{"id":null,"code":"KTEK0036","name":{"valueFi":"Smart Systems Engineering","valueEn":"Smart Systems Engineering","valueSv":"Smart Systems Engineering"},"credits":5.0,"minCredits":5,"maxCredits":5,"tags":[{"code":"KEKE","title":{"valueFi":"Kestävä kehitys","valueEn":"Sustainable development","valueSv":"Sustainable development"}},{"code":"YRI1","title":{"valueFi":"Yrittäjyysosaaminen","valueEn":"Entrepreneurship skills","valueSv":"-"}}],"createdAt":1790537310366,"contentList":[{"title":{"valueFi":"Osaamistavoitteet","valueEn":"Learning outcomes","valueSv":""},"content":{"valueFi":"After this course student will be able to apply relevant methods, processes and tools of systems engineering in the field of smart systems. Also, student will be able to explain and apply lifecycle approach, related standards, and management of systems engineering. As specific to Smart Systems, student will be able to recognize and apply various fields of engineering/science related to designing and commercializing a Smart system product.","valueEn":"After this course student will be able to apply relevant methods, processes and tools of systems engineering in the field of smart systems. Also, student will be able to explain and apply lifecycle approach, related standards, and management of systems engineering. As specific to Smart Systems, student will be able to recognize and apply various fields of engineering/science related to designing and commercializing a Smart system product.","valueSv":"After this course student will be able to apply relevant methods, processes and tools of systems engineering in the field of smart systems. Also, student will be able to explain and apply lifecycle approach, related standards, and management of systems engineering. As specific to Smart Systems, student will be able to recognize and apply various fields of engineering/science related to designing and commercializing a Smart system product."}},{"title":{"valueFi":"Sisältö","valueEn":"Content","valueSv":""},"content":{"valueFi":"Smart Systems engineering overview, fundamentals of systems, engineered smart systems, lifecycle approach, design process: stakeholders - requirements – concept development – concept selection – optimization – interfaces and system integration – verification and validation, systems architecture, modelling languages, lifecycle management, systems engineering management, standards. Electrical noise, RFI and EMC issues of a smart systems, Smart system safety and security, Power subsystems, Thermal/moisture management, System stability and control, Efficiency and sustainability of systems, System Autonomy, Mechatronics aspect of a Smart Systems. Also includes other latest technical topics.","valueEn":"Smart Systems engineering overview, fundamentals of systems, engineered smart systems, lifecycle approach, design process: stakeholders - requirements – concept development – concept selection – optimization – interfaces and system integration – verification and validation, systems architecture, modelling languages, lifecycle management, systems engineering management, standards. Electrical noise, RFI and EMC issues of a smart systems, Smart system safety and security, Power subsystems, Thermal/moisture management, System stability and control, Efficiency and sustainability of systems, System Autonomy, Mechatronics aspect of a Smart Systems. Also includes other latest technical topics.","valueSv":"Smart Systems engineering overview, fundamentals of systems, engineered smart systems, lifecycle approach, design process: stakeholders - requirements – concept development – concept selection – optimization – interfaces and system integration – verification and validation, systems architecture, modelling languages, lifecycle management, systems engineering management, standards. Electrical noise, RFI and EMC issues of a smart systems, Smart system safety and security, Power subsystems, Thermal/moisture management, System stability and control, Efficiency and sustainability of systems, System Autonomy, Mechatronics aspect of a Smart Systems. Also includes other latest technical topics."}},{"title":{"valueFi":"Suoritustavat","valueEn":"Study methods","valueSv":""},"content":{"valueFi":"Exam, project report","valueEn":"Exam, project report","valueSv":""}},{"title":{"valueFi":"Toteutustavat","valueEn":"Course unit methods","valueSv":""},"content":{"valueFi":"Lectures, tasks, online materials, project","valueEn":"Lectures, tasks, online materials, project","valueSv":""}},{"title":{"valueFi":"Oppimateriaalit","valueEn":"Learning material","valueSv":""},"content":{"valueFi":"INCOSE, Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities. 4th ed. Wiley, 2015, p. 304. ISBN: 9781118999400\r\n\r\nNASA, Systems Engineering Handbook: NASA/SP-2016-6105 Rev2, 2018\r\n\r\nScientific articles \r\n\r\nMaterial provided by the teacher","valueEn":"INCOSE, Systems Engineering Handbook: A Guide for System Life Cycle Processes and Activities. 4th ed. Wiley, 2015, p. 304. ISBN: 9781118999400\r\n\r\nNASA, Systems Engineering Handbook: NASA/SP-2016-6105 Rev2, 2018\r\n\r\nScientific articles \r\n\r\nMaterial provided by the teacher","valueSv":""}},{"title":{"valueFi":"Lisätiedot","valueEn":"Further information","valueSv":""},"content":{"valueFi":"Check Moodle\r\n\r\nIt's possible to get credits either from KTEK0036 Smarts Systems Engineering or KTEK0014 Systems Engineering, not from both courses because they are similar.","valueEn":"Check Moodle\r\n\r\nIt's possible to get credits either from KTEK0036 Smarts Systems Engineering or KTEK0014 Systems Engineering, not from both courses because they are similar.","valueSv":""}},{"title":{"valueFi":"Kurssikirjallisuus","valueEn":"Literature","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}},{"title":{"valueFi":"Esitietovaatimukset","valueEn":"Qualifications","valueSv":""},"content":{"valueFi":"BSc in mechanical engineering or similar","valueEn":"BSc in mechanical engineering or similar","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":"50 % exam and 50 % project report","valueEn":"50 % exam and 50 % project report","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":"Jussi Kantola, Jani Heikkinen","valueEn":"Jussi Kantola, Jani Heikkinen","valueSv":"Jussi Kantola, Jani Heikkinen"}},{"title":{"valueFi":"Luokittelu","valueEn":"Classification","valueSv":""},"content":{"valueFi":"Kestävä kehitys, Yrittäjyysosaaminen","valueEn":"Sustainable development, Entrepreneurship skills","valueSv":"Sustainable development, -"}},{"title":{"valueFi":"Linkit","valueEn":"Links","valueSv":""},"content":{"valueFi":"","valueEn":"","valueSv":""}}]}