Control Systems and Cyber ​​Security Lab

The COSYS Lab is an interdisciplinary research laboratory for the development of CO₂-neutral and cyber-secure energy systems. Its focus is on innovative control and instrumentation methods that make the operation of complex, cross-sector energy systems efficient, flexible, and secure. In light of growing interconnectedness and cyber threats, the lab develops robust operating strategies, holistic attack detection, and privacy-friendly solutions. A central goal The goal is to build a hardware-in-the-loop laboratory that simulates real-world conditions of cyber-physical energy systems and enables the development and validation of prototypes. COSYS combines energy, control, and IT research to scientifically support the safe transformation of future energy systems.

Background and objectives

The European languages ​​are members of the same family. Lor separately exists and is a myth. Por scientie, musica, sport etc, litot Europe usa li sam vocabulary. Li lingues differe solmen in li grammatica, li pronunciation e li plu common vocabules. Omnicos directe al desirabilite de a new lingua franca:
On refusa continuar payar custosi traductores. At solmen va esser necessary far uniform grammatica, pronunciation e plus sommun paroles. Ma quande lingues coalesce, the grammatica del resultant lingue es plu simple e regulari quam ti del coalescent lingues. The new lingua franca is more simple and regular than it exists in European languages. It is simply as Occidental in fact, it is Occidental. A un Angleso it va semblar a simplificat Angles, quam a skeptic Cambridge amico dit me que Occidental es.

Profile

A divider consisting of circles in the six Lab colors
Currently no publications could be found.
A divider consisting of circles in the six Lab colors

Event information for science

There are currently no events scheduled. Please check back later – we are continually updating our event offerings.

Publications

A divider consisting of circles in the six Lab colors
Authors: Oscar Texis-Loaiza, Angel Mercado-Uribe, Jaime A. Moreno, Johannes Schiffer
Publication type: Conference publication presented
Year of publication: 2025
Publisher: IEEE
ISBN: 978-3-907144-12-1
Free keywords: 1 Energy Transition and Decarbonisation
Source: 2025 European Control Conference (ECC)
Authors: Oscar F. Archila, Alain Vande Wouwer, Johannes Schiffer
Publication type: Scientific journal article reviewed
Year of publication: 2025
Publisher: IEEE
ISSN: 1524-9050
Free keywords: Artificial potential functions; Collision avoidance; Switched system; Uncrewed aerial vehicle (UAV)
Source: IEEE transactions on intelligent transportation systems
Authors: Oscar Texis-Loaiza, Jaime A. Moreno, Angel Mercado-Uribe, Johannes Schiffer
Publication type: Conference publication presented
Year of publication: 2025
Publisher: IEEE
ISBN: 978-3-907144-12-1
Free keywords: 1 Energy Transition and Decarbonisation
Source: 2025 European Control Conference (ECC)
Authors: Jesus Mendoza‐Avila, Denis Efimov, Jose Angel Mercado‐Uribe, Johannes Schiffer
Publication type: Scientific journal article reviewed
Year of publication: 2025
Publisher: Wiley
ISSN: 1049-8923, 1099-1239
Free keywords: Global stabilization; input-to-state stability; multi-stability; Non-linear control; power systems; State periodic systems
Source: International journal of robust and nonlinear control
Authors: Gökçen Devlet Şen, Juan E. Machado, Johannes Schiffer
Publication type: Scientific journal article reviewed
Year of publication: 2025
Publisher: Elsevier BV
Volume/Year: 59
Issue/Volume: 9
ISSN: 2405-8963
Free keywords: energy management; Mixed integer nonlinear programming; Model predictive control; Sector coupling
Source: IFAC PapersOnLine
Authors: Oscar Texis-Loaiza, Jaime A. Moreno, Manuel A. Estrada, Leonid Fridman, Arie Levant
Publication type: Scientific journal article reviewed
Year of publication: 2025
Publisher: IEEE
Volume/Year: 9
ISBN: 2475-1456
Free keywords: Finite-time convergence; Higher order sliding mode control; Lyapunov methods; Nonlinear output feedback; Sliding mode control
Source: IEEE control systems letters