Integrated simulation and emulation using adaptive time dilation

H. Lee, D. Thuente, M. Sichitiu
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引用次数: 12

Abstract

Simulation and emulation techniques are commonly used to evaluate the performance of complex networked systems. Simulation conveniently predicts the behavior of a complex networked system while usually requiring fewer simplifying model assumptions often necessary for theoretical analysis. In contrast, emulation does not need to re-implement the target real systems, so it may improve on the implementation efficiency of simulation while maintaining much of the realism of testbeds. A hybrid approach in which simulation nodes connect to emulation hosts can be used to combine the advantages of both approaches. In this paper, we propose integrating simulation with emulation using adaptive time dilation to evaluate system performance. If a simulator schedules its events in real time and the simulation time keeps up with the real time, then the hybrid system works very well and meets its deadlines. However, a heavily-loaded simulator can introduce significant simulation delays and thereby create situations where these delays impact the accuracy of the system. Our approach uses time dilation to reduce simulation delays and thus increasing the accuracy of the integrated simulation and emulation system. Our adaptive time dilation dynamically controls the time dilation factor to avoid system overloads for both the simulation and the emulation components and to improve the execution correctness of the hybrid system.
采用自适应时间膨胀进行综合仿真与仿真
仿真和仿真技术通常用于评估复杂网络系统的性能。仿真可以方便地预测复杂网络系统的行为,同时通常需要较少的简化模型假设,而这些假设通常是理论分析所必需的。相比之下,仿真不需要重新实现目标真实系统,因此它可以在保持测试平台的真实性的同时提高仿真的实现效率。仿真节点连接到仿真主机的混合方法可以结合这两种方法的优点。在本文中,我们提出将仿真与仿真相结合,使用自适应时间膨胀来评估系统性能。如果模拟器实时安排其事件,并且模拟时间与实时时间保持一致,那么混合系统就能很好地工作并满足其截止日期。然而,负载过重的模拟器可能会引入显著的仿真延迟,从而造成这些延迟影响系统准确性的情况。我们的方法使用时间膨胀来减少仿真延迟,从而提高集成仿真和仿真系统的准确性。自适应时间膨胀动态控制时间膨胀因子,避免了仿真组件和仿真组件的系统过载,提高了混合系统的执行正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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