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Joint routing and admission control problem under statistical delay and jitter constraints in MPLS networks

机译:MPLS网络中统计延迟和抖动约束下的联合路由和接纳控制问题

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摘要

Admission control algorithms are crucial for ensuring a near optimal resource allocation while guaranteeing the required Quality of Service (QoS) constraints. In this paper, a new routing and Admission Control mechanism in multi-protocol label switching (MPLS) based networks is proposed. The proposed mechanism relies on the packets' delay distributions that are empirically built on every link, to make adequate admission decisions. As a new connection request arrives, the admission control mechanism computes a feasible path, satisfying the connection's statistical QoS constraints (the maximum end-to-end delay, jitter and the QoS violation probability). For that, we formulate this problem as an Integer Linear Programming (ILP) model that is solved to optimality using the CPLEX mathematical programming tool for real-size networks. Simulation results show that the new admission control mechanism allows for low blocking rates while statistically satisfying the QoS constraints for both the new and the ongoing connections.
机译:准入控制算法对于确保接近最佳的资源分配,同时又保证所需的服务质量(QoS)约束至关重要。本文提出了一种新的基于多协议标签交换(MPLS)网络的路由和准入控制机制。所提出的机制依赖于根据经验建立在每个链路上的分组的延迟分布,以做出适当的接纳决策。当新的连接请求到达时,准入控制机制将计算一条可行的路径,以满足连接的统计QoS约束(最大的端到端延迟,抖动和QoS违反概率)。为此,我们将此问题公式化为整数线性规划(ILP)模型,该模型使用CPLEX数学编程工具针对实际网络求解为最优。仿真结果表明,新的准入控制机制允许低阻塞率,同时在统计上满足新连接和正在进行的连接的QoS约束。

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