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Gabriele Buondonno

7 accepted papers

2017

Actuator design of compliant walkers via optimal control

IROS 2017poster

We present an optimization framework for the design and analysis of underactuated biped walkers, characterized by passive or actuated joints with rigid or non-negligible elastic actuation/transmission elements. The framework is based on optimal control, dealing with geometric constraints and various…

Cited by 18SourceScholar
2017

Dynamic decentralized control for protocentric aerial manipulators

ICRA 2017poster

We present a control methodology for underactuated aerial manipulators that is both easy to implement on real systems and able to achieve highly dynamic behaviors. The method is composed by two parts: i) a nominal input/state trajectory generator that takes into account the full-body dynamics of the…

Cited by 59SourceScholar
2016

Combining real and virtual sensors for measuring interaction forces and moments acting on a robot

IROS 2016poster

We address the problem of estimating an external wrench acting along the structure of a robot manipulator, together with the contact position where the external force is being applied. For this, we consider the combined use of a force/torque sensor mounted at the robot base and of a model-based virt…

Cited by 45SourceScholar
2016

Differential flatness and control of protocentric aerial manipulators with any number of arms and mixed rigid-/elastic-joints

IROS 2016poster

In this paper we introduce a particularly relevant class of aerial manipulators that we name protocentric. These robots are formed by an underactuated aerial vehicle, a planar-Vertical Take-Off and Landing (PVTOL), equipped with any number of different parallel manipulator arms with the only propert…

Cited by 63SourceScholar
2016

Efficient Computation of Inverse Dynamics and Feedback Linearization for VSA-Based Robots

RA-L 2016

We develop a recursive numerical algorithm to compute the inverse dynamics of robot manipulators with an arbitrary number of joints, driven by variable stiffness actuation (VSA) of the antagonistic type. The algorithm is based on Newton-Euler dynamic equations, generalized up to the fourth different

Cited by 53SourceScholar
2015

A model predictive control approach for the Partner Ballroom Dance Robot

ICRA 2015poster

A model predictive controller is developed for following the position of a human dancer in robot ballroom dancing. The control design uses a dynamic model of a dancer, based on a variant of the so-called 3D Linear Inverted Pendulum Mode that includes also the swing foot. This model serves as a basis…

Cited by 7SourceScholar
2015

A recursive Newton-Euler algorithm for robots with elastic joints and its application to control

IROS 2015poster

We consider the problem of computing the inverse dynamics of a serial robot manipulator with N elastic joints in a recursive numerical way. The solution algorithm is a generalized version of the standard Newton-Euler approach, running still with linear complexity O(N) but requiring to set up recursi…

Cited by 54SourceScholar