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Collaborative Modelling and Co-Simulation for Sector-Coupled Multi-Energy System Analysis with eASiMOV-eCoSim

Autor

Hüseyin Kemâl Çakmak, Alexander Kocher, Haozhen Cheng, Jovana Kovačević, Veit Hagenmeyer

Beteiligtes Institut

Institut für Automation und angewandte Informatik (IAI)

Genre

Sonstiges

Beschreibung

eASiMOV-eCoSim presents a novel co-simulation framework for analyzing sector-coupled energy systems, integrating electricity, heat, gas, and mobility domains via Functional Mock-up Units (FMUs) compliant with FMI 3.0. The platform enables collaborative, cross-institutional development of multi-energy models through seamless interoperability with domain-specific tools (e.g., Python, MATLAB®, Modelica). Its primary innovation lies in high-resolution district and urban scale simulation, where individual buildings are represented as multi-physics units with embedded thermodynamics, electrical and thermal devices with controls, and energy conversion systems. These granular building models are dynamically coupled with local heat and electricity distribution networks.
A cloud-native architecture ensures computational scalability and supports the simultaneous co-simulation of a large number of coupled multi-physics models with deterministic synchronization between distributed engineering teams. Its modular design in terms of components and associated controllers facilitates energy system collaboration and provides a solid foundation for the development of innovative models and controllers. eASiMOV-eCoSim is designed for researchers, urban planners, and energy suppliers, to provide a platform to learn, experiment and collaborative development of new models and methods for sector coupled multi-energy system analysis.

Schlagwörter

co-simulation, framework, district, urban, energy system analysis, sector coupling, building, multi-physics model, power grid, heat grid, distribution system, occupancy behavior

Laufzeit (hh:mm:ss)

00:02:20

Publiziert am

02.07.2025

Fachgebiet

Energietechnik

Lizenz

KITopen-Lizenz

Auflösung 1920 x 1080 Pixel
Seitenverhältnis 16:9
Audiobitrate 64398 bps
Audio Kanäle 1
Audio Codec aac
Audio Abtastrate 44100 Hz
Gesamtbitrate 1679239 bps
Container mov,mp4,m4a,3gp,3g2,mj2
Dauer 140.280000 s
Dateiname DIVA-2025-215_mp4.mp4
Dateigröße 29.445.461 byte
Bildwiederholfrequenz 25
Videobitrate 1608143 bps
Video Codec h264

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