{"id":null,"code":"KTEK0069","name":{"valueFi":"Optimisation Driven Design","valueEn":"Optimisation Driven Design","valueSv":"Optimisation Driven Design"},"credits":5.0,"minCredits":5,"maxCredits":5,"tags":[],"createdAt":1790534323743,"contentList":[{"title":{"valueFi":"Osaamistavoitteet","valueEn":"Learning outcomes","valueSv":""},"content":{"valueFi":"After taking this course, the students will be able to:\r\n- use mathematical optimisation techniques alongside FEA to reach an optimum design.\r\n- use commercial mathematical optimisation software\r\n- setup and execute chained simulation process driven by optimisation algorithm\r\n- choose an appropriate DoE technique for structured and efficient design space exploration\r\n- setup multi-objective optimisation problem","valueEn":"After taking this course, the students will be able to:\r\n- use mathematical optimisation techniques alongside FEA to reach an optimum design.\r\n- use commercial mathematical optimisation software\r\n- setup and execute chained simulation process driven by optimisation algorithm\r\n- choose an appropriate DoE technique for structured and efficient design space exploration\r\n- setup multi-objective optimisation problem","valueSv":"After taking this course, the students will be able to:\r\n- use mathematical optimisation techniques alongside FEA to reach an optimum design.\r\n- use commercial mathematical optimisation software\r\n- setup and execute chained simulation process driven by optimisation algorithm\r\n- choose an appropriate DoE technique for structured and efficient design space exploration\r\n- setup multi-objective optimisation problem"}},{"title":{"valueFi":"Sisältö","valueEn":"Content","valueSv":""},"content":{"valueFi":"The contents of the course include:\r\n- Introduction to mathematical programming methods for designing optimised engineering products.\r\n- Design space exploration using design of experiments (DoE) techniques.\r\n- Surrogate based design optimisation and successive response surface optimisation.\r\n- The method of steepest descent\r\n- Linear programming, Quadratic programming and the Simplex method\r\n- Multi-objective optimisation","valueEn":"The contents of the course include:\r\n- Introduction to mathematical programming methods for designing optimised engineering products.\r\n- Design space exploration using design of experiments (DoE) techniques.\r\n- Surrogate based design optimisation and successive response surface optimisation.\r\n- The method of steepest descent\r\n- Linear programming, Quadratic programming and the Simplex method\r\n- Multi-objective optimisation","valueSv":"The contents of the course include:\r\n- Introduction to mathematical programming methods for designing optimised engineering products.\r\n- Design space exploration using design of experiments (DoE) techniques.\r\n- Surrogate based design optimisation and successive response surface optimisation.\r\n- The method of steepest descent\r\n- Linear programming, Quadratic programming and the Simplex method\r\n- Multi-objective optimisation"}},{"title":{"valueFi":"Suoritustavat","valueEn":"Study methods","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Toteutustavat","valueEn":"Course unit methods","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Oppimateriaalit","valueEn":"Learning material","valueSv":""},"content":{"valueFi":"Material distributed during class lectures","valueEn":"Material distributed during class lectures","valueSv":""}},{"title":{"valueFi":"Lisätiedot","valueEn":"Further information","valueSv":""},"content":{"valueFi":"Not organised in academic year 2024-2025 or autumn 2025. The next date for the course is not yet known.","valueEn":"Not organised in academic year 2024-2025 or autumn 2025. The next date for the course is not yet known.","valueSv":""}},{"title":{"valueFi":"Kurssikirjallisuus","valueEn":"Literature","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Esitietovaatimukset","valueEn":"Qualifications","valueSv":""},"content":{"valueFi":"It is recommended that the student knows the basic principles of the finite element method and is able to perform analysis of structures under static loading.","valueEn":"It is recommended that the student knows the basic principles of the finite element method and is able to perform analysis of structures under static loading.","valueSv":""}},{"title":{"valueFi":"Arviointiasteikko","valueEn":"Assessment scale","valueSv":""},"content":{"valueFi":"0-5","valueEn":"0-5","valueSv":"0-5"}},{"title":{"valueFi":"Arviointikriteerit","valueEn":"Assessment criteria","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 2","valueEn":"Assessment criteria 2","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 3","valueEn":"Assessment criteria 3","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Arviointikriteerit 4","valueEn":"Assessment criteria 4","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Kielet","valueEn":"Languages","valueSv":""},"content":{"valueFi":"englanti","valueEn":"English","valueSv":"engelska"}},{"title":{"valueFi":"Taso","valueEn":"Level","valueSv":""},"content":{"valueFi":"Syventävät opinnot","valueEn":"Advanced Studies","valueSv":""}},{"title":{"valueFi":"Oppiaine","valueEn":"Subject","valueSv":""},"content":{"valueFi":"Konetekniikka","valueEn":"Mechanical Engineering","valueSv":"Mechanical Engineering"}},{"title":{"valueFi":"Vastuuhenkilöt","valueEn":"Person in charge","valueSv":""},"content":{"valueFi":"To be announced","valueEn":"To be announced","valueSv":"To be announced"}},{"title":{"valueFi":"Luokittelu","valueEn":"Classification","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Linkit","valueEn":"Links","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}}]}