arXiv:2606.03811cs.CRcs.AI2026-06被引 3

AI代理让蠕虫能自适应攻击,靠窃取算力持续进化。

AI Agents Enable Adaptive Computer Worms

论文配图:AI Agents Enable Adaptive Computer Worms
图 1 · 摘自论文原文
  • 用开源大模型在被控设备上推理,动态生成攻击策略。
  • 在跨平台网络中利用真实漏洞传播,感染成本趋近于零。
  • 无需依赖云服务,防御机制如限流失效,适合安全研究者关注。

计算机蠕虫是通过复制自身在网络中传播的恶意软件。传统蠕虫如WannaCry依赖预设漏洞,可通过打补丁阻止传播。本文展示人工智能(AI)代理使一种根本性新威胁成为现实:可针对每个目标生成定制化攻击策略的蠕虫。该蠕虫寄生在被攻陷的机器上,利用其开放权重的大语言模型(LLMs)进行持续推理或扩展攻击范围。在涵盖Linux、Windows和物联网(IoT)设备的网络中,蠕虫通过利用常见真实企业网络漏洞实现传播。由于蠕虫依赖窃取计算资源,攻击者每次新增感染的边际成本为零,造成攻防间的经济失衡。此外,因无需依赖商业AI平台,中心化安全控制(如服务拒绝、速率限制)在结构上已无效。结果表明,自维持的AI驱动网络威胁已不再是理论设想。我们必须为自主生成式对手做好准备:无需人工干预、不依赖固定漏洞代码,而是具备实时推理、适应观察并生成攻击逻辑能力的恶意系统。

原文摘要 · Abstract (English)

A computer worm is malware that spreads on a network by replicating itself from one machine to another. Traditional worms, like WannaCry, exploited predetermined vulnerabilities, and their spread can be halted by patching those vulnerabilities. Here we show that artificial intelligence (AI) agents enable a fundamentally new threat: a worm that generates tailored attack strategies to each target it encounters. The worm parasitically uses compromised machines to run open-weight large language models (LLMs) to sustain its reasoning, or extend its reach for further attacks. Deployed on a network of machines spanning Linux, Windows, and IoT (Internet of Things) devices, the worm propagated by exploiting common, real-world corporate network vulnerabilities. Since the worm is powered by stolen compute, the attacker's marginal cost per new infection is zero. This creates a destabilizing economic asymmetry between attackers and defenders. Moreover, because the worm requires no commercial AI platform, centralized safety controls, such as service refusals or rate limiting, are structurally irrelevant. Our results demonstrate that self-sustaining AI-driven cyber-threats are no longer theoretical. We must prepare for autonomous generative adversaries: malware systems that propagate without human operators and are defined not by fixed exploit code, but by the capacity to reason about targets, adapt to observations, and synthesize attack logic in real time.

AI安全自适应攻击蠕虫病毒大模型滥用

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。