DocumentCode
36487
Title
Can a DDoS Attack Meltdown My Data Center? A Simulation Study and Defense Strategies
Author
Anwar, Zeeshan ; Malik, Asad Waqar
Author_Institution
Nat. Univ. of Sci. & Technol., Islamabad, Pakistan
Volume
18
Issue
7
fYear
2014
fDate
Jul-14
Firstpage
1175
Lastpage
1178
Abstract
The goal of this letter is to explore the extent to which the vulnerabilities plaguing the Internet, particularly susceptibility to distributed denial-of-service (DDoS) attacks, impact the Cloud. DDoS has been known to disrupt Cloud services, but could it do worse by permanently damaging server and switch hardware? Services are hosted in data centers with thousands of servers generating large amounts of heat. Heating, ventilation, and air-conditioning (HVAC) systems prevent server downtime due to overheating. These are remotely managed using network management protocols that are susceptible to network attacks. Recently, Cloud providers have experienced outages due to HVAC malfunctions. Our contributions include a network simulation to study the feasibility of such an attack motivated by our experiences of such a security incident in a real data center. It demonstrates how a network simulator can study the interplay of the communication and thermal properties of a network and help prevent the Cloud provider´s worst nightmare: meltdown of the data center as a result of a DDoS attack.
Keywords
HVAC; cloud computing; computer centres; computer network management; computer network security; power aware computing; DDoS attack; HVAC systems; cloud services; data center meltdown; defense strategies; distributed denial-of-service attacks; heating-ventilation-and-air-conditioning systems; network management protocols; network simulation; server downtime prevention; thermal properties; Computer crime; Cooling; Data models; Heating; Monitoring; Servers; Temperature distribution; DDoS attack; Data center communications;
fLanguage
English
Journal_Title
Communications Letters, IEEE
Publisher
ieee
ISSN
1089-7798
Type
jour
DOI
10.1109/LCOMM.2014.2328587
Filename
6825828
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