Simplification of Thermal Networks for Magnetic Components in Space Power Electronics

Author:

de la Hoz DavidORCID,Salinas GuillermoORCID,Šviković VladimirORCID,Alou PedroORCID

Abstract

The volume of magnetic components for space applications, directly related to the launch cost, and their performance are critically influenced by their capability to dissipate the internal electromagnetic power losses. This is the reason why accurate thermal models are required. Furthermore, these models need to be simple and versatile to allow a fast analysis of many different designs. In this study, a specific methodology to analyze inductors and transformers by thermal networks and a simplification based on the Thevenin’s theorem leading to a simple equation are proposed. The specific details to address thermal modelling for space magnetic components are discussed. A generic 50 W Flyback transformer for space applications is analyzed in this study and experimental validation is provided, showing that the proposed method leads to a deviation in the temperature estimation between 1 °C and 5 °C, which is considered quite a good result from the literature review carried out.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference41 articles.

1. Space Power Electronics, Design Drivers (I)

2. Space Product Assurance: Derating–EEE Components, ECSS-Q-ST-30-11C Rev 1,2011

3. Design, Manufacturing and Quality Standards for CUSTOM Electromagnetic Devices for Space Applications, MIL-STD-981C,1992

4. Space PRODUCT Assurance: Worst Case Circuit Performance Analysis, ECSS-Q-ST-30-01A,2005

5. Design Rules for Printed Circuit Boards, ECSS-Q-ST-30-12C,2014

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