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Federico Renda

19 accepted papers

2026

A Survey on Soft Robot Adaptability: Implementations, Applications, and Prospects

ICRA 2026poster

Soft robots,compared to rigid robots,possess inherent advantages,including higher degrees of freedom, compliance,and enhanced safety,which have contributed to their increasing application across various fields. Among these benefits, adaptability is particularly noteworthy. In this paper, adaptabilit…

2026

Structure-Preserving Model Order Reduction of Slender Soft Robots Via Autoencoder-Parameterized Strain

ICRA 2026poster

While soft robots offer advantages in adaptability and safe interaction, their modeling remains challenging. This letter presents a novel, data-driven approach for model order reduction of slender soft robots using autoencoder-parameterized strain within the Geometric Variable Strain (GVS) framework…

Cited by 0SourceScholar
2025

3-Axis Angular Strain Estimation With Hall Effect Sensors for Proprioception of Soft Robotic Manipulators

RA-L 2025

Slender soft robots offer significant advantages for real-life applications, particularly in areas that require delicate and adaptable interaction with complex environments. However, their effectiveness and safety can be greatly limited in the absence of sensing capabilities. Hall effect sensors, kn

Cited by 3SourceScholar
2025

Duality of the Existing Geometric Variable Strain Models for the Dynamic Modeling of Continuum Robots

RA-L 2025

The Cosserat rod theory has become a gold standard for modeling the statics and dynamics of serial and parallel continuum robots. Recently, a weak form of these Cosserat rod models called the geometric variable strain model has been derived where the robot deformations are projected on finite-dimens

Cited by 1SourceScholar
2025

Trident: A Multi-Functional Soft Appendage for Underwater Locomotion and Grasping

RA-L 2025

Soft underwater robots, designed to mimic the movement and adaptability of aquatic animals, use flexible materials like silicone and rubber to change shape and navigate complex environments. These robots can squeeze through narrow spaces and avoid obstacles, making them ideal for exploring underwate

Cited by 2SourceScholar
2024

Dynamics and Control of Soft Robots With Implicit Strain Parametrization

RA-L 2024

Efficient modeling of soft robots for design optimization and control is an active area of research. When representing soft robots as an assembly of rods and rigid bodies, strain-based parametrization has proved to be able to reduce the required number of degrees of freedom drastically. However, thi

Cited by 22SourceScholar
2024

Predicting Interaction Shape of Soft Continuum Robots using Deep Visual Models

IROS 2024poster

Soft continuum robots, characterized by their inherent compliance and dexterity, are increasingly pivotal in applications requiring delicate interactions with the environment such as the medical field. Despite their advantages, challenges persist in accurately modeling and controlling their shape du…

Cited by 3SourceScholar
2024

Strain-based Modeling of Rod-driven Soft Continuum Robots with Co-located Embedded Sensors

IROS 2024poster

Rod-driven soft robots (RDSR) with a well-balanced performance in terms of perception, precision, and intelligence have a great potential for application. Mathematical description and predicted sensing of deformable soft bodies are crucial to achieve controllable and intelligent behaviors of these r…

Cited by 0SourceScholar
2022

Geometrically-Exact Inverse Kinematic Control of Soft Manipulators With General Threadlike Actuators' Routing

RA-L 2022

The inverse kinematic control of soft robots appears as an open challenge that has been the subject of a number of letters presented in the last decade. Some solutions have been provided based on specific assumptions on the robot’s shape or the actuation mechanism. Other more generic approaches are

Cited by 33SourceScholar
2022

Model-Based Design Optimization of Underwater Flagellate Propellers

RA-L 2022

A new family of soft underwater propellers has been recently presented. Mimicking the swimming strategy of bacterial flagella, these modules passively adapt to the surrounding fluid to provide a propulsive thrust. In the present paper we aim at further investigating the behaviour of this device and

Cited by 4SourceScholar
2021

Coupling Numerical Deformable Models in Global and Reduced Coordinates for the Simulation of the Direct and the Inverse Kinematics of Soft Robots

RA-L 2021

In this letter, we propose a method to combine the Finite Element Method (FEM) with Discrete Cosserat Modeling (DCM) to capture the mechanics and the actuation of soft robots. The FEM is used to simulate the non-linear behavior of the volume of the soft structure while the cable/rod used for the act

Cited by 25SourceScholar
2020

A Geometric Variable-Strain Approach for Static Modeling of Soft Manipulators With Tendon and Fluidic Actuation

RA-L 2020

We propose a novel variable-strain parametrization for soft manipulators, which discretizes the continuous Cosserat rod model onto a finite set of strain basis functions. This approach generalizes the recently proposed piecewise-constant strain method to the case of non-constant strain sections. As

Cited by 118SourceScholar
2019

Design, Modeling and Testing of a Flagellum-inspired Soft Underwater Propeller Exploiting Passive Elasticity

IROS 2019poster

Flagellated micro-organism are regarded as excellent swimmers within their size scales. This, along with the simplicity of their actuation and the richness of their dynamics makes them a valuable source of inspiration to design continuum, self-propelled underwater robots. Here we introduce a soft, f…

Cited by 5SourceScholar
2018

A Geometric and Unified Approach for Modeling Soft-Rigid Multi-Body Systems with Lumped and Distributed Degrees of Freedom

ICRA 2018poster

In this paper, a geometric and unified model of soft-rigid multi-body systems is presented, based on a discrete Cosserat approach of the soft-body dynamics. The model is in fact a generalization to soft and hybrid systems of the geometric theory of rigid robotics characterized by the exponential map…

Cited by 54SourceScholar
2018

Modeling and Prototyping of an Underactuated Gripper Exploiting Joint Compliance and Modularity

RA-L 2018

In this study, we present an efficient mathematical representation of soft robotic fingers based on screw theory. Then, we show how the model and its main properties can be exploited in the design phase, and we present an application for an underactuated tendon-driven gripper with a modular structur

Cited by 44SourceScholar
2016

Discrete Cosserat approach for soft robot dynamics: A new piece-wise constant strain model with torsion and shears

IROS 2016poster

Modeling and control of soft robots is an up-to-date and exciting area of research which has been tackled with complementary approaches so far. In this paper, we modify the existing continuum Cosserat approach optimizing it for soft robot arms which can be discretized in a finite number of sections…

Cited by 122SourceScholar
2015

Locomotion and elastodynamics model of an underwater shell-like soft robot

ICRA 2015poster

This paper reports on the development and validation of the elastodynamics model of an innovative underwater soft-bodied robot inspired by cephalopods. The vehicle, for which the model is devised, is propelled by a discontinuous activation routine which entails the collapse of an elastic shell via c…

Cited by 25SourceScholar