利用贝叶斯网络进行通信基站震后功能状态评估

IF 9.4 1区 工程技术 Q1 ENGINEERING, INDUSTRIAL
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引用次数: 0

摘要

通信基站的可靠性和恢复能力对通信系统的震后性能至关重要,进而影响震后的通信、救援和应急管理。目前还缺乏能够全面评估基站震后功能状态并考虑不同组件之间依赖关系的模型。本文提出了一种贝叶斯网络方法来评估通信基站的震后功能。该方法考虑了设备与其所在建筑结构之间的依赖关系以及断电的影响。该模型可生成典型基站的地震功能脆性曲线,从而对基站功能进行定性和定量评估。该模型利用鲁甸地震的震害数据进行了验证。结果发现,所提出的模型可以合理预测基站震后的功能破坏,与观测到的震害数据非常吻合。该模型的应用为通信基站的运行和维护提供了支持,也为通信系统的地震风险管理和抗震能力提供了启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Post-earthquake functional state assessment of communication base station using Bayesian network

The reliability and resilience of communication base stations are critical to the post-earthquake performance of the communication system, and consequently influence the communication, rescue, and emergence management after an earthquake. There is a lack of models that can fully evaluate the post-earthquake functional states of base stations with the consideration of the dependencies between different components. This paper proposes a Bayesian network method to evaluate the post-earthquake functionality of communication base stations. The method considers the dependence between the equipment and its hosting building structure, and the impact of power outages. This model produces seismic functional fragility curves for typical base stations that enable both qualitative and quantitative evaluations of base station functionality. The model is validated using seismic damage data from the Ludian Earthquake. It was found that the proposed model can reasonably predict the post-earthquake functional failure of base stations, in good agreement with the observed seismic damage data. The application of this model provides support for the operation and maintenance of communication base stations, and insights for managing seismic risk and resilience of the communication system.

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来源期刊
Reliability Engineering & System Safety
Reliability Engineering & System Safety 管理科学-工程:工业
CiteScore
15.20
自引率
39.50%
发文量
621
审稿时长
67 days
期刊介绍: Elsevier publishes Reliability Engineering & System Safety in association with the European Safety and Reliability Association and the Safety Engineering and Risk Analysis Division. The international journal is devoted to developing and applying methods to enhance the safety and reliability of complex technological systems, like nuclear power plants, chemical plants, hazardous waste facilities, space systems, offshore and maritime systems, transportation systems, constructed infrastructure, and manufacturing plants. The journal normally publishes only articles that involve the analysis of substantive problems related to the reliability of complex systems or present techniques and/or theoretical results that have a discernable relationship to the solution of such problems. An important aim is to balance academic material and practical applications.
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