Safety of Navigation During Dynamic Positioning on Mobile Water Transport Objects
Rostyslav Gabruk, Mykola Tsymbal
Abstract
Rostyslav Gabruk, Mykola Tsymbal
Abstract
This paper presents an innovation methodology for quantity assessment the safety of dynamic positioning in locally confined area of technological work performance under nonlinear dynamic disturbances of environmental factors. The methodology is based on new integrated paradigm of prediction coordinated components interactions, which form dynamic positioning system. Proposed methodology implementation effect is based on the analysis of complex models that form the knowledge base. The comprehensive reserve of controllable thruster?s reactions was adopted as quantitative characteristic of dynamic positioning safety.
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This paper presents an innovation methodology for quantity assessment the safety of dynamic positioning in locally confined area of technological work performance under nonlinear dynamic disturbances of environmental factors. The methodology is based on new integrated paradigm of prediction coordinated components interactions, which form dynamic positioning system. Proposed methodology implementation effect is based on the analysis of complex models that form the knowledge base. The comprehensive reserve of controllable thruster?s reactions was adopted as quantitative characteristic of dynamic positioning safety.
Key concepts: Dynamic positioning, Computer science, Work (physics), Systems engineering, Real-time computing, Engineering, Marine engineering, Mechanical engineering