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Optimal allocation of ATM networks resources by using a dynamic programming approach

机译:通过使用动态编程方法来优化ATM网络资源的分配

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A fundamental problem in a connection oriented ATM network that supports a broad spectrum of resource consuming services is defining the optimal way for network resources allocation. The network resources are specified as total bandwidth and total buffer size of the switching nodes. We formulate the problem of defining optimal resources that can be assigned to a set of different end-to-end connections as a minimization of a special recursive function with a number of independent arguments. This function includes an objective function and a set of functions related to the constraints imposed on the QoS characteristics of the end-to-end ATM connection. The objective function corresponds to bandwidth and/or the total buffer amount in the sequence of the ATM switching nodes appropriate to a given end-to-end connection. The typical constraints are imposed on cell loss probability, cell mean delivery time and cell variance delivery time in the end-to-end connection. The problem is solved by applying a dynamic programming concept. The solution includes an analysis of current network resources and the QoS characteristics which pertain to each node-to-node link of the end-to-end ATM connection.
机译:支持广泛的资源消耗服务的面向连接的ATM网络中的一个基本问题是定义网络资源分配的最佳方法。网络资源被指定为交换节点的总带宽和总缓冲区大小。我们提出了定义最佳资源的问题,该资源可以分配给一组不同的端到端连接,以最小化具有多个独立参数的特殊递归函数。该功能包括目标功能和一组与对端到端ATM连接的QoS特性施加的约束有关的功能。目标函数对应于适合于给定端到端连接的ATM交换节点序列中的带宽和/或总缓冲量。典型的约束条件是端到端连接中的信元丢失概率,信元平均传送时间和信元方差传送时间。通过应用动态编程概念可以解决该问题。该解决方案包括对与端到端ATM连接的每个节点到节点链路有关的当前网络资源和QoS特性的分析。

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