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Конечная издательская версия
Software suites for ship simulations are typically used for statistical studies of ship dynamics, but also as a simulator for training ship crew in dangerous situations. One problem that arises during training is speeding-up a part of the session which does not involve actions from the crew. The aim of the study reported here is to accelerate solution of ship motion equations using general purpose computations on GPU. These equations describe dynamics of ship manoeuvring in wavy sea surface, and are central to the simulator programme. The equations are solved numerically via Runge-Kutta-Fehlberg method. Due to high number of floating point operations, computation on GPU achieves considerable speed-up over CPU. High performance solution allows to shorten training sessions and make them more efficient, but also beneficial for statistical studies as it reduces simulation time.
Язык оригинала | английский |
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Название основной публикации | Selected Papers of the 8th International Conference ""Distributed Computing and Grid-Technologies in Science and Education"", GRID 2018 |
Страницы | 410-414 |
Число страниц | 5 |
Состояние | Опубликовано - 2018 |
Событие | 8th International Conference "Distributed Computing and Grid-Technologies in Science and Education", GRID 2018 - Dubna, Российская Федерация Продолжительность: 10 сен 2018 → 14 сен 2018 |
Название | CEUR Workshop Proceedings |
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Издатель | RWTH Aahen University |
Том | 2267 |
ISSN (печатное издание) | 1613-0073 |
конференция | 8th International Conference "Distributed Computing and Grid-Technologies in Science and Education", GRID 2018 |
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Страна/Tерритория | Российская Федерация |
Город | Dubna |
Период | 10/09/18 → 14/09/18 |
ID: 36504092