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Optimal channel allocation policies for access control of circuit-switched traffic in ISDN environments

机译:ISDN环境中用于电路交换流量访问控制的最佳信道分配策略

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The problem of adaptively managing the transmission bandwidth of an integrated network by implemented optimal partitioning policies for the access control of circuit-switched traffic is studied. Precise formulations within an optimization framework of access control problems, both at an isolated multiplexer level and at the overall network level, are developed. For the simple case of a single multiplexer supporting traffic with identical bandwidth requirements, an iterative scheme with guaranteed fast convergence is presented for the determination of optimal channel allocations. For the more general scenario of a multiplexer supporting traffic with nonidentical bandwidth requirements, a methodology is developed to handle the access control problem by a mixed-integer programming formulation. This methodology is further extended to the network-wide access control scenario, and some implementational issues are discussed. A detailed quantitative evaluation of the proposed algorithm is conducted under different loading conditions, and the corresponding performance and efficiency are compared with those of other known procedures.
机译:研究了通过对电路交换流量的访问控制实施最佳分区策略来自适应地管理集成网络的传输带宽的问题。在隔离多路复用器级别和整个网络级别的访问控制问题的优化框架内,开发了精确的公式。对于单个多路复用器支持具有相同带宽要求的流量的简单情况,提出了一种具有保证快速收敛的迭代方案,用于确定最佳信道分配。对于支持带宽需求不相同的流量的多路复用器的更一般情况,开发了一种方法来通过混合整数编程公式来处理访问控制问题。此方法进一步扩展到了全网络访问控制方案,并讨论了一些实现问题。在不同的加载条件下对该算法进行了详细的定量评估,并将相应的性能和效率与其他已知过程进行了比较。

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