Development of an Improved Application Specific Tunelling Protocol Selection Scheme for Site to Site Virtual Private Networks
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– Development of an Improved Application Specific Tunelling Protocol Selection Scheme for Site to Site Virtual Private Networks –
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This dissertation presents the development of an improved application-specific tunneling protocol selection scheme (iastpss) for a site-to-site virtual private network (VPN).
The aim is to develop an improved tunneling protocol selection scheme for site-to-site VPN that is application-specific, requiring security, bandwidth, and time sensitivity as a service for applications.
Astpss has been developed for security, bandwidth, and time-sensitive applications, but in the internet protocol security (ipsec) tunnel which is responsible for providing security as a service to applications,
the security algorithms used such as triple data encryption standard (3des) and message digest 5 (md5) are vulnerable to a couple of attacks that exposed the network to such attacks.
Network performance was measured using throughput, latency, and round-trip time (rtt) as metrics. In the first stage of development in the ipsec tunnel, using these metrics, a trade-off of network performance for security occurred in iastpss in comparison to astpss due to the computational overhead involved in the encryption process of iastpss.
The second instance of iastpss was yet developed for the ipsec tunnel by using open shortest path first (ospf) routing protocol to improve route convergence time and scale up the network.
The effect of using ospf was seen in the improvement of the network performance in throughput by 1.62% with a corresponding reduction in latency and rtt by 12.58% and 9.25% respectively compared to the first instance of iastpss that was configured with ripv2.
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