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Protection Techniques For Wavelength Division Multiplexing Networks using Resource Delayed Release Strategy

机译:利用资源延迟发布策略的波分复用网络保护技术

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Network availability is an important requirement in an optical telecommunication network. To overcome a disconnection, preparing a backup path before failure happens is required to reroute the affected traffic. This prevents any failure causing a significant amount of data loss or interruption in Wavelength Division Multiplexing (WDM) networks. Resource Delayed Release (RDR) is a new idea to improve the Service Provisioning Time (SPT) by adding the concept of idle optical channels. In earlier work [1] we proved that the delay in the removal of an idle optical channel helps the next service request to be carried immediately. In this paper, we address the problem of single link failure in WDM networks by comparing different protection methods when applied to the RDR strategy. We investigate and compare three algorithms that are mostly intended for maximization of the amount of remaining bandwidth over a damaged network. They are: Path Protection (PP), Link Protection (LP), and Partial Path Protection (PPP) [2]. The objective of this work is to apply the above protection methods on the RDR strategy to determine which method provides the best network performance in terms of Bandwidth Blocking Probability (BBP), Blocking Probability (BP), Service Provisioning Time (SPT), and recovery time (RT). Our simulation results show high network efficiency when using the RDR strategy with the PPP method for uniform traffic distribution. The highest BBP is when we do not apply any protection on RDR. When PPP is utilized there is a reduction of 58% in BBP, of 64% in BP, and of 40% in SPT. Additionally RDR with PPP results in the lowest RT measured.
机译:网络可用性是光电信网络中的重要要求。要克服断开连接,需要在发生受影响的流量之前准备失败之前的备份路径。这可以防止任何故障导致波分复用(WDM)网络中的大量数据丢失或中断。资源延迟释放(RDR)是通过添加空闲光学通道的概念来改进服务供应时间(SPT)的新想法。在早期的工作[1]中,我们证明了延迟拆除空闲光学通道有助于立即携带下一个服务请求。在本文中,我们通过在应用于RDR策略时比较不同的保护方法来解决WDM网络中单链路故障的问题。我们调查并比较三种算法,这些算法主要用于最大限度地在损坏的网络上最大限度地占据剩余带宽的量。它们是:路径保护(PP),链路保护(LP)和部分路径保护(PPP)[2]。这项工作的目的是在RDR策略上应用上述保护方法,以确定哪种方法在带宽阻塞概率(BBP),阻塞概率(BP),服务供应时间(SPT)和恢复方面提供最佳的网络性能时间(RT)。我们的仿真结果显示使用RDR策略与PPP方法进行统一交通分布时,高网络效率。最高的BBP是我们在RDR上不适用任何保护时。当使用PPP时,BBP的减少58%,BP中的64%,40%在SPT中。另外,具有PPP的RDR导致测量最低的RT。

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