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The Activity-tracking paradigm in discrete-event modeling and simulation: The case of spatially continuous distributed systems

机译:离散事件建模和仿真中的活动跟踪范例:空间连续分布式系统的情况

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From a modeling and simulation perspective, studying dynamic systems consists of focusing on changes in states. According to the precision of state changes, generic algorithms can be developed to track the activity of sub-systems. This paper aims at describing and applying this more natural and intuitive way to describe and implement dynamic systems. Activity is defined mathematically. A generic application case of diffusion is experimented with to compare the efficiency of quantized state methods using this new approach with traditional methods which do not focus computations on active areas. Our goal is to demonstrate that the concept of activity can estimate the computational effort required by a quantized state method. Specifically, when properly designed, a discrete-event simulator for such a method achieves a reduction in the number of state transitions that more than compensates for the overhead it imposes.
机译:从建模和仿真的角度来看,研究动态系统包括关注状态的变化。根据状态更改的精度,可以开发通用算法来跟踪子系统的活动。本文旨在描述和应用这种更自然,直观的方式来描述和实现动态系统。活动是用数学定义的。实验了扩散的一般应用案例,以比较使用这种新方法的量化状态方法与不将计算集中在活动区域​​上的传统方法的效率。我们的目标是证明活动概念可以估计量化状态方法所需的计算量。具体而言,如果经过适当设计,则用于这种方法的离散事件模拟器可以减少状态转移的次数,这不仅可以补偿所施加的开销。

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