Quickly learn the definitions and functions of key networking technologies, and how Netscout incorporates these technologies into products and solutions. These pages can help you understand benefits, what you can do with the technology, and how it works, with links to additional resources.
For education and training specific to Netscout products and solutions, please visit our Support and Services page.
In-depth guides and blogs written by talented network and security experts.
Learn About Cybersecurity
Cybersecurity fundamentals and modern techniques for safeguarding and defending electronic data from cyberattacks.
Learn About Network Monitoring
Key information on getting full network visibility to finally see and understand your entire network
Learn About DDoS Attacks
In a distributed denial-of-service (DDoS) attack, a network of computers work in tandem to overflow an access point and prevent legitimate users from accessing a service.
Learn About Mobile Network Monitoring and 5G
Understanding mobile network technologies to monitor and manage your entire network.
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What is SSL/TLS Exhaustion DDoS Attack?
SSL is a method of encryption used by many network communication protocols to improve security and address privacy concerns. As more transactions and services are protected by SSL, attacks on SSL secured services are on the rise. Some of these DDoS attacks are actually standard flood and TCP connection-based state exhaustion attacks that have been used for years to disrupt both secured and clear text services but have now been adapted to attack SSL services.
What is a State Exhaustion DDoS Attack?
State-exhaustion DDoS attacks, or resource exhaustion attacks, are primarily focused on taking down services or underlying network infrastructure which is responsible for delivering content to the end users. This might involve an attacker targeting DNS name servers with invalid name queries, thus resulting in increased load on the DNS infrastructure itself, disrupting service as users will no longer be able to connect to the services as the DNS name cannot be resolved to IP addresses. This DDoS attack vector was used in the DYN attack in 2016 which resulted in major web sites like Amazon, Twitter, Github and others becoming unavailable. The attacker might also target Transport Layer Security (TLS) endpoints, thereby resulting in legitimate users being unable to connect to the services. As the name suggests, these DDoS attacks target stateful devices such as Next Gen Firewalls with the intention of filling TCP State Tables with bogus connections. These DDoS attacks are typically employed by determined attackers who monitor and adjust their attacks for maximum impact.
What is Stateful Inspection?
Stateful inspection, also known as dynamic packet filtering, is a technology (i.e. in NGFW) that monitors the state of known active connections and uses this information to determine which network packets to allow through. It’s good for blocking access to applications, port scans, etc.
What is Stateful Protocol Analysis?
The process of comparing predetermined profiles of generally accepted definitions of benign protocol activity for each protocol state against observed events to identify deviations.
What is Stateless Inspection?
Stateless inspection doesn’t track individual connections / sessions, but makes a “go / no go” decision on a packet-by-packet basis. It’s better for stopping certain types of DDoS attacks (i.e. TCP-state exhaustion) and blocking reputational-based IoCs in bulk. NETSCOUT AED is a stateless packet processing device.
What is Stealth Mode?
Operating an intrusion detection and prevention sensor without IP addresses assigned to its monitoring network interfaces.
Cybersecurity Awareness Month
Every October, the NETSCOUT team promotes the conversation around Cybersecurity Awareness Month. We share resources and expertise on how everyone, from end users to service providers, can improve their cyber literacy, keep up with the newest technologies, and join the industry.
Learn how to stay safe online with our helpful resources.