Media Access Protocols For A Scalable Optical Interconnection Network
نویسندگان
چکیده
Hierarchical optical interconnection networks have the potential of solving the communication bottleneck that has evolved in parallel processing systems due big increases in processor speeds. Hierarchical Optical Ring Interconnection Network (HORN) [12] is one network architecture that was proposed to provide scalability to a larger number of processing nodes (PNs) with low latency and high bandwidth. In HORN PNs are arranged in rings and those rings are grouped together hierarchically in higher level rings. While collisions of data from multiple sources in hierarchical networks like HORN are reduced by separating nodes spatially and by wavelength, they can’t be prevented completely and a media access (MAC) protocols must be used to that end. An in depth analysis of five collisionfree, single hop protocols is performed in terms of average delay and system throughput. The protocols analyzed are: time division multiple access (TDMA) [13, 14], TDMA with arbitration [12, 13, 14], FatMAC [6], DMON [15], and token hierarchical optical ring network (THORN). The first four protocols are documented in the literature but the fifth, THORN, was developed expressly for HORN. While all the protocols support the scalability objectives of HORN, THORN is shown to have the lowest delay and a throughput comparable to the other four protocols.
منابع مشابه
A Class of Highly Scalable Optical Crossbar-Connected Interconnection Networks (SOCNs) for Parallel Computing Systems
ÐA class of highly scalable interconnect topologies called the Scalable Optical Crossbar-Connected Interconnection Networks (SOCNs) is proposed. This proposed class of networks combines the use of tunable Vertical Cavity Surface Emitting Lasers (VCSEL's), Wavelength Division Multiplexing (WDM) and a scalable, hierarchical network architecture to implement large-scale optical crossbar based netw...
متن کاملHybrid Media Access Protocols for a DSM System Based on Optical WDM Networks
Scalable, hierarchical, all-optical Wavelength Division Multiplexed (WDM) networks for interconnection in distributed cluster-based computing systems have been recently considered. Hybrid access protocols combining reservation and pre-allocation have been studied for this type of network which supports a distributed shared memory (DSM) environment. The objectives of the protocols are reduced av...
متن کاملCoherence for Photonically Scalable Shared Memory Systems
This paper develops a framework for simulations, where a system component is represented inthe simulation by a module of source code, isolated from the rest of the program. A message passing facility is used for inter-module communication. By writing simulations in this way, it is faster and more reliable to create simulations for comparison purposes. This idea is validated by the simulation of...
متن کاملSCOPIN: A New Scalable Optical Interconnection Network for Multiprocessor Systems
We present a design of a scalable interconnection network that possesses a hierarchical structure. We also present the network topology, features, and performance analysis. The proposed network is well suited to optical implementation and will be used in massively parallel systems. This network is called a SCalable OPtical Interconnection Network (SCOPIN). SCOPIN is a single-hop, scalable, flex...
متن کاملEfficient Distributed Control Routing and Wavelength Assignment Mechanism for a Scalable Hierarchical Single-hop WDM all-Optical Interconnection Network
In this paper we propose an efficient distributed routing and wavelength allocation method for a Single-hop WDM (Wavelength Division Multiplexing) all-Optical Interconnection Network for Scalable Multiprocessor systems. By wavelength allocation, we mean the assignment of unique wavelength(s) to the access nodes. The WDM techniques enable extraction of a larger amount of usable bandwidth. Routin...
متن کامل