References (18)
Al-Aifari et al.. (2013). "Continuous procrustes distance between two surfaces". Communications on Pure and Applied Mathematics. vol. 66, pp. 934–964.
Aranda et al.. (2020). "Monocular Visual Shape Tracking and Servoing for Isometrically Deforming Objects". IEEE/RSJ International Conference on Intelligent Robots and Systems.
Berenson. (2013). "Manipulation of deformable objects without modeling and simulating deformation". IEEE/RSJ International Conference on Intelligent Robots and Systems.
Bronstein et al.. (2007). "Rock, paper, and scissors: extrinsic vs. intrinsic similarity of non-rigid shapes". IEEE 11th International Conference on Computer Vision.
Cuiral-Zueco and López-Nicolás. (2021). "Multi-scale Laplacian-based {FMM} for shape control". IEEE/RSJ International Conference on Intelligent Robots and Systems.
Herguedas et al.. (2019). "Survey on multi-robot manipulation of deformable objects". 24th IEEE International Conference on Emerging Technologies and Factory Automation.
Hu et al.. (2018). "Three-dimensional deformable object manipulation using fast online {Gaussian} process regression". IEEE Robotics and Automation Letters. vol. 3, pp. 979–986.
Jermyn et al.. (2012). "Elastic shape matching of parameterized surfaces using square root normal fields". European conference on computer vision.
Jiménez. (2012). "Survey on model-based manipulation planning of deformable objects". Robotics and computer-integrated manufacturing. vol. 28, pp. 154–163.
López-Nicolás et al.. (2020). "Simultaneous shape control and transport with multiple robots". IEEE International Conference on Robotic Computing.
Navarro-Alarcón et al.. (2013). "Model-Free Visually Servoed Deformation Control of Elastic Objects by Robot Manipulators". IEEE Transactions on Robotics. vol. 29, pp. 1457-1468. [DOI]
Parseval. (1806). "Mémoire sur les séries et sur l’intégration complète d’une équation aux différences partielles linéaires du second ordre, à coefficients constants". Mém. prés. par divers savants, Acad. des Sciences, Paris,(1). vol. 1, pp. 638–648.
Ruan et al.. (2018). "Accounting for directional rigidity and constraints in control for manipulation of deformable objects without physical simulation". IEEE/RSJ International Conference on Intelligent Robots and Systems.
Shetab-Bushehri et al.. (2022). "As-Rigid-As-Possible Shape Servoing". IEEE Robotics and Automation Letters. vol. 7, pp. 3898-3905.
Süberkrüb et al.. (2022). "Feel the Tension: Manipulation of Deformable Linear Objects in Environments with Fixtures using Force Information". IEEE/RSJ International Conference on Intelligent Robots and Systems.
Zhu et al.. (2021). "Vision-based manipulation of deformable and rigid objects using subspace projections of {2-D} contours". Robotics and Autonomous Systems. vol. 142, pp. 103798.