A multi-variables algorithm for dynamic reconfiguration of real-time distributed systems

M. M. Soidridine, Konate Karim
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Abstract

In this article, we address the problem of dynamic reconfiguration of systems. This problem is related to the operability of real-time systems with high availability, suffering multiple and recurrent deterioration of their performance. We propose in this paper a dynamic and multi-variable algorithm for the reconfiguration of such systems. This algorithm ensures the necessary reconfigurations to optimize the configurations of a system, whenever performance degradation occurs, in order to restore it to its optimal operating conditions. To achieve this goal, the algorithm dynamically determines the new viable configurations corresponding to the current degraded configurations. Then it ensures the transitions between these configurations, while reducing the consumption of temporary resources and generated overhead. The results of our experimenting show that the proposed algorithm yields significant results against the reference works, found in the specialized literature, dealing with the solving of such problems.
实时分布式系统动态重构的多变量算法
在本文中,我们讨论了系统的动态重构问题。该问题涉及高可用性实时系统的可操作性,其性能会多次反复恶化。本文提出了一种动态多变量重构算法。该算法确保必要的重新配置,以优化系统的配置,无论何时发生性能下降,以恢复其最佳的操作条件。为了实现这一目标,该算法动态确定与当前退化配置相对应的新的可行配置。然后,它确保这些配置之间的转换,同时减少临时资源的消耗和生成的开销。我们的实验结果表明,所提出的算法在处理此类问题的专业文献中的参考作品中产生了显著的结果。
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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