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Fast and efficient network protection method using path pre-cross-connected trails

机译:使用路径预交叉路径的快速有效的网络保护方法

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This paper investigates design methods of protection schemes in survivable WDM networks using the path protection p-trail in order to provide better capacity efficiency by eliminating the rigidness of the protection structure of the well-accepted protection scheme, the failure independent path protection (FIPP) pre-configured protection cycle (p-cycle). The flexibility in the protection structure yields lower cost in terms of spare capacity allocation while maintaining the high speed of protection switching. We develop two design approaches, the fully pre-cross-connected path protection trail (fpp-trail) and the partially pre-cross-connected path protection trail (ppp-trail), based on the degree of pre-cross-connectivity of the protection structure. In order to obtain optimally designed trails, we develop an optimization model based on a large-scale optimization technique, namely, column generation. Numerical results show that fpp-trails significantly improve the spare capacity efficiency compared to the FIPP p-cycle, and ppp-trails strike a balance between capacity redundancy and recovery delay. We observe that ppp-trails can achieveas low capacity redundancy asshared backup path protection (SBPP), while the recovery delay is kept lower than in SBPP and slightly higher than FIPP p-cycles by using selective signaling through a control plane that is aware of the location of the cross-connects that are not pre-configured in advance.
机译:本文研究了使用路径保护p-trail的可生存WDM网络中的保护方案的设计方法,以通过消除公认的保护方案,故障独立路径保护(FIPP)的保护结构的刚性来提供更好的容量效率。预先配置的保护周期(p周期)。保护结构的灵活性使备用容量分配的成本降低,同时保持保护切换的高速。我们开发了两种设计方法,即完全预交叉连接的路径保护路径(fpp-trail)和部分预交叉连接的路径保护路径(ppp-trail),具体取决于交叉路径的预交叉程度。保护结构。为了获得优化设计的路径,我们开发了基于大规模优化技术的优化模型,即列生成。数值结果表明,与FIPP p周期相比,fpp-trails显着提高了备用容量效率,并且ppp-trails在容量冗余和恢复延迟之间达到了平衡。我们观察到ppp-trails可以通过共享备份路径保护(SBPP)来实现低容量冗余,同时通过使用通过控制平面的选择性信令来使恢复延迟保持低于SBPP中的延迟和略高于FIPP p周期。尚未预先配置的交叉连接的位置。

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