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Development of Control System for Inverted Wheeled Robot on a Ship: Predicting Ship's Rolling Motion.

, and . ICETET, page 128-133. IEEE, (2015)

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Development of Control System for Inverted Wheeled Robot on a Ship: Predicting Ship's Rolling Motion., and . ICETET, page 128-133. IEEE, (2015)Influence of System Delay of Remote Control Ships on Mariners., , and . SoSE, page 224-229. IEEE, (2019)A few comments on visual system of ship handling simulator based on arriving port., , , , and . SMC, page 1890-1894. IEEE, (2008)Evaluation of ship navigator's mental workload using nasal temperature and heart rate variability., , , , and . SMC, page 1528-1533. IEEE, (2008)Development of Ship Collision Prevention Device with Augmented Reality Toolkit., , and . SMC, page 4290-4295. IEEE, (2019)Maneuvering Support System for Emergency Leaving a Pier under Tsunami Alert., and . SMC, page 1255-1260. IEEE, (2015)Availability of a Ship Propulsion System under Aging Effects., , and . SMC, page 3333-3338. IEEE, (2013)Development of sea route display system by using augmented reality., , , and . SMC, page 3403-3408. IEEE, (2017)Evaluating the mariner's workload using the bridge simulator., , , , and . IFAC HMS, page 57-60. International Federation of Automatic Control, (2007)Development of a support system to predict dragging anchor phenomenon for mariner., and . SoSE, page 185-190. IEEE, (2011)