Network Denial of Service

T1498

Technique with 2 sub-techniques.View on attack.mitre.org

About this technique

Adversaries may perform Network Denial of Service (DoS) attacks to degrade or block the availability of targeted resources to users. Network DoS can be performed by exhausting the network bandwidth services rely on. Example resources include specific websites, email services, DNS, and web-based applications. Adversaries have been observed conducting network DoS attacks for political purposes and to support other malicious activities, including distraction, hacktivism, and extortion.

A Network DoS will occur when the bandwidth capacity of the network connection to a system is exhausted due to the volume of malicious traffic directed at the resource or the network connections and network devices the resource relies on. For example, an adversary may send 10Gbps of traffic to a server that is hosted by a network with a 1Gbps connection to the internet. This traffic can be generated by a single system or multiple systems spread across the internet, which is commonly referred to as a distributed DoS (DDoS).

To perform Network DoS attacks several aspects apply to multiple methods, including IP address spoofing, and botnets.

Adversaries may use the original IP address of an attacking system, or spoof the source IP address to make the attack traffic more difficult to trace back to the attacking system or to enable reflection. This can increase the difficulty defenders have in defending against the attack by reducing or eliminating the effectiveness of filtering by the source address on network defense devices.

For DoS attacks targeting the hosting system directly, see Endpoint Denial of Service.

Detection rules9

Rules on DetectionCode tagged with T1498 or one of its sub-techniques.

Sigma2

RuleLevelLog sourceTechnique
OpenCanary - NTP Monlist Requesthighopencanary / applicationT1498
Deployment Deleted From Kubernetes Clusterlowkubernetes / applicationT1498

Splunk7

RuleTypeRiskData sourceTechnique
Detect ARP PoisoningTTPNULLCisco IOS LogsT1498
Detect IPv6 Network Infrastructure ThreatsTTPNULLCisco IOS LogsT1498
Detect Port Security ViolationTTPNULLCisco IOS LogsT1498
Detect Rogue DHCP ServerTTPNULLCisco IOS LogsT1498
Detect Traffic MirroringTTPNULLCisco IOS LogsT1498
Large Volume of DNS ANY QueriesAnomalyNULLT1498.002
Ollama Excessive API RequestsAnomalyNULLOllama ServerT1498

Sub-techniques2

IDNameExamples
T1498.001Direct Network Flood0
T1498.002Reflection Amplification0

Groups1

Software2

Campaigns0

None recorded.

Procedure examples3

Groups1

Used byProcedure example
GroupAPT28

In 2016, APT28 conducted a distributed denial of service (DDoS) attack against the World Anti-Doping Agency.

Software2

Used byProcedure example
MalwareLucifer

Lucifer can execute TCP, UDP, and HTTP denial of service (DoS) attacks.

MalwareNKAbuse

NKAbuse enables multiple types of network denial of service capabilities across several protocols post-installation.

References3

  1. FSISAC FraudNetDoS September 2012 Open source
    FS-ISAC. (2012, September 17). Fraud Alert – Cyber Criminals Targeting Financial Institution Employee Credentials to Conduct Wire Transfer Fraud. Retrieved September 23, 2024.
  2. FireEye OpPoisonedHandover February 2016 Open source
    Ned Moran, Mike Scott, Mike Oppenheim of FireEye. (2014, November 3). Operation Poisoned Handover: Unveiling Ties Between APT Activity in Hong Kong’s Pro-Democracy Movement. Retrieved November 17, 2024.
  3. Symantec DDoS October 2014 Open source
    Wueest, C.. (2014, October 21). The continued rise of DDoS attacks. Retrieved April 24, 2019.

Data from MITRE ATT&CK® (Enterprise). ATT&CK® is a registered trademark of The MITRE Corporation.