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dc.contributor.authorToohey, Lachlan
dc.contributor.authorPizarro, Oscar
dc.contributor.authorWilliams, Stefan Bernard
dc.date.accessioned2020-11-05
dc.date.available2020-11-05
dc.date.issued2018-01-01en_AU
dc.identifier.urihttps://hdl.handle.net/2123/23728
dc.description.abstractHandling loop closures and intervehicle observations in cooperative robotic scenarios remains a challenging problem due to data consistency, bandwidth limitations and increased computation requirements. This paper develops a general cooperative localisation and single vehicle Visual SLAM framework that includes direct intervehicle observations and pose to pose loop closures on each vehicle with states shared as required. This fuses single vehicle SLAM with cooperative localisation and avoids data association of map data across limited communication networks. The base problem is developed as a factor graph with each vehicle solving local subgraphs that are split based on intervehicle observations. We modify the order of variable elimination in subgraphs through manipulation of the square-root of the Information matrix to extract updates that include the historic states involved in the loop closures and do not require transmission of other states not involved in the measurement or retransmission of previously shared states. We demonstrate the effect on localisation accuracy and bandwidth using data captured from a set of five robots observing each other and landmarks compared to both single vehicle SLAM, pure cooperative localisation and a centralised solution.en_AU
dc.language.isoenen_AU
dc.publisherIEEEen_AU
dc.relation.ispartof2018 IEEE International Conference on Robotics and Automation (ICRA)en_AU
dc.rightsCopyright All Rights Reserveden_AU
dc.subjectSimultaneous localization and mappingen_AU
dc.subjectBandwidthen_AU
dc.subjectJacobian matricesen_AU
dc.subjectVisualizationen_AU
dc.subjectMessage systemsen_AU
dc.titleBounding Drift in Cooperative Localisation Through the Sharing of Local Loop Closuresen_AU
dc.typeArticleen_AU
dc.subject.asrc0801 Artificial Intelligence and Image Processingen_AU
dc.identifier.doi10.1109/ICRA.2018.8460820
dc.relation.arcLP150101135
dc.relation.arcFT110100511
usyd.facultySeS faculties schools::Faculty of Engineering::School of Aerospace Mechanical and Mechatronic Engineeringen_AU
usyd.departmentAustralian Centre for Field Roboticsen_AU
usyd.citation.spage981en_AU
usyd.citation.epage987en_AU
workflow.metadata.onlyNoen_AU


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