A software-defined wide area network (SD-WAN) monitors, controls, and manages resources between remote branches and data centers. Engineers can control all wide area network (WAN) traffic through a single control point.
The conventional WAN function links users to applications hosted on servers in the data center. To help ensure security and reliable connectivity, it uses dedicated multiprotocol label switching (MPLS) circuits.
SD-WAN solutions have become popular with an increasing demand for quick, scalable, flexible connectivity across various network environments. Along with improving application performance, they reduce the total cost of ownership (TCO). TCO estimates expenses associated with purchasing, deploying, using, or retiring a product.
Many companies use SD-WAN software to seamlessly join enterprise networks to safely deliver applications and information.
SD-WAN offers a great user experience (UX) when connecting to the public cloud and SaaS applications through functionalities like:
While it’s primarily used for security, SD-WAN also serves a few other business purposes.
The SD-WAN architecture is made up of four key components.
Enterprise, branch, and data centers were the only applications the conventional WAN architecture supported. When a company uses SaaS and IaaS cloud-based applications, the traffic caused by accessing programs around the world puts too much pressure on traditional WAN architecture.
Modern applications live on the cloud instead of traditional servers. WAN architecture inherently supports traditional networks, causing extensive stress on the network with the widespread adoption of SaaS and IaaS cloud-based applications.
A traditional WAN network is based entirely on hardware network devices and relies on MPLS for effective network traffic flow. Various hardware devices and proprietary circuits are installed to route IP services to their intended clients.
The network requires multiple layers of installed hardware, so IT teams put a lot of effort into managing it. Scaling a traditional network is challenging because it requires advanced planning and network infrastructure.
With SD-WAN, a software tool manages everything, from connectivity to service delivery. It’s a virtual network strategy that combines broadband connections, MPLS, and long-term evolution (LTE), as well as established WAN technologies.
Global enterprises benefit from SD-WANs because they offer improved application performance, optimized cloud connectivity, and easier management.
Learn more about how WAN connects businesses to success.
Sagar Joshi is a former content marketing specialist at G2 in India. He is an engineer with a keen interest in data analytics and cybersecurity. He writes about topics related to them. You can find him reading books, learning a new language, or playing pool in his free time.
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