A study on floating unit motion control strategy
Anh-Minh D. Tran, Jung-In Yun, Kwang-Hwan Choi, Chang-Hyo Son, Young‐Bok Kim
Abstract
Anh-Minh D. Tran, Jung-In Yun, Kwang-Hwan Choi, Chang-Hyo Son, Young‐Bok Kim
Abstract
Energy companies today increasingly look offshore and head towards deeper waters to assist fueling modern society. Semisubmersibles and drill-ships are often used to prospect and produce in remote environments. The oil rigs should be essentially kept on target. In this paper, the authors solve the problem of designing a Position Mooring (PM) system for barge ship. A mathematical model of a system describing the interaction between an unactuated barge ship and mooring system is presented. A PID control scheme is implemented to achieve PM for the vessel by changing the tension of the mooring ropes. Additionally, a scale model ship is built to test the proposed strategy. Hydrodynamic coefficients of the low speed model for PM ship are identified by suitable experiments.
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Energy companies today increasingly look offshore and head towards deeper waters to assist fueling modern society. Semisubmersibles and drill-ships are often used to prospect and produce in remote environments. The oil rigs should be essentially kept on target. In this paper, the authors solve the problem of designing a Position Mooring (PM) system for barge ship. A mathematical model of a system describing the interaction between an unactuated barge ship and mooring system is presented. A PID control scheme is implemented to achieve PM for the vessel by changing the tension of the mooring ropes. Additionally, a scale model ship is built to test the proposed strategy. Hydrodynamic coefficients of the low speed model for PM ship are identified by suitable experiments.
Key concepts: BARGE, Marine engineering, Mooring, Propulsion, Engineering, Position (finance), Submarine pipeline, Computer science