When designing and analysing autonomous systems and their environment it is necessary to consider uncertainty and multiple potential states (of the system and its environment). In this position paper, we explore the idea of notations and modelling tools that are based on ‘superpositions’ of states. More concretely, we present a treatment of uncertainty in autonomous systems inspired by quantum physics and propose an extension of the Goal Structuring Notation (GSN), a common approach for the modelling of safety arguments, to model ’superposition’ and ’entangled’ nodes; and, incorporate guidelines of the emerging UL 4600 standard for autonomous systems
This three-fold contribution to the field covers both theory and current research in algorithmic app...
Modern autonomous systems are challenged by complex, overwhelming computer processing power, though,...
Safety is a primary requirement for many autonomous systems, such as automated vehicles and mobile r...
peer-reviewedWhen designing and analysing autonomous systems and their environment it is necessary ...
When designing and analysing autonomous systems and their environment it is necessary to consider un...
International audienceGoal structuring notation (GSN) is commonly proposed as a structuring tool for...
The standard uncertainty relations (UR) in quantum mechanics are typically used for unbounded operat...
Quantum Logic, born of the attempts of J. von Neumann, P. Jordan, E. Wigner, and G. Birkhoff, to pro...
A survey on the generalizations of Heisenberg uncertainty relation and a general scheme for their en...
Over the last few years, integration of stochastic methods into a multiscale framework or developmen...
A smooth function of the second moments of N continuous variables gives rise to an uncertainty relat...
This work presents the Agent–based Uncertainty Theory (AUT) and its connection with quantum mechanic...
Safety is a primary requirement for many autonomous systems, such as automated vehicles and mobile r...
Entangled states represent correlations between two separate systems that are too precise to be repr...
This paper presents a new model for Petri nets (PNs) which combines PN principles with the foundatio...
This three-fold contribution to the field covers both theory and current research in algorithmic app...
Modern autonomous systems are challenged by complex, overwhelming computer processing power, though,...
Safety is a primary requirement for many autonomous systems, such as automated vehicles and mobile r...
peer-reviewedWhen designing and analysing autonomous systems and their environment it is necessary ...
When designing and analysing autonomous systems and their environment it is necessary to consider un...
International audienceGoal structuring notation (GSN) is commonly proposed as a structuring tool for...
The standard uncertainty relations (UR) in quantum mechanics are typically used for unbounded operat...
Quantum Logic, born of the attempts of J. von Neumann, P. Jordan, E. Wigner, and G. Birkhoff, to pro...
A survey on the generalizations of Heisenberg uncertainty relation and a general scheme for their en...
Over the last few years, integration of stochastic methods into a multiscale framework or developmen...
A smooth function of the second moments of N continuous variables gives rise to an uncertainty relat...
This work presents the Agent–based Uncertainty Theory (AUT) and its connection with quantum mechanic...
Safety is a primary requirement for many autonomous systems, such as automated vehicles and mobile r...
Entangled states represent correlations between two separate systems that are too precise to be repr...
This paper presents a new model for Petri nets (PNs) which combines PN principles with the foundatio...
This three-fold contribution to the field covers both theory and current research in algorithmic app...
Modern autonomous systems are challenged by complex, overwhelming computer processing power, though,...
Safety is a primary requirement for many autonomous systems, such as automated vehicles and mobile r...