In this paper a Spatial Markov Chain Cellular Automata model for the spread of viruses is proposed. The model is based on a graph with connected nodes, where the nodes represent individuals and the connections between the nodes denote the relations between humans. In this way, a graph is connected where the probability of infectious spread from person to person is determined by the intensity of interpersonal contact. Infectious transfer is determined by chance. The model is extended to incorporate various lockdown scenarios. Simulations with different lockdowns are provided. In addition, under logistic regression, the probability of death as a function of age and gender is estimated, as well as the duration of the disease given that an indi...
We present techniques that allow for the statistical identification of the infection front and for t...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
Susceptibles-infectives-removals (SIR) and its derivatives are the classic mathematical models for ...
In this bachelor thesis we propose a spatial Markov Chain Cellular Automatamodel for the spread of t...
In this work we show two different approaches to model virus spread in a large population of individ...
Currently, the world has been facing the brunt of a pandemic due to a disease called COVID-19 for th...
Computer modelling and simulation methods are very important and play a critical role in the mitigat...
The spread of disease is a major health concern in many parts of the world. In the absence of vaccin...
AbstractThe main goal of this work is to propose a mathematical model, based on two-dimensional cell...
This thesis seeks to analyze the spread of COVID-19 and come up with a mathematical model to predict...
The goal of this work is to develop a mathematical model to analyze the spread of COVID-19 infection...
We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epid...
We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epid...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
International audienceThis work aims at developing a general methodology to determine the spatial ch...
We present techniques that allow for the statistical identification of the infection front and for t...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
Susceptibles-infectives-removals (SIR) and its derivatives are the classic mathematical models for ...
In this bachelor thesis we propose a spatial Markov Chain Cellular Automatamodel for the spread of t...
In this work we show two different approaches to model virus spread in a large population of individ...
Currently, the world has been facing the brunt of a pandemic due to a disease called COVID-19 for th...
Computer modelling and simulation methods are very important and play a critical role in the mitigat...
The spread of disease is a major health concern in many parts of the world. In the absence of vaccin...
AbstractThe main goal of this work is to propose a mathematical model, based on two-dimensional cell...
This thesis seeks to analyze the spread of COVID-19 and come up with a mathematical model to predict...
The goal of this work is to develop a mathematical model to analyze the spread of COVID-19 infection...
We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epid...
We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epid...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
International audienceThis work aims at developing a general methodology to determine the spatial ch...
We present techniques that allow for the statistical identification of the infection front and for t...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
Susceptibles-infectives-removals (SIR) and its derivatives are the classic mathematical models for ...