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List of all finalized projects
SASAME
Synthesis of Assistance Services in Adhoc Multi-Media Environments
Project coordination: Adelinde M. Uhrmacher
Contractor(s): DFG

BDSim
Brownian Dynamics Simulation

The goal of the project is to develop and combine suitable algorithms to support an effective and efficient simulation of Brownian dynamics Simulations. The results of the micro-scale simulations shall provide additional insights into biological phenomena that cannot be treated at higher levels of abstraction (e.g. molecular crowding).

MIWDE
Methods for Integrating Wet-Lab and Dry-Lab Experiments
Project coordination: Adelinde M. Uhrmacher

Means that help a better integration between wet-lab and dry-lab experiments shall be developed, e.g., in the area of parameter estimation, or model validation.

ML-Rules
Multi level modeling for cell biological systems

Biological systems are hierarchically organized into different levels, e.g. molecules, compartments, cells, tissues, and organs. Thereby, dynamic processes at any level may be influenced by processes at higher or lower levels of the hierarchy. In this project, methods are developed that make formal modeling of biological multilevel systems more accessible to domain experts.

EFSim
Efficient and flexible simulators for cell biological systems
Project coordination: Adelinde M. Uhrmacher
Contractor(s): DFG

Keywords: Discrete-event / hybrid simulation, Grid-computing, Multi-resolution simulation, Stochastic Simulation Algorithm (SSA), Gillespie Algorithm, Next Subvolume Method

GEN HYPE
Generic Hypermedia Teaching and Training System
Project coordination: Prof. Dr. Ing. Alke Martens

The project GEN HYPE, Generic Hypermedia Teaching and Training Systems, is a collection of different sub-projects, all of which have their roots in the area of hypermedia teaching and training systems.

EFESYS
Efficient and Flexible Parallel and Distributed Discrete Event Simulators for Cell-Biological Systems
Project coordination: Adelinde M. Uhrmacher; Prof. Dr. Richard Fujimoto
Contractor(s): DAAD

The goal of the collaborative project of the University of Rostock and the Georgia Institute of Technology is to develop efficient and flexible discrete event simulation methods for cell-biological systems. The focus of the project will be on parallel optimistic approaches and the utilization of grid technology for execution. The project will built on existing and ongoing work on designing component-based, flexible simulators, multi-level, modeling and simulation in Systems Biology and on efficient, parallel, distributed simulation of large scale systems, and grid technology.

JAMES
Java-based Agent Modeling Environment for Simulation
Project coordination: Adelinde M. Uhrmacher

JAMES has been the first implementation of a simulation framwork for the DynDEVS formalism.

TPM
Formal model of tutoring processes in intelligent teaching and training systems
Project coordination: Prof. Dr. Ing. Alke Martens

Formal tutoring process model (TPM), currently with the extensions basic TPM without adaptation and without learner model, adaptive TPM with integrated learner model, and dynamic TPM with integrated time base.

PDS
Parallele verteilte Simulation
Project coordination: Adelinde M. Uhrmacher

Parallele verteilte Simulation deliberativer Agenten

exist-seed-yalst
exist-seed-yalst - Live Support Tool - Entwicklung einer Softwarelösung für internet gestützten Kundensupport.
Project coordination: Dr. rer. nat. Andreas Beckmann; Dr. rer. nat. Daniela Degenring
Contractor(s): BMBF Programm Exist Seed

CoSA
Component based framework for an effective and efficient simulation of (agent) systems
Project coordination: Adelinde M. Uhrmacher
Contractor(s): DFG

The goal of this project is to develop a modeling and simulation framework which is sufficiently flexible and modular to support teaching of modeling and simulation methods, research on modeling and simulation methods, applications in diverse areas, and modeling and simulation of complex, heterogenous systems. In the beginning the project was intended to provide solutions for multi agent models and simulations but we dropped this specialization as most aspects of modelling and simulation are more common. Thus the result is still usable for multi agent models but by no means restricted to such models.

DiErMoSiS
Discrete event-oriented multi-level modeling and simulation in systems biology
Project coordination: Adelinde M. Uhrmacher
Contractor(s): DFG

The project is aimed at the development of modeling and simulation methods taking the specific challenges of Systems Biology into account and that support a description and analysis at different levels of detail. Therefore, concrete models shall be generated. Thus, the project combines research on modeling and simulation methodology and research on generating cellular models.

TutMoSi
TutMoSi - Tutoring of Modeling and Simulation
Project coordination: Prof. Dr. Ing. Alke Martens

Intelligent teaching and training system for modeling and simulation in diverse areas, e.g. medicine, biology, environmental sciences.

PISA
Personalisierte Studienplanung (Personalized planning of courses)
Project coordination: Adelinde M. Uhrmacher

VSEit
the Versatile Simulation Environment for the internet

DELMS
Discrete event life science modelling and simulation
Project coordination: Adelinde M. Uhrmacher

Keywords: Systems Biology, Discrete-Event Modeling and Simulation, Multi-Level Modeling and Simulation


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