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Conferences Co-sponsored by IFAC TC1.3 Discrete Event and Hybrid Systems TC1.5 Networked Systems TC2.3 Non-Linear Control Systems TC2.4 Optimal Control TC2.5 Robust Control TC2.6 Distributed Parameter Systems TC4.1 Human Machine Systems TC4.2 Mechatronic Systems TC4.3 Robotics TC5.4 Large Scale Complex Systems TC6.3 Power and Energy Systems TC7.1 Automotive Control TC9.3 Control for Smart Cities
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MTNS 2026

27th International Symposium on Mathematical Theory of Networks and Systems (MTNS)

The University of Waterloo is proud to welcome you to join us for the 27th International Symposium on Mathematical Theory of Networks and Systems (MTNS) on August 17-21, 2026. 

MTNS is a major symposium in the general area of mathematical systems theory, networks and control. The symposium is interdisciplinary and attracts mathematicians, engineers and researchers working in all aspects of systems theory and its applications. The symposium is held every two years. Mathematical methods which play a role in the areas mentioned above stem from a broad range of fields of pure and applied mathematics, including ordinary and partial differential equations, real and complex analysis, numerical analysis, probability theory and stochastic analysis, operator theory, linear and commutative algebra as well as algebraic and differential geometry. Application areas range from biology, communications and mathematical finance to problems in electrical, mechanical, aerospace and chemical engineering, and robotics. 

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Related from TC1.3 Discrete Event and Hybrid Systems

Welcome Message from the TC1.3 Chair 2023-2026

If you are a researcher and your interests include event-driven dynamic systems or systems that combine time-driven and event-driven dynamics, then this Technical Committee is for you…


Activities 29-Jul-2026

Scope of TC1.3

IFAC Technical Committee 1.3 focuses on the analysis and control of Discrete Event Systems (DES) and Hybrid Systems (HS). Discrete event systems are characterized by a countable and possibly non-numerical state space, while Hybrid Systems combine event-driven dynamics with conventional time-driven dynamics.


Activities 14-Jul-2023