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Modeling analysis of cost effective high availability security architecture for whole of government systems to cater DDoS attack

机译:用于整个政府系统的高性价比高可用性安全体系结构的建模和分析,以应对DDoS攻击

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A Distributed Denial of Service (DDoS) attack can inflict a grave toll on revenues. Developing countries like Nepal where the E-government system services are in infancy state; if attack like DDoS occurs the probability of dying out of system itself is more. Citizens may be reluctant in using E-services. To handle such challenges, this paper compares various security architectures for E-government systems and proposes the high availability security architecture suitable for whole of government systems. The model is analyzed for high availability using SHARPE software package. Sensitivity analysis is performed to verify the effectiveness of the model. Its downtime and cost effectiveness is evaluated as well. The proposed architecture is found to be very effective in E-government system where system's availability is a major concern. Software rejuvenation technique is incorporated to ensure the systems and data are readily available and quickly recoverable.
机译:分布式拒绝服务(DDOS)攻击可能会对收入造成严重造成损害。像尼泊尔这样的发展中国家,电子政务制度服务处于婴儿状态;如果像DDOS这样的攻击发生,那么就会消亡的概率更多。公民可能不愿意使用电子服务。为了处理此类挑战,本文比较了电子政务系统的各种安全架构,并提出了适合整个政府系统的高可用性安全架构。使用Sharpe软件包分析该模型的高可用性。执行灵敏度分析以验证模型的有效性。还评估了其停机和成本效益。拟议的架构被发现在系统的可用性是一个主要问题的政府系统中非常有效。并入软件恢复技术,以确保系统和数据很容易获得并快速可恢复。

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