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Exploring the Optimal Intercept Access Point Placement Problem in Software-Defined Networks

机译:在软件定义的网络中探索最佳拦截接入点放置问题

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In modern networks, Lawful Interception (LI) is one of the necessary means for security agencies to safeguard national security and prevent crimes. This article intends to explore the dynamic placement problem of intercept access points (IAPs) unique to SDNs, and their derived interception strategies. by selecting the optimal intercept access point, bring the shortest path among the three points-source, destination, and law enforcement agency (LEA). In order to reduce the redundant return intercepted traffic in the network, the operating cost of the LI system must be minimized. We also addressed the performance of the fastest access to the return traffic by the LEA, and the impact on the communication quality of the monitored users. Comparison among the three-interception strategies-source/destination interception model, blocking interception model, and bicast model. the simulation results expressed as a percentage that improved by using the different strategies compared with each other of the total costs of ISP, the performance of LEAs, and affected QoS of monitored users.
机译:在现代网络中,合法的拦截(LI)是安全机构维护国家安全和防止犯罪的必要手段之一。本文打算探讨截取的SDNS唯一的拦截接入点(IAP)的动态放置问题,以及它们的派生拦截策略。通过选择最佳拦截接入点,将三个点源,目的地和执法机构(LEA)之间的最短路径。为了减少网络中的冗余返回拦截流量,必须最小化LI系统的运营成本。我们还解决了LEA返回流量的最快访问权限,以及对受监控用户的通信质量的影响。三拦截策略源/目的地拦截模型,阻塞拦截模型和双载模型的比较。仿真结果表明,通过使用ISP的总成本,租赁性能的总成本和受监控用户的QoS相比,使用不同的策略表示为改善的百分比。

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