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Novel clock synchronization algorithm of parametric difference for parallel and distributed simulations

机译:用于并行和分布式仿真的新型参数差异时钟同步算法

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Clock synchronization is crucial in distributed simulation applications (DSAs). Traditional synchronization methods are mainly based on computers' physical clocks and have network delays. Consequently, the clock jumps easily, and the stability of the algorithm is less than excellent. Furthermore, a new class of DSAs with flexible and dynamically assembled simulation components to optimize the performance of clock clusters is emerging. To remedy the problems, we propose a novel logic parametric difference clock (PDC), which is recursively constructed by an alterable parametric difference frequency (PDF) and its counter. We also develop a simple and efficient synchronization algorithm of parametric difference (SAPD), in which the indeterminate network delay is considered in the PDF, and the PDC counter is used as the synchronous symbol. Compared with existing typical algorithms, the SAPD has the predominant advantages of convergence, stability, and precision for DSAs in local area networks.
机译:时钟同步在分布式仿真应用(DSA)中至关重要。传统的同步方法主要基于计算机的物理时钟,并且存在网络延迟。因此,时钟容易跳动,并且算法的稳定性不足。此外,一种新型的具有灵活且动态组装的仿真组件的DSA可以优化时钟集群的性能。为了解决这些问题,我们提出了一种新颖的逻辑参数差时钟(PDC),该时钟由可变参数差频率(PDF)及其计数器递归构造。我们还开发了一种简单有效的参数差同步算法(SAPD),其中在PDF中考虑了不确定的网络延迟,并将PDC计数器用作同步符号。与现有的典型算法相比,SAPD具有局域网中DSA的收敛性,稳定性和准确性的主要优势。

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