Blockchain-Empowered Space-Air-Ground Integrated Networks: Opportunities, Challenges, and Solutions
作者:Yuntao Wang, Zhou Su, Jianbing Ni, Ning Zhang, Xuemin Shen · 发表于:IEEE Communications Surveys & Tutorials · 年份:2021 · DOI:10.1109/comst.2021.3131711 · 被引用次数:216 · 研究领域:Blockchain Technology Applications and Security、IoT and Edge/Fog Computing、Vehicular Ad Hoc Networks (VANETs)
The terrestrial networks face the challenges of severe cost inefficiency and low feasibility to provide seamless services anytime and anywhere, especially in the extreme or hotspot areas (e.g., disaster areas, mountains, and oceans) due to limited service coverage and capacity. The integration of multi-dimensional networks consisting of space, air, and ground layers is expected to provide solutions in delivering cost-effective and ubiquitous Internet of things (IoT) services for billions of users and interconnected smart devices. Autonomous data collection, exchange, and processing across different network segments with minimal human interventions in space-air-ground IoT (SAG-IoT) can bring great convenience to consumers, however, it also suffers new attacks from intruders. Severe privacy invasion, reliability issues, and security breaches of SAG-IoT can hinder its wide deployment. The emerging blockchain holds great potentials to address the security concerns in SAG-IoT, thanks to its prominent features of decentralization, transparency, immutability, traceability, and auditability. Despite of the benefits of blockchain-empowered SAG-IoT, there exist a series of fundamental challenges in terms of efficiency and regulation due to the intrinsic characteristics of SAG-IoT (e.g., heterogeneity, time-variability, and poor interoperability) and the limitations of existing blockchain approaches (e.g., capacity and scalability). This article presents a comprehensive survey of the in...