Dynamic Expansion of M : N Protection Groups in GMPLS Optical Networks
نویسندگان
چکیده
In order to provide reliable connections across metropolitan and wide-area optical networks, the network operator must provide some degree of redundancy so that traffic can be switched from damaged working paths to backup paths that are disjoint from the working paths that they are protecting. In the most general form of path protection, N working paths between two client edge nodes are protected by M backup paths. The set of working and protection paths forms a M :N protection group. In the near future, optical transport networks (OTNs) will use an automated control plane to set up, tear down, or modify connections between client edge nodes. If protection groups are allowed to evolve over time, with working and backup paths being set up or torn down individually, it may be necessary to modify other working and backup paths in addition to those that are being created or destroyed, in order to maximize network utilization. In this paper, we examine the mechanisms that can support adaptive M :N protection group management and describe how existing Generalized Multi-Protocol Label Switching (GMPLS) signaling protocols allow this capability to be deployed in the OTN.
منابع مشابه
An Analytical Approach to Shared Backup Path Provisioning in GMPLS Networks
As GMPLS and its supporting set of protocols develop into a viable control plane for optical networks, an important function that they will need to support will be the restoration and protection function that has been a major feature of legacy optical networks. Several models have been proposed for protection with GMPLS using shared backup paths. This previous work has not investigated the effe...
متن کاملGMPLS-Based Control Plane for Optical Networks: Early Implementation Experience
Generalized Multi-Protocol Label Switching (GMPLS) extends MPLS signaling and Internet routing protocols to provide a scalable, interoperable, distributed control plane, which is applicable to multiple network technologies such as optical cross connects (OXCs), photonic switches, IP routers, ATM switches, SONET and DWDM systems. It is intended to facilitate automatic service provisioning and dy...
متن کاملEvaluation of Novel Resilience Schemes in Dynamic Optical Transport Networks*
Today, Wavelength Division Multiplexing (WDM) transmission systems are deployed extensively in transport networks. They are used mainly for static point-to-point connections. With the availability of fast reconfigurable Optical Cross Connects (OXC) and the introduction of a control plane in the Optical Transport Network (OTN), optical channel based logical networks can be built for dynamic WDM ...
متن کاملA novel method for QoS provisioning with protection in GMPLS networks
In this paper, a new optimal policy is introduced to determine, adapt, and protect the Generalized MultiProtocol Label Switching (GMPLS) network topology based on the current traffic load. The Integrated Traffic Engineering (ITE) paradigm provides mechanisms for dynamic addition of physical capacity to optical networks. In the absence of such mechanisms, the rejection of incoming requests may b...
متن کاملGMPLS label space minimization through hypergraph layouts
All-Optical Label Switching (AOLS) is a new technology that performs packet forwarding without any optical-electrical-optical conversions. In this paper, we study the problem of routing a set of requests in AOLS networks using GMPLS technology, with the aim of minimizing the number of labels required to ensure the forwarding. We first formalize the problem by associating to each routing strateg...
متن کامل