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An adaptive virtual path allocation policy for broadband networks

机译:宽带网络的自适应虚拟路径分配策略

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We propose a new policy for virtual path bandwidth allocation in broadband networks. Based on a threshold scheme, our policy handles the inherent tradeoff between bandwidth utilization and processing costs. In each virtual path controller the thresholds are chosen so as to keep bandwidth utilization high, while obtaining a low rate of processing requests. Two novel ideas are used in our threshold scheme: adaptivity, which results in a better prediction of future bandwidth requirements; and hysteresis, which prevents excessive processing of requests due to oscillations around thresholds. We tested the performance of our new bandwidth control scheme, and compared it with previously suggested schemes. The performance measures were the expected amount of unused bandwidth, the average signaling load and the blocking probability. Performance has been evaluated through numerical computations as well as by simulations. Our analysis is based on a time segmentation technique which allows us to reduce a Markov chain with NM states into M Markov chains with N states and a one-dimensional chain with M states. Our results show that our policy significantly improves upon previously suggested approaches.
机译:我们为宽带网络中的虚拟路径带宽分配提出了一个新的策略。基于阈值方案,我们的策略处理带宽利用率和处理成本之间的固有权衡。在每个虚拟路径控制器中,选择阈值以保持带宽利用率高,同时获得低处理请求的低速率。我们的阈值方案使用了两种新颖思路:适应性,这导致未来带宽要求的更好预测;和滞后,阻止由于距阈值周围的振荡而过度处理请求。我们测试了我们新的带宽控制方案的性能,并与先前建议的方案进行了比较。性能测量是预期的未使用带宽,平均信号负载和阻塞概率的预期金额。通过数值计算以及通过模拟来评估性能。我们的分析基于时间分割技术,使我们能够将Markov链与NM Markov链条的Markov链条与N个状态和M状态的一维链一起减少到M Markov链中。我们的研究结果表明,我们的政策明显提高了先前建议的方法。

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