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Spacecraft Technology and Design

Utbildningsinformation från den publicerade källan. Utbildningen och dess tidsbundna tillfällen hålls åtskilda.

Utbildningsfakta

Kod: 5FY219

The course comprises two parts: a theoretical module of 1.5 credits and a practical module of 6 credits. The course starts with reviewing the basics of orbital mechanics (2-body problem, relative motion, conservation of energy and momentum, and Kepler's laws) and continues with an introduction to orbital mechanics for artificial satellites (e.g., sun synchronous, geostationary, and Molniya orbits). Advanced concepts in spacecraft orbit including transfer orbit, gravity assist, and aerobraking are explained, and real examples are shown and discussed. Main concepts of spacecraft attitude, i.e. the orientation in relation to a horizontal plane, (rotation, reference frame and inertial frame, local vertical and local horizontal, and transformation strategy) are explained and an introduction through different spacecraft systems and subsystems (mechanics and structure, electronics and power supply, telecommunication, thermal control, propulsion, data handling, attitude control, sensors and scientific payloads) are provided. Various launch vehicles and landing strategies are explained, and the theoretical module ends with an explanation of various environments that a spacecraft may face during its journey to a target as well as the environment at the target. In parallel to the theoretical session, a practical training will be conducted to develop specific skills including electronics, programming, and structural design required for designing and building a mini-satellite (CanSat). The practical module starts with an introduction to logic circuits and digital systems and continues with an in-depth explanation on computer architecture, automated and semi-automated control systems, and hardware programming. A review to C++ and/or Python programming is given. Different parts of CanSat are introduced and different project work units are explained. The students are then divided into groups and each group is expected to design and build their own CanSat and ground station, which need to be tested and pass intensive reviews including preliminary design review (PDR) and critical design review (CDR). During the launch campaign, CanSats and ground stations will be tested under real conditions.

Behörighet

90 credits including Thermodynamics, Physical Measurement Techniques and a first course in scientific computing or equivalent. Proficiency in English and Swedish equivalent to the level required for basic eligibility for higher studies. Requirements for Swedish only apply if the course is held in Swedish.

Utbildningstillfällen

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Källa och uppdatering

Skolverket Susa-navet

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Visa källversion

Publiceringsversion: 8e217193-f5fa-4778-b085-a4521fd03e8d

Kontrollsumma: 1b0dc54c0fc8a359f83ba9dc8f9d468479ce432de4c03bce3b8b33dd67fe3f6c

Senast ändrad enligt källan: 2025-12-11T08:05:35