评估连接保护区的方式对数据传输系统可靠性指标的影响

L. Ozirkovskyy, V. Pabyrivskyi, S. Mykytskyi, N. Velychko, N. Pryimak, Y. Zhuk
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引用次数: 0

摘要

现代数据传输系统中包含结构冗余,以确保达到规定的可靠性指标。结构冗余使系统具有容错能力,并大大提高了系统的可靠性。为了管理冗余资源,有必要使用其他工具将冗余设备与数据传输系统的主配置连接起来。冗余设备是一种独立的技术手段,从可靠性角度来看,它与数据传输系统的其他模块串联。因此,在数据传输系统中加入冗余连接设施会降低其可靠性。此外,即使在可靠性完美的情况下,冗余连接也可能出现故障或失灵,在某些条件下会导致传输系统瘫痪。为了确定备用连接设施对传输系统可靠性的影响,文章采用了一种建立离散-连续随机系统模型的独创技术。ASNA 软件被用作数据传输系统可靠行为建模的软件工具。该软件基于结构自动机模型,以状态和转换图的形式自动构建模型。在状态和转换图的基础上,以线性微分 Kolmogorov-Chapman 方程系统的形式自动生成分析模型。文章利用所建立的模型,定量分析了冗余连接手段(开关)对数据传输系统可靠性指标的影响。在研究中,与现有模型不同的是,所提出的模型同时考虑了备用连接手段的可靠性指标(故障概率)和功能性指标(切换概率、速度)。在所开发模型的基础上,确定了冗余连接手段(开关)的可靠性和功能性极限值,在此极限值下,它们将使容错数据传输系统的可靠性降至最低。在分析所得结果的基础上,形成了关于选择备用连接手段的可靠性指标、其速度和切换概率的实用建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IMPACT ASSESSMENT OF MEANS OF CONNECTING THE RESERVE ON THE RELIABILITY INDICATORS OF THE DATA TRANSMISSION SYSTEM
Structural redundancy is included in modern data transmission systems to ensure the specified reliability indicators. Structural redundancy gives the system fault tolerance and significantly increases its reliability. To manage the redundant resource, it is necessary to have additional tools that will connect the redundant equipment to the main configuration of the data transmission system. The redundant equipment is a separate technical means and, from the point of view of reliability, it is connected in series with other modules of the data transmission system. Thus, the inclusion of redundant connection facilities in the data transmission system reduces its reliability. In addition, even with perfect reliability, redundant connections may fail or malfunction and, under certain conditions, cause the transmission system to fail. To determine the impact of reserve connection facilities on the reliability of the transmission system, the article applies an original technology for building models of discrete-continuous stochastic systems. ASNA software was used as a software tool for modeling the reliable behavior of the data transmission system. This software provides automated construction of the model in the form of a graph of states and transitions based on a structural automaton model. Based on the graph of states and transitions, an analytical model is automatically generated in the form of a system of linear differential Kolmogorov-Chapman equations. Using the developed model, the article quantitatively analyzes the impact of redundant connection means (switches) on the reliability indicators of the data transmission system. In the study, the proposed models, unlike the existing ones, take into account both reliability indicators (probability of failure) and functionality indicators (probability of switching, speed) of the reserve connection means. On the basis of the developed model, the limit values of reliability and functionality of the redundant connection means (switches) were determined, at which they will minimize the reliability of the fault-tolerant data transmission system. Based on the analysis of the obtained results, practical recommendations for the selection of reliability indicators of the backup connection means, their speed and probability of switching are formed.
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