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EdgeCookie: A Mitigation Solution Against Threatening TCP DDoS Attack in Edge Cloud
期刊文章

EdgeCookie: A Mitigation Solution Against Threatening TCP DDoS Attack in Edge Cloud

S.-X. Huang, T.-C. Chiu, J.-C. Lin 和 C.-H. Kuo
IEEE Transactions on Network and Service Management, 卷.23, 頁碼.6148-6162
2026
Web of Science ID: WOS:001827901300001

摘要

DRDoS edge computing security SYN flood Denial-of-service attack Floods Network security Synchronization Transmission control protocol Denial of Service Denialof- service attacks Distributed denial of service Distributed reflective denial-of-service Edge clouds Edge computing Edge server Security SYN flood TCP SYN flood Edge computing
With the explosive growth of GenAI service requirements, the demand for digital infrastructure and cloud resources continues to increase. At the same time, distributed denial-of-service (DDoS) attacks, particularly TCP-based vectors such as SYN flood and emerging TCP distributed reflective denial-of-service (DRDoS), have surged, posing a significant threat to service availability. Current mitigation strategies often fall short in effectively countering both attack types. Although the proliferation of edge computing offers opportunities to deploy mitigation closer to attack sources, it also introduces synchronization challenges across distributed edge servers. In this paper, we propose EdgeCookie, an edge-centric TCP flood attack mitigation architecture. EdgeCookie can mitigate TCP SYN floods, ACK floods, and emerging TCP reflection amplification attacks. Unlike existing switch-based defenses, EdgeCookie requires no specific hardware, making it suitable for running in resource-limited edge clouds. In the core mechanism, we introduce a novel HybridCookie that effectively solves synchronization challenges across distributed edge servers. Experimental results demonstrate that EdgeCookie can mitigate both TCP SYN flood and emerging TCP reflection amplification attacks without facing false positive issues, while maintaining high throughput and adding negligible latency to legitimate traffic. © 2004-2012 IEEE.

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