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Hybrid Blockchain-Enabled Secure Microservices Fabric for Decentralized Multi-Domain Avionics Systems

机译:适用于分散式多领域航空电子系统的混合区块链安全微服务架构

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Advancement in artificial intelligence (AI) and machine learning (ML), dynamic data driven application systems (DDDAS), and hierarchical cloud-fog-edge computing paradigm provide opportunities for enhancing multi-domain systems performance. As one example that represents multi-domain scenario, a "fly-by-feel" system utilizes DDDAS framework to support autonomous operations and improve maneuverability, safety and fuel efficiency. The DDDAS "fly-by-feel" avionics system can enhance multi-domain coordination to support domain specific operations. However, conventional enabling technologies rely on a centralized manner for data aggregation, sharing and security policy enforcement, and it incurs critical issues related to bottleneck of performance, data provenance and consistency. Inspired by the containerized microservices and blockchain technology, this paper introduces BLEM, a hybrid BLockchain-Enabled secure Microservices fabric to support decentralized, secure and efficient data fusion and multi-domain operations for avionics systems. Leveraging the fine-granularity and loose-coupling features of the microservices architecture, multidomain operations and security functionalities are decoupled into multiple containerized microservices. A hybrid blockchain fabric based on two-level committee consensus protocols is proposed to enable decentralized security architecture and support immutability, au-ditability and traceability for data provenience in existing multi-domain avionics system. Our evaluation results show the feasibility of the proposed BLEM mechanism to support decentralized security service and guarantee immutability, auditability and traceability for data provenience across domain boundaries.
机译:人工智能(AI)和机器学习(ML),动态数据驱动的应用系统(DDDAS)和分层的云雾边缘计算范例的进步为增强多域系统性能提供了机会。作为代表多领域场景的一个示例,“按感觉飞行”系统利用DDDAS框架来支持自主操作并提高机动性,安全性和燃油效率。 DDDAS“按感觉飞行”航空电子系统可以增强多域协调,以支持特定于域的操作。但是,传统的使能技术依靠集中方式进行数据聚合,共享和安全策略实施,并且会引发与性能,数据来源和一致性瓶颈相关的关键问题。受容器化微服务和区块链技术的启发,本文介绍了BLEM,一种混合​​的,启用了Blockchain的安全微服务结构,可支持航空电子系统的分散,安全和高效的数据融合以及多域操作。利用微服务体系结构的细粒度和松耦合特性,将多域操作和安全功能分离为多个容器化微服务。提出了一种基于两级委员会共识协议的混合区块链结构,以实现分散的安全架构,并支持现有多域航空电子系统中数据来源的不变性,可审计性和可追溯性。我们的评估结果表明,所提出的BLEM机制可支持分散式安全服务,并保证跨域边界的数据来源具有不变性,可审计性和可追溯性。

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