilovepdf-compressed.pdf (2.04 MB)
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“Underactuated robotic hand”, 15/7723682018 [Online]. Available: https://patentimages.storage.googleapis.com/c3/76/f4/3f31e20b15ad53/US20180311827A1.pdf
, “WALK-MAN Humanoid Platform”, in The DARPA Robotics Challenge Finals: Humanoid Robots To The Rescue, vol. 121, Springer, 2018, pp. 495–548.
walk-manhumanoidplatform_springer.pdf (3.5 MB)
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“Artificial hand”, 16/3022272019 [Online]. Available: https://patentimages.storage.googleapis.com/4f/2c/07/915e9723cfe164/US20190269528A1.pdf
, “Design and Assessment of Control Maps for Multi-Channel sEMG-Driven Prostheses and Supernumerary Limbs”, Frontiers in neurorobotics, vol. 13, 2019 [Online]. Available: https://www.frontiersin.org/articles/10.3389/fnbot.2019.00026/full
fnbot-13-00026_.pdf (1.12 MB)
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“Design and Assessment of Control Maps for Multi-Channel sEMG-Driven Prostheses and Supernumerary Limbs”, Frontiers in neurorobotics, vol. 13, 2019.
fnbot-13-00026_.pdf (1.12 MB)
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“Dynamic Morphological Computation Through Damping Design of Soft Continuum Robots”, Frontiers in Robotics and AI, 2019.
frobt-06-00023.pdf (4.57 MB)
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“Exact Task Execution in Highly Under-Actuated Soft Limbs: An Operational Space Based Approach”, IEEE Robotics and Automation Letters, vol. Volume: 4 , Issue: 3 , July 2019, 2019.
00_main.pdf (3.33 MB)
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“Exploiting Adaptability in Soft Feet for Sensing Contact Forces”, IEEE Robotics and Automation Letters, vol. 5, no. 2, 2019 [Online]. Available: https://ieeexplore.ieee.org/document/8894422
, “Learning From Humans How to Grasp: A Data-Driven Architecture for Autonomous Grasping With Anthropomorphic Soft Hands”, IEEE Robotics and Automation Letters, vol. 4, pp. 1533-1540, 2019.
08629968.pdf (4.01 MB)
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