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We present a new model for optimal scheduling of complex technical objects (CTO). CTO is a networked controlled system that is described through differential equations based on a dynamic interpretation of the job execution. The problem is represented as a special case of the job shop scheduling problem with dynamically distributed jobs. The approach is based on a natural dynamic decomposition of the problem and its solution with the help of a modified form of continuous maximum principle blended with combinatorial optimization.
Язык оригинала | английский |
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Название основной публикации | Cybernetics and Mathematics Applications in Intelligent Systems - Proceedings of the 6th Computer Science On-line Conference, CSOC 2017 |
Издатель | Springer Nature |
Страницы | 172-179 |
Число страниц | 8 |
Том | 574 |
ISBN (печатное издание) | 9783319572635 |
DOI | |
Состояние | Опубликовано - 2017 |
Событие | 6th Computer Science On-line Conference, CSOC 2017 - Prague, Чехия Продолжительность: 25 апр 2017 → 28 апр 2017 |
Название | Advances in Intelligent Systems and Computing |
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Том | 574 |
ISSN (печатное издание) | 2194-5357 |
конференция | 6th Computer Science On-line Conference, CSOC 2017 |
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Страна/Tерритория | Чехия |
Город | Prague |
Период | 25/04/17 → 28/04/17 |
ID: 9177408