We consider the problem of synthesising rate parameters for stochastic biochemical networks so that a given time-bounded CSL property is guaranteed to hold, or, in the case of quantitative properties, the probability of satisfying the property is maximised or minimised. Our method is based on extending CSL model checking and standard uniformisation to parametric models, in order to compute safe bounds on the satisfaction probability of the property. We develop synthesis algorithms that yield answers that are precise to within an arbitrarily small tolerance value. The algorithms combine the computation of probability bounds with the refinement and sampling of the parameter space. Our methods are precise and efficient, and improve on existing...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
<div><p>We propose a new framework for rigorous robustness analysis of stochastic biochemical system...
Living systems are inherently stochastic and operate in a noisy environment: in single cells, react...
We consider the problem of synthesising rate parameters for stochastic biochemical networks so that ...
We consider the problem of synthesising rate parameters for stochastic biochemical networks so that ...
Abstract. We consider the problem of synthesising rate parameters for stochastic biochemical network...
Abstract. We consider the problem of synthesising rate parameters for stochastic biochemical network...
The stochastic dynamics of biochemical reaction networks can be modeled using a number of succinct f...
The stochastic dynamics of biochemical reaction networks can be modeled using a number of succinct f...
The stochastic dynamics of biochemical reaction networks can be modeled using a number of succinct f...
AbstractThe stochastic dynamics of biochemical reaction networks can be modeled using a number of su...
AbstractThe stochastic dynamics of biochemical reaction networks can be modeled using a number of su...
We consider the problem of verifying stochastic models of biochemical networks against behavioral pr...
This report proposes a novel framework for a rigorous robustness analysis of stochastic biochemical ...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
<div><p>We propose a new framework for rigorous robustness analysis of stochastic biochemical system...
Living systems are inherently stochastic and operate in a noisy environment: in single cells, react...
We consider the problem of synthesising rate parameters for stochastic biochemical networks so that ...
We consider the problem of synthesising rate parameters for stochastic biochemical networks so that ...
Abstract. We consider the problem of synthesising rate parameters for stochastic biochemical network...
Abstract. We consider the problem of synthesising rate parameters for stochastic biochemical network...
The stochastic dynamics of biochemical reaction networks can be modeled using a number of succinct f...
The stochastic dynamics of biochemical reaction networks can be modeled using a number of succinct f...
The stochastic dynamics of biochemical reaction networks can be modeled using a number of succinct f...
AbstractThe stochastic dynamics of biochemical reaction networks can be modeled using a number of su...
AbstractThe stochastic dynamics of biochemical reaction networks can be modeled using a number of su...
We consider the problem of verifying stochastic models of biochemical networks against behavioral pr...
This report proposes a novel framework for a rigorous robustness analysis of stochastic biochemical ...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
Stochastic methods for simulating biochemical reaction networks often provide a more realistic descr...
<div><p>We propose a new framework for rigorous robustness analysis of stochastic biochemical system...
Living systems are inherently stochastic and operate in a noisy environment: in single cells, react...