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Exploration of blockchain-enabled decentralized capability-based access control strategy for space situation awareness

机译:支持区块链的基于分散性的能力的访问控制策略的空间情境意识的探索

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摘要

Space situation awareness (SSA) includes tracking of active and inactive resident space objects and assessing the space environment through sensor data collection and processing. To enhance SSA, the dynamic data-driven application systems framework couples online data with offline models to enhance performance by using feedback control, sensor management, and communications reliability. For information management, there is a need for identity authentication and access control (AC) to ensure the integrity of exchanged data as well as to grant authorized entities access right to data and services. Due to decentralization and heterogeneity of SSA systems, it is challenging to build an efficient centralized AC system, which can either be a performance bottleneck or the single point of failure. Inspired by the blockchain and smart contract technology, we introduce blockchain-enabled, decentralized, capability-based access control (BlendCAC), a decentralized authentication, and capability-based AC mechanism to enable effective protection for devices, services, and information in SSA networks. To achieve secure identity authentication, the BlendCAC leverages the blockchain to create virtual trust zones, in which distributed components can identify and update each other in a trustless network environment. A robust identity-based capability token management strategy is proposed, which takes advantage of the smart contract for registration, propagation, and revocation of the access authorization. A proof-of-concept prototype has been implemented on both resources-constrained devices (i.e., Raspberry Pi nodes emulating satellites with sensor observations) and more powerful computing devices (i.e., laptops emulating a ground network) and is tested on a private Ethereum blockchain network. The experimental results demonstrate the feasibility of the BlendCAC scheme to offer a decentralized, scalable, lightweight, and fine-grained AC solution for space system toward SSA. blockchain; smart contract; decentralized access control; dynamic data-driven application system; space situation awareness.
机译:空间情况感知(SSA)包括跟踪主动和非活动驻留空间对象,并通过传感器数据收集和处理评估空间环境。为了增强SSA,动态数据驱动的应用系统框架将在线数据与离线模型耦合以通过使用反馈控制,传感器管理和通信可靠性来增强性能。对于信息管理,需要身份认证和访问控制(AC),以确保交换数据的完整性以及授予授权实体访问数据和服务权。由于SSA系统的分散和异质性,建立高效的集中式AC系统是挑战,可以成为性能瓶颈或单点故障。受到区块链和智能合同技术的启发,我们引入了支持区块链,分散,能力的访问控制(BLENDCAC),分散的认证和基于能力的AC机制,以实现SSA网络中的设备,服务和信息的有效保护。为实现安全身份验证,Blendcac利用区块链来创建虚拟信任区域,其中分布式组件可以在无限网络环境中识别和更新。提出了一种强大的基于身份的能力令牌管理策略,它利用了访问授权的登记,传播和撤销的智能合同。在资源受限的设备上实现了概念验证原型(即,覆盆子PI节点模拟具有传感器观测的卫星)和更强大的计算设备(即,仿真地面网络的笔记本电脑)并在私人的Ethereum区块链上进行测试网络。实验结果表明,Blendcac方案的可行性为SSA提供了分散,可扩展,轻质和细粒度的空间系统。区块链;智能合同;分散访问控制;动态数据驱动应用系统;空间情境意识。

著录项

  • 来源
    《Optical engineering》 |2019年第4期|041609.1-041609.16|共16页
  • 作者单位

    Binghamton University Department of Electrical and Computer Engineering Binghamton New York United States;

    Binghamton University Department of Electrical and Computer Engineering Binghamton New York United States;

    US Air Force Research Laboratory Rome New York United States;

    Intelligent Fusion Technology Inc. Germantown Maryland United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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