What Are DHCP Starvation Attacks And How Are They Prevented? Have you ever wondered how devices connect to the internet and what keeps that connection secure? In this informative video, we’ll explain everything you need to know about DHCP starvation attacks and how they can impact network functionality. We’ll start by describing what a DHCP server does and how it assigns IP addresses to devices on a network. Then, we’ll explore how malicious actors use DHCP starvation techniques to flood servers with fake requests, preventing real devices from connecting. You’ll learn about the typical process of DHCP communication—Discover, Offer, Request, and Acknowledgment—and how attackers exploit this process to exhaust available IP addresses. We’ll also cover the potential dangers of rogue DHCP servers and how they can redirect or intercept network traffic. To protect networks from these threats, we’ll discuss various security tools and best practices, such as port security, DHCP snooping, IP source guard, and adjusting IP pool sizes. Understanding these security measures is essential for maintaining a stable and safe network environment. Whether you're a network administrator or someone interested in cybersecurity, this video provides valuable insights into preventing DHCP starvation attacks and keeping your network secure. Subscribe for more tips on network security and internet infrastructure! ⬇️ Subscribe to our channel for more valuable insights. 🔗Subscribe: https://www.youtube.com/@InternetInfr... #NetworkSecurity #DHCP #CyberSecurity #InternetProtection #NetworkAttacks #CyberAwareness #ITSecurity #DataProtection #NetworkManagement #ITTips #CyberDefense #ITInfrastructure #SecureNetworks #TechTips #InformationSecurity About Us: Welcome to Internet Infrastructure Explained! Our channel is dedicated to demystifying the world of how the internet works, covering essential topics such as CDNs, IXPs, bandwidth, latency, network routing, DNS, data centers, web hosting, fiber optics, undersea cables, IP addressing, and much more.