Study university: Tampere University
Energiajärjestelmän joustot
Tämän kurssin virallinen nimi on New Applications in Electrical Energy Engineering. Kurssi löytyy sillä nimellä opinto-oppaasta ja kurssisuoritus myönnetään siitä kurssista. Huom! Tutkinto-opiskelijat ilmoittautuvat tälle kurssille RIPAssa. Lisäohjeita täällä. Tämä kurssi käsittelee sähkön tuotannon ja käytön muutoksia ja niiden joustopotentiaalia sekä sähköenergiajärjestelmän joustoratkaisuja. Kurssi järjestetään yhteistyössä Tampereen ammattikorkeakoulun, Tampereen yliopiston, LUT-yliopiston ja Aalto-yliopiston kanssa. Osaamistavoitteet
Distribution automation
This course covers automation functions and examples of electricity distribution grids. Course contents Learning outcomes After the course, the student Course material Text book (available as e-book) and lecture material in English available on the webpage of the course. Teaching methods Lectures (also available as recordings). There will be an exam and laboratory work/written work.
Programming 3: Interfaces
After completing the course, the student is able to participate in the implementation of a larger software product. The programming language is Java (no prior experience needed). Course contents Learning outcomes After completing the course, the student Completion methods To complete the course, the student must obtain enough points from exercises and pass an electronic
Cyber security I: Fundamentals
Course contents Learning outcomes After completing the course, the student Completion methods This course is completed independently and entirely at your own pace. Depending on your grade goal you need to pass one, two or three exams. Please note that the exams are only available on-campus in Tampere. Besides the exam(s) you most likely need
Creating graphical user interfaces
This course will teach you how to design graphical user interfaces and implement them using web technologies. Course contents During the course, participants will learn how to create graphical user interfaces. Event-based programming, and defining graphics and including relevant animations to support good usability are covered. User interface design is covered in applied manner. Accessibility
Wireless networking
The aim of this course is to give an up-to-date overview of modern wireless access technologies. The emphasis is put on networking side of these technologies. Course contents WAN/WLAN/WPAN technologies Advanced wireless networks Learning outcomes After passing the course, the student is able to Course material Lecture notes, slides and other complementary materials. Completion methods
Radio network planning
The goal of the course is to familiarise the students with the cellular radio network planning process using existing mobile radio technologies as an example. The planning concepts learned during the course are coverage planning, capacity planning and optimisation. The mobile communication systems under inspection are GSM, UMTS, and LTE. Course contents GSM system and
Multicarrier and multiantenna techniques
The course focuses on multicarrier (OFDM, OFDMA, SC-FDMA, FBMC, DMT) and multiantenna/MIMO digital communication techniques, which are central ingredients in all advanced communication system developments including mobile communication systems (LTE, LTE-A, 5G), WLAN/WiFi, terrestrial TV transmission (DVB-T, etc.), and digital subscriber line modems. Course contents BASICS OF MULTICARRIER MODULATION: SYNCHRONIZATION AND CHANNEL ESTIMATION: MULTIPLE ACCESS:
Internet-of-things wireless communications
This course focuses on the requirements, enabling techniques, use cases and applications of the different Wireless Communications technologies for realizing and enabling the Internet-of-Things (IoT) and Internet-of-Everything worlds. Course contents Different IoT requirements and use cases from wireless communications perspective: Enabling Wireless Communications methods and systems and their key features, characteristics, pros and cons, including:
Digital communication
This course focuses on the core digital information transmission and signal processing techniques utilised in all widely-used communications systems and networks, like 2G/3G/4G/5G mobile communication networks, wireless LANs, digital TV broadcasting, and DSL. These techniques include error control coding, digital modulation, filtering, channel equalisation and detection. Course contents Learning outcomes After completing the course, the