4.7 Article

Building Agile and Resilient UAV Networks Based on SDN and Blockchain

期刊

IEEE NETWORK
卷 35, 期 1, 页码 57-63

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/MNET.011.2000176

关键词

Blockchain; Handover; Routing; Unmanned aerial vehicles; Security; Resource management; Environmental monitoring; Software defined networking

资金

  1. National Natural Science Foundation of China [61976064, 61902083, 61702223]
  2. Project of National Defense Science and Technology Innovation Zone [18-H863-01-ZT-005-027-02]
  3. Key Research and Development Program for Guangdong Province [2019B010137004]
  4. National Key Research, Development Plan [2018YFB0803504]
  5. Guangdong Province Universities and Colleges Pearl River Scholar Funded Scheme (2019)
  6. Zhijiang International Young Talent Scheme (2019)

向作者/读者索取更多资源

This article introduces a new type of UAV network, SUV, based on SDN architecture and blockchain technology, which implements a logically centralized but physically distributed control plane through blockchain technology. SUV has features such as quick construction, flexibility, survivability, security, and programmability, making it suitable for 5G-oriented UAV networking.
In recent years, unmanned aerial vehicle (UAV) technology has developed rapidly and has been widely used in military operations, medical rescue, environmental monitoring, and so on. UAV networks are an important foundation for large-scale UAV collaborative work. Traditional mobile self-or-ganizing network technology is too complicated to be quickly constructed and dynamically adjusted according to application requirements. In this article, we propose a new type of UAV network based on SDN architecture and blockchain technology, which is named SUV. By using blockchain technology, SUV implements a logically centralized but physically distributed control plane, which is responsible for the routing calculation and configuration management of the UAV network. SUV can quickly build UAV networks according to the application requirements and communication environment. It has features such as flexibility, survivability, security, and programmability, and is suitable for 5G-oriented UAV networking.

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