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    Tackling Verification and Validation Techniques to Evaluate Cyber Situational Awareness Capabilities

    Autor: 
    Llopis Sánchez, Salvador
    ;
    Sandoval Rodriguez-Bermejo, David
    ;
    Medenou Choumanof, Roumen Daton
    ;
    Pasqual de Riquelme, Ramis
    ;
    Torelli, Francesco
    ;
    Maestre Vidal, Jorge
    Fecha: 
    2022
    Palabra clave: 
    cyber defence; cyber situational awareness; decision making; verification and validation; JCR; Scopus
    Revista / editorial: 
    Mathematics
    Citación: 
    Llopis Sanchez, S., Sandoval Rodriguez-Bermejo, D., Daton Medenou, R., Pasqual de Riquelme, R., Torelli, F., & Maestre Vidal, J. (2022). Tackling Verification and Validation Techniques to Evaluate Cyber Situational Awareness Capabilities. Mathematics, 10(15), 2617.
    Tipo de Ítem: 
    Articulo Revista Indexada
    URI: 
    https://reunir.unir.net/handle/123456789/14245
    DOI: 
    https://doi.org/10.3390/math10152617
    Dirección web: 
    https://www.mdpi.com/2227-7390/10/15/2617
    Open Access
    Resumen:
    Since cyberspace was identified as a domain of operations, defence practitioners started a race with academy, researchers, and industry and military organizations working together towards defining related lines of capability development (e.g., DOTMLPFI) and exploring the needs and opportunities they entail. An essential cornerstone of adapting to the convergence of the cyber domain with conventional theaters of operation is the need for producing tools for easing to acquire cyber situational awareness (CSA), from which human operators shall be able to perceive, reason and project situations and events observed in cyberspace that may vertically/horizontally propagate from technological to tactical, operational and strategic planes. Benefiting from the higher maturity level of civilian capabilities for cybersecurity, the military sector has embraced the challenge of creating related beyond state-of-the-art CSA enablers that comprise the existing technological background while adopting concepts such as operations, missions or courses of action (CoAs), properly aligning them with military doctrine. Beyond ongoing development efforts, there is a wide methodological gap in the lack of suitable CSA verification and validation (V&V) frameworks, which are expected to analyze if related capabilities meet the requirements to operate in the military context; at the same time supporting the thorough development life-cycle of brand new cyber defence technologies. With the motivation of closing the identified gap, this research introduces a novel V&V framework able to guide the evaluation of CSA-related tools, which makes converge purely military aspects with dual-use state-of-the-art V&V approaches. Three core CSA evaluation concepts are discussed in-depth: software, operational and application tests. They range from the daily application of new capabilities to their ability to enable the acquisition of a joint operational picture understandable by human decision makers.
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