This paper illustrates the effects of the Hyper- Threading processor technology on the runtime performance of a parallel and distributed simulation middleware. A preliminary analysis of the middleware design and execution parameters is given to identify the tuning parameters and to evaluate the scalability of parallel simulation. A real testbed scenario has been illustrated, based on the ARTÌS parallel and distributed simulation middleware. The experimental analysis has provided some interesting guidelines about the way to adapt the parallel and distributed simulation middleware to Hyper-Threading and to increase the execution speed of the simulation
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
This paper illustrates the effects of the Hyper- Threading processor technology on the runtime perfo...
This paper illustrates the definition and analysis of a collection of solutions adopted to increase ...
This paper illustrates the definition and analysis of a collection of solutions adopted to increase ...
This paper illustrates the definition and analysis of a collection of solutions adopted to increase ...
Simulation has become indispensable in the process of designing, verifying, and testing complex digi...
Simulation has become indispensable in the process of designing, verifying, and testing complex digi...
none4noParallel and distributed simulations enable the analysis of complex systems by concurrently e...
Servers running distributed simulation applications need to process a large number of small packets ...
Servers running distributed simulation applications need to process a large number of small packets ...
By introducing physically motivated time delays, simulation models can be partitioned into decoupled...
By introducing physically motivated time delays, simulation models can be partitioned into decoupled...
Servers running distributed simulation applications need to process a large number of small packets ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
This paper illustrates the effects of the Hyper- Threading processor technology on the runtime perfo...
This paper illustrates the definition and analysis of a collection of solutions adopted to increase ...
This paper illustrates the definition and analysis of a collection of solutions adopted to increase ...
This paper illustrates the definition and analysis of a collection of solutions adopted to increase ...
Simulation has become indispensable in the process of designing, verifying, and testing complex digi...
Simulation has become indispensable in the process of designing, verifying, and testing complex digi...
none4noParallel and distributed simulations enable the analysis of complex systems by concurrently e...
Servers running distributed simulation applications need to process a large number of small packets ...
Servers running distributed simulation applications need to process a large number of small packets ...
By introducing physically motivated time delays, simulation models can be partitioned into decoupled...
By introducing physically motivated time delays, simulation models can be partitioned into decoupled...
Servers running distributed simulation applications need to process a large number of small packets ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...
In this paper we deal with the impact of multi and many-core processor architectures on simulation. ...