通过信心参数提升协作机器人的抗攻击能力
Confidence Boosts Trust-Based Resilience in Cooperative Multi-Robot Systems
- 用物理信道信任度与信心参数λt动态评估邻近机器人合法性
- 可在轻微假设下抵御任意数量恶意机器人干扰
- 适用于对安全与响应速度有不同需求的协同任务
基于无线通信的多机器人系统易受网络攻击,影响协作安全与性能。利用支持机器人间通信的物理信道,可将恶意机器人检测与任务数据交换解耦。然而,来自物理信道的信任指示具有不确定性,需妥善处理。本文提出一种弹性协议,引入参数λt表示机器人对其邻近机器人合法性的信心。理论分析证明,在温和假设下,该协议能实现对任意数量恶意机器人的弹性协调。调节λt可权衡近优协作效率与快速任务执行;见图1。这是基础性能权衡,需根据具体任务评估。通过自动驾驶车队实验验证了方法有效性,其中部分车辆被恶意伪造。
原文摘要 · Abstract (English)
Wireless communication-based multi-robot systems open the door to cyberattacks that can disrupt safety and performance of collaborative robots. The physical channel supporting inter-robot communication offers an attractive opportunity to decouple the detection of malicious robots from task-relevant data exchange between legitimate robots. Yet, trustworthiness indications coming from physical channels are uncertain and must be handled with this in mind. In this paper, we propose a resilient protocol for multi-robot operation wherein a parameter λt accounts for how confident a robot is about the legitimacy of nearby robots that the physical channel indicates. Analytical results prove that our protocol achieves resilient coordination with arbitrarily many malicious robots under mild assumptions. Tuning λt allows a designer to trade between near-optimal inter-robot coordination and quick task execution; see Fig. 1. This is a fundamental performance tradeoff and must be carefully evaluated based on the task at hand. The effectiveness of our approach is numerically verified with experiments involving platoons of autonomous cars where some vehicles are maliciously spoofed.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。