Technical Condition Monitoring for Telecommunication and Radioelectronic Systems with Redundancy

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
M. Zaliskyi, O. Solomentsev, O. Zuiev, M. Pavlenko, I. Zakharchenko, Y. Petrova
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引用次数: 0

Abstract

Abstract The telecommunication and radioelectronic systems with redundancy are widely used in different branches of human activity. To provide the necessary reliability level of equipment, the operation system is utilized. That system contains intended use, maintenance, repair, technical condition monitoring, and others. The damages, faults and failures are usually observed during the lifecycle of telecommunication and radioelectronic systems. They can lead to deterioration of equipment technical condition. The deterioration of technical condition can be detected during observation of diagnostic variable and reliability parameter. This article concentrates on the synthesis and analysis of statistical data processing procedure for deterioration detection while operating telecommunication and radioelectronic systems with redundancy. For the purpose of reliability estimation based on different redundancy methods, statistical data processing procedure synthesis was carried out using multiple hypothesis testing and detection criterion. The analysis problem was solved using Monte- Carlo simulation method, which allowed constructing operating characteristics. The obtained results can be used in the process of design and improvement of operation systems for telecommunication and radioelectronic equipment.
具有冗余的电信和无线电电子系统的技术条件监测
具有冗余的通信和无线电电子系统广泛应用于人类活动的各个部门。为了提供必要的设备可靠性水平,使用了操作系统。该系统包含预期使用、维护、修理、技术状态监测等内容。在通信和无线电电子系统的生命周期中,损坏、故障和失效是常见的现象。它们会导致设备技术状况的恶化。通过对诊断变量和可靠性参数的观察,可以发现技术状况的恶化。本文主要对具有冗余的电信和无线电电子系统运行时的劣化检测统计数据处理程序进行了综合和分析。为实现基于不同冗余度方法的可靠性估计,采用多假设检验和检测准则进行统计数据处理程序综合。采用蒙特卡罗模拟法对分析问题进行了求解,建立了系统的工作特性。所得结果可用于电信和无线电电子设备操作系统的设计和改进。
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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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
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0
审稿时长
12 weeks
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