首页 >

通感一体化内生安全威胁及其跨层防御综述-“空天地一体化智能网联”专刊

王诗悦,程凯欣,陈昱帆,王磊,孙佳琛,谷江春,朱磊   

  1. 陆军工程大学
  • 收稿日期:2025-10-10 修回日期:2025-12-15 出版日期:2025-12-23 发布日期:2025-12-23
  • 通讯作者: 朱磊
  • 基金资助:
    国家自然科学基金;国家自然科学基金

A review of intrinsic security threats and the cross-layer defence mechanisms in integrated sensing and communication system

  • Received:2025-10-10 Revised:2025-12-15 Online:2025-12-23 Published:2025-12-23

摘要: 通信与感知一体化(Integrated Sensing and Communication, ISAC)作为6G网络的核心技术之一,通过共享频谱与硬件资源实现了通信与感知功能的高效协同,在空天地一体化智能网联领域展现出巨大应用潜力。然而,其融合特性引入了复杂的内生安全威胁,传统通信安全机制难以覆盖感知数据的完整性与实时性需求,尤其在航空航天等关键领域,安全漏洞可能引发灾难性后果。为此,本文系统性地分析了ISAC系统的内生脆弱性机理,并结合空天地一体化场景的特殊性,提出跨层动态防御框架以应对新型攻击路径。文章从硬件共享、频谱共享与资源竞争角度深入剖析ISAC系统内生冲突,揭示信号生成、数据采集及资源调度可攻击性的产生机理,并分析了其在航空通信场景中的影响程度。通过空天地一体化典型场景归纳跨层协同攻击模式,指出传统分域防御机制在时空动态威胁下的局限性。最后,提出物理层可信根基、数据语义安全防线、资源动态弹性调度协同防御体系,实现安全机制与通感功能链路的深度融合,进一步提炼出开放空天地环境下的技术挑战与标准化需求。这为面向未来6G网络的针对性安全架构研发奠定了初步的理论基础,也为航空领域内通感一体化应用的安全保障提供了初步参考。

关键词: 通感一体化, 空天地网络, 内生安全威胁, 跨层防御, 动态韧性

Abstract: Integrated sensing and communication (ISAC) is one of the core technologies for 6G networks. It achieves efficient synergy between communication and sensing functions by sharing spectrum and hardware resources. This demonstrates its immense potential for integrated air-ground-space intelligent connectivity. However, its integrated nature introduces complex security threats. Traditional communication security mechanisms face challenges in ensuring data integrity and real-time performance for sensing systems, especially in aerospace applications where vulnerabilities may lead to severe consequences. This paper systematically analyses the vulnerability mechanisms inherent in ISAC systems. By analyzing the unique characteristics of integrated air-ground-space scenarios, we proposes a cross-layer dynamic defence framework to counter novel attack vectors. This research systematically examines the inherent conflicts in ISAC systems from the perspectives of hardware sharing, spectrum sharing, and resource competition, and reveals the vulnerability mechanisms of signal generation, data collection, and resource scheduling. It further analyzes their impact extent in aviation communication scenarios. By summarizing cross-layer collaborative attack patterns in typical integrated space-air-ground scenarios, this paper points out the limitations of traditional domain-specific defense mechanisms under spatiotemporal dynamic threats. Finally, a collaborative defense system is proposed. It integrates the trusted foundation of the physical layer, the security defense line of data semantics, and the dynamic elastic scheduling of resources. The system achieves deep integration of security mechanisms and the communication-sensing function chain. The research also looks at the technical challenges and standardisation requirements in open air-ground-space environments. This lays a preliminary theoretical foundation for the development of targeted security architectures for future 6G networks, offering preliminary references for security assurance in integrated communication-sensing applications within the aviation field.

Key words: ISAC, Air-Ground-Space Network, Endogenous Security Threats, Cross-Layer Defense, Dynamic Resilience

中图分类号: