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Sabrina M. Neuman

6 accepted papers

2026

RoboPrec: Enabling Reliable Embedded Computing for Robotics by Providing Accuracy Guarantees Across Mixed-Precision Datatypes

RA-L 2026

Mobile robots demand power efficiency as well as accuracy and high performance in their computations. Embedded microcontrollers and FPGAs can consume as much as <inline-formula xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"><tex-math notation="LaTeX">$1000\

Cited by 0SourceScholar
2024

RobotPerf: An Open-Source, Vendor-Agnostic, Benchmarking Suite for Evaluating Robotics Computing System Performance

ICRA 2024poster

We introduce RobotPerf, a vendor-agnostic bench-marking suite designed to evaluate robotics computing performance across a diverse range of hardware platforms using ROS 2 as its common baseline. The suite encompasses ROS 2 packages covering the full robotics pipeline and integrates two distinct benc…

Cited by 16SourcecodeScholar
2022

GRiD: GPU-Accelerated Rigid Body Dynamics with Analytical Gradients

ICRA 2022poster

We introduce GRiD: a GPU-accelerated library for computing rigid body dynamics with analytical gradients. GRiD was designed to accelerate the nonlinear trajectory opti-mization subproblem used in state-of-the-art robotic planning, control, and machine learning, which requires tens to hundreds of nat…

Cited by 28SourceScholar
2022

RobotCore: An Open Architecture for Hardware Acceleration in ROS 2

IROS 2022poster

Hardware acceleration can revolutionize robotics, enabling new applications by speeding up robot response times while remaining power-efficient. However, the diversity of acceleration options makes it difficult for roboticists to easily deploy accelerated systems without expertise in each specific h…

Cited by 22SourceScholar
2021

Accelerating Robot Dynamics Gradients on a CPU, GPU, and FPGA

RA-L 2021

Computing the gradient of rigid body dynamics is a central operation in many state-of-the-art planning and control algorithms in robotics. Parallel computing platforms such as GPUs and FPGAs can offer performance gains for algorithms with hardware-compatible computational structures. In this letter,

Cited by 38SourceScholar
2019

Benchmarking and Workload Analysis of Robot Dynamics Algorithms

IROS 2019poster

Rigid body dynamics calculations are needed for many tasks in robotics, including online control. While there currently exist several competing software implementations that are sufficient for use in traditional control approaches, emerging sophisticated motion control techniques such as nonlinear m…

Cited by 17SourceScholar