This technological demonstration goes over a new trust management framework which can assist in achieving secure connections in wireless networks, without necessarily implying the use of strong security associations. The demonstration is based on open-source software, and has been developed to run on OpenWRT as well as on Android.
Actualmente, el Consejo Nacional de Acreditación en Informática y Computación A.C. (CONAIC). Realiza procesos de evaluación con fines de acreditación a programas del área de Informática, Computación y Tecnologías de la Información. CONAIC otorga como resultado de sus evaluaciones: la acreditación o no acreditación de las instituciones evaluadas. En este artículo, se propone una metodología basada en Ingeniería de Software, para dar seguimiento y cumplir con las categorías definidas por CONAIC, para ello se toman como base diferentes prácticas comunes utilizadas en el desarrollo de software.
Actually, the National Council for Computer Accreditation and Computing A.C. (CONAIC). Carries out evaluation processes for accreditation purposes to programs in the area of Computer Science, Computing and Information Technology. CONAIC grants as a result of its evaluations: the accreditation or non-accreditation of the evaluated institutions. In this article, a methodology approach on Software Engineering is proposed to follow up and to comply with the categories defined by CONAIC, for this they are based on different common practices used in software development.
Business models, organizational activities and corporate strategies are now being reshaped to meet the new needs of a challenging and evolving environment in which more up-todate, secure, safer, cost-efficient and personalized software products and services must be timely delivered. This new digital context also represents an opportunity for the improvement and extension of existing software engineering methods. One of the current trends in Software Engineering development lies in boosting interoperability and collaboration between tools and people through the sharing of existing artifacts under common data models, formats and protocols to improve the practice and reuse of existing software artifacts. In this context, formal ontologies and data shapes play a key role to model and exchange data and to provide services for data validation (consistency checking) or type inference as part of a knowledge management strategy. In this document, an initial review of the different approaches to model and exchange data of software artifacts is done to finally evaluate and discuss the proper mechanisms to technically support the upcoming needs in the Software Engineering development lifecycle.
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