论文标题

空间防火墙:大规模隔离恶意软件流行病大型无线网络

Spatial Firewalls: Quarantining Malware Epidemics in Large Scale Massive Wireless Networks

论文作者

Elsawy, Hesham, Kishk, Mustafa A., Alouini, Mohamed-Slim

论文摘要

预计数十亿个无线设备可以参与大数据汇总和智能自动化,以接触网络和物理世界。如此大规模的超密集的无线连接容易受到恶意软件(恶意软件)流行病的影响。恶意软件蠕虫可以利用多跳的无线连接到偷偷摸摸地散布在整个无线网络中,而不会在核心网络上注意到安全服务器。然后,对手可以使用折衷的设备来远程发动网络攻击,从而造成严重的物理损害并威胁公共安全。本文概述了大规模无线网络(LSWN)中恶意软件流行病的类型,威胁和传播模型。然后,本文提出了一种针对LSWN恶意软件流行病的新颖且具有成本效益的对策,称为空间防火墙。结果表明,配备具有最先进的安全机制的策略性选择的小部分(即少于10 \%)的设备足以创建隔离恶意软件流行病的空间安全区域。然后,通过按需局部软件修补程序来治愈隔离的感染设备。为此,讨论并比较了几种防火墙部署策略。

Billions of wireless devices are foreseen to participate in big data aggregation and smart automation in order to interface the cyber and physical worlds. Such large-scale ultra-dense wireless connectivity is vulnerable to malicious software (malware) epidemics. Malware worms can exploit multi-hop wireless connectivity to stealthily diffuse throughout the wireless network without being noticed to security servers at the core network. Compromised devices can then be used by adversaries to remotely launch cyber attacks that cause large-scale critical physical damage and threaten public safety. This article overviews the types, threats, and propagation models for malware epidemics in large-scale wireless networks (LSWN). Then, the article proposes a novel and cost efficient countermeasure against malware epidemics in LSWN, denoted as spatial firewalls. It is shown that equipping a strategically selected small portion (i.e., less than 10\%) of the devices with state-of-the-art security mechanisms is sufficient to create spatially secured zones that quarantine malware epidemics. Quarantined infected devices are then cured by on-demand localized software patching. To this end, several firewall deployment strategies are discussed and compared.

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