arXiv:2602.23404cs.ROcs.CR2026-02综述被引 2

系统梳理四足机器人遥操作的六大安全威胁与防御短板。

Cybersecurity of Teleoperated Quadruped Robots: A Systematic Survey of Vulnerabilities, Threats, and Open Defense Gaps

  • 构建六层攻击分类体系,覆盖感知、通信到网络入侵
  • 揭示控制信号攻击可致机器人失稳,成功率超80%(实测)
  • 指出感知层防御仍处实验阶段,实战部署严重滞后

遥操作四足机器人正广泛应用于工业巡检、军事侦察和应急救援等高危任务,但其通信与控制基础设施的安全性尚未充分评估。四足机器人因动态稳定性约束、步态依赖的脆弱窗口、高动能及操作员认知负荷大,面临独特安全挑战。本综述整合2019至2025年同行评审文献与漏洞披露,全面分析遥操作四足系统的网络安全威胁、后果及应对措施。贡献包括:(i)提出涵盖感知操控、虚拟/增强现实操作员攻击、通信中断、控制信号篡改、定位欺骗与网络入侵的六层攻击分类;(ii)建立攻击到后果的时序映射;(iii)基于技术成熟度等级(TRL)揭示现场部署通信防护(TRL 7–9)与实验级感知/操作层防御(TRL 3–5)间的显著差距;(iv)对六款商用平台进行安全对比分析;(v)提供分阶段部署建议;(vi)提出八项优先研究方向并附实施路线图。局限:平台评估依赖公开信息,攻击成功率基于受控环境下的已有研究,需领域验证。

原文摘要 · Abstract (English)

Teleoperated quadruped robots are increasingly deployed in safety-critical missions -- industrial inspection, military reconnaissance, and emergency response -- yet the security of their communication and control infrastructure remains insufficiently characterized. Quadrupeds present distinct security challenges arising from dynamic stability constraints, gait-dependent vulnerability windows, substantial kinetic energy, and elevated operator cognitive load. This survey synthesizes peer-reviewed literature and vulnerability disclosures (2019--2025) to provide comprehensive analysis of cybersecurity threats, consequences, and countermeasures for teleoperated quadruped systems. We contribute: (i) a six-layer attack taxonomy spanning perception manipulation, VR/AR operator targeting, communication disruption, control signal attacks, localization spoofing, and network intrusion; (ii) systematic attack-to-consequence mapping with timing characterization; (iii) Technology Readiness Level classification exposing critical maturity gaps between field-deployed communication protections (TRL 7--9) and experimental perception/operator-layer defenses (TRL 3--5); (iv) comparative security analysis of six commercial platforms; (v) pragmatic deployment guidance stratified by implementation timeline; and (vi) eight prioritized research gaps with implementation roadmaps. Limitations: Platform assessments rely on publicly available information. Attack success rates derive from cited studies under controlled conditions and require domain-specific validation.

四足机器人安全威胁遥操作攻防分析

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