Analysis of Power Supply Systems' Reliability of According to the Time-to-Failure Distribution Functions

V. Zatsepina, E. Zatsepin, V. R. Lovchiy, A. Krivonosov
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Abstract

The article is devoted to the general problems of the theory of reliability of power supply systems. A mathematical description of the operation of power supply systems has been developed taking into account the hierarchy of their structures and the interaction of their elements with an assessment of the impact on them of a wide range of random disturbing factors. When determining the parameters of temporary interaction of elements depending on the moments of switching on and off of electrical and technological equipment, three situations are possible: simultaneous switching on of equipment according to a given operating program, operation of equipment in accordance with a technological process using a previously known algorithm, and also the case when on and off are independent and subject to random law. To assess the dynamics of the process under consideration, it is proposed to determine the distribution laws for the durations of working states and pauses for the joint operation of equipment groups.
基于故障时间分布函数的供电系统可靠性分析
本文讨论了供电系统可靠性理论的一般问题。考虑到供电系统的结构层次和各组成部分之间的相互作用,并对各种随机干扰因素对供电系统的影响进行了评估,建立了供电系统运行的数学描述。在根据电气和工艺设备的开断力矩确定元件临时相互作用参数时,可能存在三种情况:根据给定的操作程序同时开断设备,使用已知算法按照工艺流程操作设备,以及开断独立且服从随机规律的情况。为了评估所考虑的过程的动力学,提出确定设备组联合运行的工作状态和暂停时间的分布规律。
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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