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Simulation of WAN Optimization Protocols:
Execute and emulate WAN optimization protocols like TCP optimization or data compression approaches. Study their effects on minimizing the latency, enhancing the throughput, and improving the bandwidth usage via a simulated WAN environment. Compare numerous optimization approaches to regulate which delivers the best performance.
MPLS in WAN Environments:
To mimic the implementation of MPLS (Multiprotocol Label Switching) in a WAN scenario. Concentrate on traffic engineering, QoS (Quality of Service), and reliability enhancements that MPLS can deliver in large-scale networks. Measure how MPLS improves the WAN performance compared to traditional IP routing.
Dynamic Routing Protocols in WANs:
Execute dynamic routing protocols like OSPF (Open Shortest Path First) or EIGRP (Enhanced Interior Gateway Routing Protocol) within a WAN setup. To mimic the scenarios with changing network loads and failures to measures the protocol’s ability to rapidly adjust and maintain optimal routes.
Software-Defined WAN (SD-WAN):
Mimic an SD-WAN environment, in which we can discover how software-defined networking principles can enhance the traffic routing across multiple WAN connections. Measure the benefits of centralized control, dynamic path selection, and improved security features in a WAN setup.
BGP Route Optimization in WAN:
Execute Border Gateway Protocol (BGP) in a WAN environment and emulate the route optimization approaches like prefix aggregation or route reflection. Measure how these approaches enhance network stability and performance in large-scale WAN deployments with multiple autonomous systems.
WAN Redundancy and Failover Mechanisms:
Mimic a WAN setup with redundancy and failover mechanisms using protocols such as HSRP (Hot Standby Router Protocol) or VRRP (Virtual Router Redundancy Protocol). Validate and measures how the WAN responds to router or link failures, make sure the continuous network availability and minimal downtime.
WAN Security Protocols Implementation:
Execute security protocols such as IPsec (Internet Protocol Security) or SSL/TLS for protecting the WAN communications. Emulate the encryption and authentication processes, and measures the effects on network performance, especially in latency and throughput, in a WAN environment.
Hybrid WAN Protocol Simulation:
Mimic a hybrid WAN environment that integrates the numerous WAN technologies like MPLS, broadband, and LTE. Measures on how traffic is handled and enhanced via these numerous technologies, that concentrates on performance, cost-efficiency, and reliability.
We provide the complete details about how the sample projects for WAN protocol will performs in diverse scenarios using the OMNeT++ tool. We plan to elaborate the details about the WAN protocol.