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In this work, in order to model and analyse a simplified trophic network of the Venice Lagoon, I worked with the process algebra Bio-PEPA. This work shows that Bio-PEPA naturally permits the modelling of trophic networks and the analysis of their continuous dynamics. Different simulation and analysis techniques can be combined: discrete stochastic and continuous deterministic models can be automatically generated from a Bio-PEPA model. Specifically, it is possible to observe the dynamics of the populations of the species in a trophic network, understand the relationship among these species and…mehr

Produktbeschreibung
In this work, in order to model and analyse a simplified trophic network of the Venice Lagoon, I worked with the process algebra Bio-PEPA. This work shows that Bio-PEPA naturally permits the modelling of trophic networks and the analysis of their continuous dynamics. Different simulation and analysis techniques can be combined: discrete stochastic and continuous deterministic models can be automatically generated from a Bio-PEPA model. Specifically, it is possible to observe the dynamics of the populations of the species in a trophic network, understand the relationship among these species and predict the consequences of the perturbations of the ecosystem.
Autorenporträt
Aliye Kuerban, born in China Xinjiang (Urumqi). Obtained the master degree in computer science in 2016 at the University of Ca Foscari.