By Eric Armengaud, Stephane Bonnet (auth.), Ajitha Rajan, Thomas Wahl (eds.)
The booklet summarizes the findings and contributions of the ecu ARTEMIS venture, CESAR, for making improvements to and allowing interoperability of equipment, instruments, and strategies to fulfill the calls for in embedded platforms improvement throughout 4 domain names - avionics, automobile, automation, and rail.
The contributions supply perception to a far better engineering and safeguard procedure life-cycle for the improvement of protection severe platforms. They current new inspiration of engineering instruments integration platform to enhance the improvement of protection serious embedded structures and illustrate ability of this framework for end-user instantiation to precise area wishes and tactics. in addition they increase cutting-edge in component-based improvement in addition to part and approach validation and verification, with software help. and eventually they describe appropriate evaluated tactics and techniques specially designed for the embedded platforms zone in addition to effortless adoptable universal interoperability ideas for software program instrument integration.
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Additional resources for CESAR - Cost-efficient Methods and Processes for Safety-relevant Embedded Systems
The IEEE1471 standard however says little about how to choose viewpoints from which to construct the system views. The reason is simple: it is hard to decide on a standardized set of views that will cover all stakeholders’ concerns, and still not leave many systems horribly over-specified (and hence also making architecture development more expensive due to work overhead). , the 4 C 1 view model , MODAF  or DODAF , but none of them have been established as a de-facto standard across several domains.
It allows a designer to systematically examine viable and alternative design options for a particular system, and thereby complements the application of heuristics and domain experiences for justifying design choices and performing design optimization. 15 offers an overview of the related work products and activities, which are further elaborated in the next paragraphs. In architecture exploration the system architect is responsible for selecting choices from a number of alternatives based upon criteria based on metrics such as performance, cost, memory resource usage, mass, failure rates and so on.
This data model should be capable of managing the system design information, support multiple views for architecture modelling but also provide the ability to assess various architecture solutions based on multiple criteria. This model in its core will include all the common part of development data managed by the different disciplines throughout the development life cycle activities but should also be extensible in order to easily adapt to future needs. The core part should reflect the most critical data aspects, that is the ones that if modified may have a strong impact on the whole product.