In this paper, we present a systematic approach towards decision making for variability in product families in the context of uncertainty. Our approach consists of the following ingredients: a suitable set of architectural views that bridge the gap between customer needs and available technology, a multi-view variation modeling technique, the selection of several scenarios of different kinds, and a quantitative analysis of quality aspects for these scenarios
Although primarily studied in the context of product lines, variability is a key fact about most sys...
Typically, architectural choices determine the achievement of desired goals (such as reusability and...
In a software product family context, software architects design architectures that support product ...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
International audienceIn systems engineering, practitioners shall explore numerous architectural alt...
International audienceIn systems engineering, practitioners shall explore numerous architectural alt...
Architected families of systems (or equivalently product lines) are key industrial assets: they enab...
In a software product family context, software architects design architectures that support product ...
In a software product family context, software architects design architectures that support product ...
In a software product family context, software architects design architectures that support product ...
In a software product family context, software architects design architectures that support product ...
Although primarily studied in the context of product lines, variability is a key fact about most sys...
Typically, architectural choices determine the achievement of desired goals (such as reusability and...
In a software product family context, software architects design architectures that support product ...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
In this paper, we present a systematic approach towards decision making for variability in product f...
International audienceIn systems engineering, practitioners shall explore numerous architectural alt...
International audienceIn systems engineering, practitioners shall explore numerous architectural alt...
Architected families of systems (or equivalently product lines) are key industrial assets: they enab...
In a software product family context, software architects design architectures that support product ...
In a software product family context, software architects design architectures that support product ...
In a software product family context, software architects design architectures that support product ...
In a software product family context, software architects design architectures that support product ...
Although primarily studied in the context of product lines, variability is a key fact about most sys...
Typically, architectural choices determine the achievement of desired goals (such as reusability and...
In a software product family context, software architects design architectures that support product ...