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Dynamic circuit provisioning in all-optical WDM networks using lightpath switching

机译:使用光路切换的全光WDM网络中的动态电路配置

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In this paper we investigate the problem of provisioning holding-time-aware (HTA) dynamic circuits in all-optical wavelength division multiplexed (WDM) networks. We employ a technique called lightpath switching (LPS) wherein the data transmission may begin on one lightpath and switch to a different lightpath at a later time. Lightpath switches are transparent to the user and are managed by the network. Allowing LPS creates a number of segments that can use independent lightpaths. We first compare the performance of traditional routing and wavelength (RWA) assignment to routing and wavelength assignment with LPS. We show that LPS can significantly reduce blocking compared to traditional RWA. We then address the problem of routing dynamic anycast HTA dynamic circuits. We propose two heuristics to solve the anycast RWA problem: anycast with continuous segment (ACS) and anycast with lightpath switching (ALPS). In ALPS we exercise LPS, and provision a connection request by searching for the best candidate destination node is such a way that the network resources are utilized efficiently. In ACS we do not allow a connection request to switch lightpaths. The lightpaths to each candidate destination node of a request are computed using traditional RWA algorithms. We first compare the performance of ACS to ALPS and observe that ALPS achieves better blocking than ACS. Furthermore, we also compare the performance of these two anycast RWA algorithms to the traditional unicast RWA algorithm. We show that the anycast RWA algorithms presented here significantly outperform the traditional unicast RWA algorithms.
机译:在本文中,我们研究了在全光波分复用(WDM)网络中设置保持时间(HTA)动态电路的问题。我们采用一种称为光路切换(LPS)的技术,其中数据传输可以从一个光路开始,并在以后的时间切换到另一个光路。光通路交换机对用户是透明的,并且由网络管理。允许LPS会创建许多可以使用独立光路的线段。我们首先比较传统路由和波长(RWA)分配与LPS路由和波长分配的性能。我们证明,与传统的RWA相比,LPS可以显着减少阻塞。然后,我们解决了路由动态任播HTA动态电路的问题。我们提出了两种启发式方法来解决任播RWA问题:具有连续段的任播(ACS)和具有光路交换的任播(ALPS)。在ALPS中,我们执行LPS,并通过搜索最佳候选目标节点来提供连接请求,从而可以有效地利用网络资源。在ACS中,我们不允许连接请求切换光路。使用传统的RWA算法计算到请求的每个候选目标节点的光路。我们首先将ACS与ALPS的性能进行比较,并观察到ALPS比ACS具有更好的阻塞效果。此外,我们还将这两种任播RWA算法与传统的单播RWA算法的性能进行了比较。我们表明,此处介绍的任播RWA算法明显优于传统的单播RWA算法。

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