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Matthew Giamou

15 accepted papers

2026

Certifiable Alignment of GNSS and Local Frames via Lagrangian Duality

RA-L 2026

Estimating the absolute orientation of a local system relative to a global navigation satellite system (GNSS) reference often suffers from local minima and high dependency on satellite availability. Existing methods for this alignment task rely on abundant satellites unavailable in GNSS-degraded env

Cited by 0SourcecodeScholar
2026

Generative Graphical Inverse Kinematics (Abstract Reprint)

AAAI 2026technical

Quickly and reliably finding accurate inverse kinematics (IK) solutions remains a challenging problem for many robot manipulators. Existing numerical solvers are broadly applicable but typically only produce a single solution and rely on local search techniques to minimize nonconvex objective functi

Cited by 0SourcePDFScholar
2023

CIDGIKc: Distance-Geometric Inverse Kinematics for Continuum Robots

RA-L 2023

The small size, high dexterity, and intrinsic compliance of continuum robots (CRs) make them well suited for constrained environments. Solving the inverse kinematics (IK), that is finding robot joint configurations that satisfy desired position or pose queries, is a fundamental challenge in motion p

Cited by 8SourceScholar
2023

The Sum of Its Parts: Visual Part Segmentation for Inertial Parameter Identification of Manipulated Objects

ICRA 2023poster

To operate safely and efficiently alongside human workers, collaborative robots (cobots) require the ability to quickly understand the dynamics of manipulated objects. However, traditional methods for estimating the full set of inertial parameters rely on motions that are necessarily fast and unsafe…

Cited by 6SourcecodeScholar
2022

Convex Iteration for Distance-Geometric Inverse Kinematics

RA-L 2022

Inverse kinematics (IK) is the problem of finding robot joint configurations that satisfy constraints on the position or pose of one or more end-effectors. For robots with redundant degrees of freedom, there is often an infinite, nonconvex set of solutions. The IK problem is further complicated when

Cited by 31SourcecodeScholar
2022

Fast Object Inertial Parameter Identification for Collaborative Robots

ICRA 2022poster

Collaborative robots (cobots) are machines designed to work safely alongside people in human-centric environments. Providing cobots with the ability to quickly infer the inertial parameters of manipulated objects will improve their flexibility and enable greater usage in manufacturing and other area…

Cited by 12SourcecodeScholar
2020

A Smooth Representation of Belief over SO(3) for Deep Rotation Learning with Uncertainty

RSS 2020poster

Accurate rotation estimation is at the heart of robot perception tasks such as visual odometry and object pose estimation. Deep neural networks have provided a new way to perform these tasks, and the choice of rotation representation is an important part of network design. In this work, we present a…

2020

Inverse Kinematics for Serial Kinematic Chains via Sum of Squares Optimization

ICRA 2020poster

Inverse kinematics is a fundamental challenge for articulated robots: fast and accurate algorithms are needed for translating task-related workspace constraints and goals into feasible joint configurations. In general, inverse kinematics for serial kinematic chains is a difficult nonlinear problem,…

Cited by 23SourcecodeScholar
2019

Certifiably Globally Optimal Extrinsic Calibration From Per-Sensor Egomotion

RA-L 2019

We present a certifiably globally optimal algorithm for determining the extrinsic calibration between two sensors that are capable of producing independent egomotion estimates. This problem has been previously solved using a variety of techniques, including local optimization approaches that have no

Cited by 31SourcecodeScholar
2018

Near-Optimal Budgeted Data Exchange for Distributed Loop Closure Detection

RSS 2018poster

Inter-robot loop closure detection is a core problem in collaborative SLAM (CSLAM). Establishing inter-robot loop closures is a resource-demanding process, during which robots must consume a substantial amount of mission-critical resources (e.g., battery and bandwidth) to exchange sensory data. Howe…

Cited by 27SourcePDFScholar
2018

Talk Resource-Efficiently to Me: Optimal Communication Planning for Distributed Loop Closure Detection

ICRA 2018poster

Due to the distributed nature of cooperative simultaneous localization and mapping (CSLAM), detecting inter-robot loop closures necessitates sharing sensory data with other robots. A naïve approach to data sharing can easily lead to a waste of mission-critical resources. This paper investigates the…

Cited by 47SourceScholar
2017

Stable laser interest point selection for place recognition in a forest

IROS 2017poster

Place recognition is an essential part of robot localization and mapping problems. Using lower data-rate sensors like 2D scanning laser rangefinders enables the robots to use less memory and computation in building maps. However, place recognition by a vehicle with 6-DOF dynamics like a quadrotor in…

Cited by 4SourceScholar
2015

PROBE: Predictive robust estimation for visual-inertial navigation

IROS 2015poster

Navigation in unknown, chaotic environments continues to present a significant challenge for the robotics community. Lighting changes, self-similar textures, motion blur, and moving objects are all considerable stumbling blocks for state-of-the-art vision-based navigation algorithms. In this paper w…

Cited by 27SourceScholar