用区块链和零信任架构提升低空无人机网络的路由安全与稳定
Blockchain-Enabled Routing for Zero-Trust Low-Altitude Intelligent Networks

- 结合区块链与软件定义边界构建零信任路由框架
- 平均延迟降低59%,传输成功率提升29%优于基准方法
- 适合关注无人机网络安全与智能路由的研究者
由于可扩展性和可移植性,低空智能网络(LAINs)在监控和灾后救援等领域至关重要。然而,无人机(UAVs)具有分布式拓扑和高移动性特征,易受安全威胁,可能影响数据传输的路由性能。本文聚焦于多无人机集群环境下的路由问题,提出基于软件定义边界与区块链技术的零信任架构,以管理无人机身份与移动性。针对同时优化端到端(E2E)延迟与传输成功比(TSR)的难题,建立整数非线性规划模型,难以求解;因此将其转化为分布式部分可观马尔可夫决策过程,并设计基于多智能体双深度Q网络的路由算法,引入软分层经验回放与优先级经验回放机制。大量仿真表明,所提框架相比基准方法平均降低59%的E2E延迟,提升29%的TSR,同时实现对低可信无人机更快更鲁棒的识别。
原文摘要 · Abstract (English)
Due to the scalability and portability, low-altitude intelligent networks (LAINs) are essential in various fields such as surveillance and disaster rescue. However, in LAINs, unmanned aerial vehicles (UAVs) are characterized by the distributed topology and high mobility, thus vulnerable to security threats, which may degrade routing performances for data transmissions. Hence, how to ensure the routing stability and security of LAINs is challenging. In this paper, we focus on the routing with multiple UAV clusters in LAINs. To minimize the damage caused by potential threats, we present the zero-trust architecture with the software-defined perimeter and blockchain techniques to manage the identify and mobility of UAVs. Besides, we formulate the routing problem to optimize the end-to-end (E2E) delay and transmission success ratio (TSR) simultaneously, which is an integer nonlinear programming problem and intractable to solve. Therefore, we reformulate the problem into a decentralized partially observable Markov decision process. We design the multi-agent double deep Q-network-based routing algorithms to solve the problem, empowered by the soft-hierarchical experience replay buffer and prioritized experience replay mechanisms. Finally, extensive simulations are conducted and the numerical results demonstrate that the proposed framework reduces the average E2E delay by 59\% and improves the TSR by 29\% on average compared to benchmarks, while simultaneously enabling faster and more robust identification of low-trust UAVs.
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