Automated Model Generation And Observer Design For Interconnected Systems A Port Hamiltonian Approach


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Automated Model Generation and Observer Design for Interconnected Systems : A Port-Hamiltonian Approach


Automated Model Generation and Observer Design for Interconnected Systems : A Port-Hamiltonian Approach

Author: Martin Pfeifer

language: en

Publisher: KIT Scientific Publishing

Release Date: 2022-06-27


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This work addresses the automated generation of physical-based models and model-based observers. We develop port-Hamiltonian methods, which for the first time allow a complete and consistent automation of these two processes for a large class of interconnected systems.

Dynamical Modeling and Control of Multiphase Heat Transport Systems Based on Loop Heat Pipes


Dynamical Modeling and Control of Multiphase Heat Transport Systems Based on Loop Heat Pipes

Author: Gellrich, Thomas Christoph

language: en

Publisher: KIT Scientific Publishing

Release Date: 2022-12-05


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Effective heat transport systems in aerospace are based on multiphase loop heat pipes (LHPs). For a precise thermal control of the electronics, electrical heaters are additionally used to control the operating temperature of the LHP. This work focusses on the dynamical modeling and model-based control design for LHP-based heat transport systems. The results of this work can be used for the optimization of current control parameters and the efficient control design for future LHP applications.

A Framework for Decentralized Stabilization in Networked Energy Systems: A Passivity-Based Approach


A Framework for Decentralized Stabilization in Networked Energy Systems: A Passivity-Based Approach

Author: Strehle, Felix

language: en

Publisher: KIT Scientific Publishing

Release Date: 2024-12-20


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This work proposes a passivity-based framework for the decentralized stabilization of networked energy systems. Its key innovation are equilibrium-independent, passivity-based conditions for modularly inferring asymptotic stability. The framework allows for topology-independent, flexible system configurations in a plug-and-play fashion and extends to other control solutions and technologies, enabling holistic system and control approaches for networked multi-energy systems.