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David M. Lane

5 accepted papers

2019

Timed-Elastic Bands for Manipulation Motion Planning

RA-L 2019

Motion planning is one of the main problems studied in the field of robotics. However, it is still challenging for the state-of-the-art methods to handle multiple conditions that allow better paths to be found. For example, considering joint limits, path smoothness and a mixture of Cartesian and joi

Cited by 23SourceScholar
2018

An Evolutionary Algorithm for Online, Resource-Constrained, Multivehicle Sensing Mission Planning

RA-L 2018

Mobile robotic platforms are an indispensable tool for various scientific and industrial applications. Robots are used to undertake missions whose execution is constrained by various factors, such as the allocated time or their remaining energy. Existing solutions for resource constrained multirobot

Cited by 24SourceScholar
2018

DCOP: Dubins Correlated Orienteering Problem Optimizing Sensing Missions of a Nonholonomic Vehicle Under Budget Constraints

RA-L 2018

Advances in robotics have allowed mobile robotic platforms to be deployed in an increased number of field operations. The dynamic nature of the operating environment can constrain the robotic mission execution in terms of required time or energy. Current solutions for providing optimal and optimized

Cited by 16SourceScholar
2017

Towards an online heuristic method for energy-constrained underwater sensing mission planning

IROS 2017poster

Autonomous Underwater Vehicles (AUVs) have been widely used in scientific or industrial operations over the past years. AUV missions require the vehicle to perform a set of actions autonomously and return to the operators. These missions are currently mostly planned offline by the human operators. E…

Cited by 4SourceScholar
2016

Online fault detection and model adaptation for Underwater Vehicles in the case of thruster failures

ICRA 2016

Autonomous Underwater Vehicles (AUVs) are required to carry out a mission with minimum supervision. Often, the AUV's hardware integrity is compromised amidst operation; thus, jeopardising the mission's success. Thruster failures, for example, may affect AUVs locomotion. Following a thruster failure,

Cited by 25SourceScholar