Source-End DDoS Defense in IoT Environments

Samuel Mergendahl, Devkishen Sisodia, Jun Li, H. Çam
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引用次数: 7

Abstract

While the Internet of Things (IoT) becomes increasingly popular and pervasive in everyday objects, IoT devices often remain unprotected and can be exploited to launch large-scale distributed denial-of-service (DDoS) attacks. One could attempt to employ traditional DDoS defense solutions, but these solutions are hardly suitable in IoT environments since they seldom consider the resource constraints of IoT devices. This paper presents FR-WARD which defends against DDoS attacks launched from an IoT network. FR-WARD is an adaptation of the classic DDoS defense system D-WARD. While both solutions are situated near the attack sources and drop packets to throttle DDoS traffic, FR-WARD utilizes the fast retransmit mechanism in TCP congestion control to minimize resource penalties on benign IoT devices. Based on our analysis and simulation results, FR-WARD not only effectively throttles DDoS traffic but also minimizes retransmission overhead for benign IoT devices.
物联网环境下的源端DDoS防御
虽然物联网(IoT)在日常物品中变得越来越流行和普遍,但物联网设备通常仍然不受保护,并且可以被利用来发起大规模的分布式拒绝服务(DDoS)攻击。人们可以尝试采用传统的DDoS防御解决方案,但这些解决方案几乎不适合物联网环境,因为它们很少考虑物联网设备的资源限制。本文介绍了防御物联网网络发起的DDoS攻击的FR-WARD。FR-WARD是对经典DDoS防御系统D-WARD的改进。虽然这两种解决方案都位于攻击源附近并丢弃数据包以限制DDoS流量,但FR-WARD利用TCP拥塞控制中的快速重传机制来最大限度地减少良性物联网设备的资源损失。根据我们的分析和仿真结果,FR-WARD不仅有效地抑制了DDoS流量,而且还最大限度地减少了良性物联网设备的重传开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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