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Abstract(s)
No panorama contemporâneo do treino militar, a preparação completa e multifacetada, apta a
cobrir uma ampla gama de cenários de combate é essencial para o funcionamento de qualquer
exército. Neste contexto, os ambientes de treino imersivos surgem como uma solução
indispensável. Estes ambientes que simulam cenários de combate, geralmente, com grande
realismo, não apenas elevam a perceção de realidade nas situações de treino, mas também
proporcionam uma compreensão mais profunda e detalhada das complexidades inerentes a
tais cenários. Este aprofundamento contribui de forma substancial para o aumento da
qualidade e para a eficiência em termos de custos nas práticas de treino militar, permitindo
uma preparação mais eficaz e realista para os desafios do campo de batalha.
Com os recentes avanços em Realidade Aumentada e Ambientes Colaborativos, foi possível
observar um papel vital destas tecnologias na melhoria da eficácia e do realismo dos
simuladores. A integração destas inovações tecnológicas tem permitido a criação de cenários
de treino mais interativos e envolventes, em que os participantes podem experimentar e reagir
a situações complexas de forma segura, sem os riscos associados ao treino em condições reais.
À medida que a tecnologia avança, o potencial para inovação e aperfeiçoamento no treino
militar torna-se cada vez mais evidente e alcançável.
Neste âmbito, a preparação desta dissertação de mestrado centra-se no aperfeiçoamento da
plataforma de simulação da SisTrade, com especial ênfase na interatividade e segurança dos
dados. A pesquisa aborda a aplicação prática de Ambientes Colaborativos Virtuais, procurando
explorar as suas capacidades em maximizar a eficiência do treino, enquanto a implementação
de um modelo de Encriptação Baseada em Atributos visa garantir a segurança e a integridade
dos dados manipulados. Este estudo visa não só melhorar a experiência de treino militar, mas
também assegurar a proteção de informações sensíveis, um aspeto crítico na era digital.
In the modern military training landscape, a comprehensive and involved preparation capable of covering a diverse spectrum of combat scenarios is of the utmost importance. In this context, immersive training environments have emerged as an indispensable solution. These simulated environments not only provide a heightened sense of realism but also offer a more thorough comprehension of intricate scenarios. This significantly contributes to the improvement of quality and cost-effectiveness in military training practices, allowing for more effective and realistic preparation for battlefield challenges. Recent advances in Augmented Reality and Collaborative Environments have played a pivotal role in elevating the efficacy and realism of these training tools. The integration of these technological innovations has allowed for the creation of more interactive and engaging training scenarios, where participants can experience and react to complex situations safely, without the risks associated with real-world training conditions. As technology advances, the potential for innovation and improvement in military training becomes increasingly apparent and achievable. This master’s dissertation explores the enhancement of SisTrade's simulation platform, focusing on interactivity and data security. The research addresses the practical application of Virtual Collaborative Environments, seeking to explore their capabilities to maximize training efficiency, while the implementation of an Attribute-Based Encryption model aims to ensure the security and integrity of the handled data. This study aims not only to improve the military training experience but also to ensure the protection of sensitive information, a critical aspect in the digital age.
In the modern military training landscape, a comprehensive and involved preparation capable of covering a diverse spectrum of combat scenarios is of the utmost importance. In this context, immersive training environments have emerged as an indispensable solution. These simulated environments not only provide a heightened sense of realism but also offer a more thorough comprehension of intricate scenarios. This significantly contributes to the improvement of quality and cost-effectiveness in military training practices, allowing for more effective and realistic preparation for battlefield challenges. Recent advances in Augmented Reality and Collaborative Environments have played a pivotal role in elevating the efficacy and realism of these training tools. The integration of these technological innovations has allowed for the creation of more interactive and engaging training scenarios, where participants can experience and react to complex situations safely, without the risks associated with real-world training conditions. As technology advances, the potential for innovation and improvement in military training becomes increasingly apparent and achievable. This master’s dissertation explores the enhancement of SisTrade's simulation platform, focusing on interactivity and data security. The research addresses the practical application of Virtual Collaborative Environments, seeking to explore their capabilities to maximize training efficiency, while the implementation of an Attribute-Based Encryption model aims to ensure the security and integrity of the handled data. This study aims not only to improve the military training experience but also to ensure the protection of sensitive information, a critical aspect in the digital age.
Description
Keywords
Military simulation Collaborative environments Attribute-based encryption Simulações militares Ambientes colaborativos Encriptação baseada em atributos