Home /Research /Mobile beacon control algorithm that ensures observability in single range navigation**This work is supported by the European Commission under the FP7–ICT project ”CADDY – Cognitive Autonomous Diving Buddy” (Grant Agreement No. 611373) and ARCHROV project (DPI2014-57746-C3-3-R). Joint results were obtained as a result of staff exchange within H2020–TWINNING project ”EXCELLABUST - Excelling LABUST in Marine Robotics” (Grant Agreement No. 691980). Filip Mandic is financed by the Croatian Science F
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Mobile beacon control algorithm that ensures observability in single range navigation**This work is supported by the European Commission under the FP7–ICT project ”CADDY – Cognitive Autonomous Diving Buddy” (Grant Agreement No. 611373) and ARCHROV project (DPI2014-57746-C3-3-R). Joint results were obtained as a result of staff exchange within H2020–TWINNING project ”EXCELLABUST - Excelling LABUST in Marine Robotics” (Grant Agreement No. 691980). Filip Mandic is financed by the Croatian Science F

Filip Mandić, Nikola Mišković, Narcís Palomeras, Marc Carreras, Guillem Vallicrosa

Year
2016
Citations
6

Abstract

Mobile beacon vehicles are used as navigational aid for autonomous underwater vehicles when performing navigation using single range measurements. They remove the constraints imposed on the underwater vehicle trajectory by executing trajectory that provides persistent range measurements. In this paper, control algorithm for beacon vehicle which ensures observability of the underwater vehicle’s navigation filter is presented. It is characterized by small communication overhead, low computational complexity and it is deployable on both fully actuated and underactuated vehicles. The algorithm was tested in real-life environment and the acquired experimental results show that despite the presence of uncertainties and communication delays, the algorithm accomplishes its task.

Keywords

European commissionObservabilityWork (physics)Range (aeronautics)CommissionControl (management)Computer scienceEngineeringAeronauticsArtificial intelligence

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