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Enhanced null message algorithm for hybrid parallel simulation systems with large disparity in time step

机译:时空差异较大的混合并行仿真系统的增强型空消息算法

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Modeling and simulation has received significant attention over the years for its ability to understand and transform real world systems. With the increasing of complexity and scale of the simulated systems, more computational power is required. Parallel discrete event simulation(PDES) is an important technology to integrate parallel computing into modeling and simulation. Time synchronization algorithm is the core of PDES, which determines the correctness and efficiency of the simulation. Traditional conservative synchronization algorithms, such as Chandy-Misra-Bryant(CMB) null message algorithm, use null message to synchronize the state and avoid deadlock among logical processes(LPs). But hybrid simulation systems contains both continuous models and discrete models, continuously changing states is typically modeled using time steps in hybrid simulation system. Therefore, hybrid systems with large disparity in time step are very common in real simulation systems. However, current conservative synchronization algorithm has not been fully investigated for this type of simulation systems and will generate massive synchronization messages. This paper proposed an enhanced null message algorithm for hybrid simulation systems with large disparity in time step. It extended the CMB algorithm by adding simulation time in null message request messages. This could significantly reduce the number of synchronization messages. Experimental results showed that our synchronization algorithm outperforms the CMB algorithm by reducing a great number of synchronization messages.
机译:多年来,建模和仿真因其能够理解和转换现实世界系统的能力而受到了极大的关注。随着模拟系统的复杂性和规模的增加,需要更多的计算能力。并行离散事件仿真(PDES)是将并行计算集成到建模和仿真中的一项重要技术。时间同步算法是PDES的核心,它决定了仿真的正确性和效率。传统的保守同步算法,例如Chandy-Misra-Bryant(CMB)空消息算法,使用空消息来同步状态并避免逻辑进程(LP)之间的死锁。但是混合仿真系统既包含连续模型又包含离散模型,通常使用混合仿真系统中的时间步长对连续变化的状态进行建模。因此,时间步长差异较大的混合系统在实际的仿真系统中非常常见。但是,对于这种类型的仿真系统,目前的保守同步算法尚未得到充分研究,它将产生大量的同步消息。提出了一种时空差异较大的混合仿真系统的增强型空消息算法。它通过在空消息请求消息中添加模拟时间来扩展CMB算法。这可以大大减少同步消息的数量。实验结果表明,通过减少大量同步消息,我们的同步算法优于CMB算法。

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