|
| This Article | ||
| ||
| Share | ||
| Bibliographic References | ||
| Add to: | ||
| | ||
| Search | ||
| ||
1st International Workshop on Distributed Interactive Simulation and Real-Time Applications (DIS-RT '97)
Feedback Control in Time Warp Synchronized Parallel Simulators
Eilat, ISRAEL
January 09-January 10
ISBN: 0-8186-7773-2
| ASCII Text | x | ||
| Philip A. Wilsey, "Feedback Control in Time Warp Synchronized Parallel Simulators," Distributed Interactive Simulation and Real-Time Applications, International Workshop on, pp. 31, 1st International Workshop on Distributed Interactive Simulation and Real-Time Applications (DIS-RT '97), 1997. | |||
| BibTex | x | ||
| @article{ 10.1109/IDSRTA.1997.568655, author = {Philip A. Wilsey}, title = {Feedback Control in Time Warp Synchronized Parallel Simulators}, journal ={Distributed Interactive Simulation and Real-Time Applications, International Workshop on}, volume = {0}, year = {1997}, isbn = {0-8186-7773-2}, pages = {31}, doi = {http://doi.ieeecomputersociety.org/10.1109/IDSRTA.1997.568655}, publisher = {IEEE Computer Society}, address = {Los Alamitos, CA, USA}, } | |||
| RefWorks Procite/RefMan/Endnote | x | ||
| TY - CONF JO - Distributed Interactive Simulation and Real-Time Applications, International Workshop on TI - Feedback Control in Time Warp Synchronized Parallel Simulators SN - 0-8186-7773-2 SP EP A1 - Philip A. Wilsey, PY - 1997 KW - time warp simulation KW - feedback control systems KW - time warp synchronized parallel simulators KW - synchronization protocol KW - optimization parameter selection KW - cancellation strategies KW - state saving frequency KW - simulation parameters KW - design considerations KW - convergence KW - sampled output values KW - CPU cycles KW - overhead KW - simulation performance KW - dynamic parameter adjustment VL - 0 JA - Distributed Interactive Simulation and Real-Time Applications, International Workshop on ER - | |||
The time warp mechanism is one of the most important synchronization protocols for parallel simulation. However for most applications, the successful use of time warp requires the careful selection of time warp optimization parameters (e.g. cancellation strategies, state saving frequency, and so on). Unfortunately, the optimal setting for the simulation parameters may not hold across an application domain or even throughout the entire simulation lifetime of a single application. Consequently, several investigators have proposed the dynamic adjustment of simulation parameters over the lifetime of the simulation. The dynamic adjustment of simulation parameters requires careful design considerations. Many of these considerations are similar to the problems studied by traditional nonlinear and adaptive control theorists. These considerations include the need to implement an adjustment mechanism that converges to stable values and the need to understand how parameter adjustment affects (sampled) output values. However, the dynamic adjustment of simulation parameters occurs by using general CPU cycles and thus introduces overhead into the simulation. This overhead must be carefully controlled-too little processing and the control system may not respond correctly; too much processing and the overall simulation performance may deteriorate. We address the design of two distinct feedback control systems for dynamic parameter adjustment and describe the design considerations that were made in their construction.
Index Terms:
time warp simulation, feedback control systems, time warp synchronized parallel simulators, synchronization protocol, optimization parameter selection, cancellation strategies, state saving frequency, simulation parameters, design considerations, convergence, sampled output values, CPU cycles, overhead, simulation performance, dynamic parameter adjustment
Citation:
Philip A. Wilsey, "Feedback Control in Time Warp Synchronized Parallel Simulators," dis-rt, pp.31, 1st International Workshop on Distributed Interactive Simulation and Real-Time Applications (DIS-RT '97), 1997
Usage of this product signifies your acceptance of the Terms of Use.
