DocumentCode :
2391382
Title :
Hybrid CPU-GPU Distributed Framework for Large Scale Mobile Networks Simulation
Author :
Bilel, Ben Romdhanne ; Navid, Nikaein ; Bouksiaa, Mohamed Said Mosli
Author_Institution :
Eurecom, Sophia Antipolis, France
fYear :
2012
fDate :
25-27 Oct. 2012
Firstpage :
44
Lastpage :
53
Abstract :
Most of the existing packet-level simulation tools are designed to perform experiments modeling a small to medium scale networks. The main reason of this limitation is the amount of available computation power and memory in quasi mono-process simulation environment. To enable efficient packet-level simulation for large scale scenario, we introduce a new CPU-GPU co-simulation framework where synchronization and experiment design are performed on CPU and node´s processes are executed in parallel on GPU according to the master/worker model [13]. The framework is developed using Compute-Unified Device Architecture (CUDA) and denoted as Cunetsim, CUDA network simulator. To study the performance gain when GPU is used, we also introduce the CPU-legacy version of Cunetsim optimized for multi-core architecture. In this work, we present Cunetsim architecture, design concept, and features. We evaluate the performance of Cunetsim (both versions) compared to Sinalgo and NS-3 using benchmark scenarios. Evaluation results show that Cunetsim execution time remains stable and that it achieves significantly lower computation time than CPU-based simulators for both static and mobile networks with no degradation in the accuracy of the results. We also study the impact of the hardware configuration on the performance gain and the simulation correctness. Cunetsim presents a proof of concept, demonstrating the feasibility of a fully GPU-based simulation rather than GPUoffloading or partial acceleration, through adequate architecture.
Keywords :
distributed processing; graphics processing units; mobile radio; parallel architectures; telecommunication computing; CPU-GPU cosimulation; CPU-legacy version; CUDA network simulator; Cunetsim architecture; GPU-based simulation; compute-unified device architecture; hybrid CPU-GPU distributed framework; large scale mobile network; master-worker model; multicore architecture; packet-level simulation tool; quasi monoprocess simulation; small-to-medium scale network; Computational modeling; Computer architecture; Data models; Graphics processing units; Hardware; Monitoring; Random access memory; CUDA; GPGPU; Hybrid simulation; Large scale; network simulation; wireless simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Distributed Simulation and Real Time Applications (DS-RT), 2012 IEEE/ACM 16th International Symposium on
Conference_Location :
Dublin
ISSN :
1550-6525
Print_ISBN :
978-1-4673-2954-5
Type :
conf
DOI :
10.1109/DS-RT.2012.15
Filename :
6365103
Link To Document :
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