基于人工智能数据分析的通信网络运维平台

Zhao Yang, Xin Zhao, Shujun Kang
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引用次数: 0

摘要

配电网通信运维平台依赖于通信网络。配电网变电站需要通过通信网络获取配电网运行数据配置。通信网络的可靠性直接影响保护性能。因此,需要建立可靠且满足保护性能要求的通信网络。为了提高配电网通信运维平台的工程应用水平,有必要对配电网通信运维平台的数据质量进行定量评价。本文以智能配电网建设为背景,研究了配电网通信运维平台的体系结构。从信息互联、互通、互操作、即插即用的需求出发,根据人工智能数据分析原理,建立配电网通信运行描述规范。实现了保护与控制系统的统一建模。通过分析配电网区域保护自愈控制系统的业务构成,定量评价网络信息流的大小,为配电网区域保护自愈控制系统的工程应用提供依据。实验分析表明,与传统方法相比,该方法的综合性能提高了10%。局部性能提高40%,可支持主从区域保护与控制业务系统。
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Communication network operation and maintenance platform based on artificial intelligence data analysis
Distribution network communication operation and maintenance platform rely on communication network. The distribution network substation needs to obtain distribution network operation data configuration through communication network. The reliability of communication network directly affects the protection performance. Therefore, there is a need to establish a communication network that is reliable and meet protection performance requirements. In order to improve the engineering application of distribution network communication operation and maintenance platform, it is necessary to quantitatively evaluate the data quality of the distribution network communication operation and maintenance platform. Based on the construction background of smart distribution network, this paper studies the architecture of distribution network communication operation and maintenance platform. Starting from the requirements of information interconnection, intercommunication, interoperability and plug-and-play, the description specification of distribution network communication operation is established according to the principle of artificial intelligence data analysis. The unified modeling of protection and control system is realized. By analyzing the business composition of regional protection and self-healing control system of distribution network, the size of network information flow is quantitatively evaluated, which provides a basis for the engineering application of regional protection and self-healing control system of the distribution network. Experimental analysis shows that compared with the traditional method, the comprehensive performance of this method is improved by 10%. The partial performance is improved by 40%, which can support the master-slave regional protection and control business system.
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