Distributed Telemetry Equipment Digital Simulation System Based on Container Cloud

Gang Li, Bin Shi, Xueliang Wang, Chenghao Ma
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Abstract

With the increasing number of distributed wide-area telemetry equipments, rapid design and realtime deduction of telemetry equipment measurement schemes become a problem needed to be solved. In order to solve this problem, a distributed telemetry equipment digital simulation system based on container cloud is constructed. The digital simulation system is constructed according to the five-layer framework of physical equipment layer with distributed telemetry equipments, basic service layer, core function layer, model service layer and application display layer. Distributed time synchronization technology is adopted to unify the system time. And the AE element measurement model, the telemetry data processing model and the range coverage calculation model are constructed. In static and dynamic experiments, it takes about 2 minutes for the system to complete the rapid design of 80 sets of equipment measurement schemes. The simulated and measured data have good consistency and strong correlation. The results show that the digital simulation system can simulate the function of actual equipments well and improve the timeliness and reliability of telemetry equipments.
基于容器云的分布式遥测设备数字仿真系统
随着分布式广域遥测设备数量的不断增加,遥测设备测量方案的快速设计和实时推导成为一个需要解决的问题。为了解决这一问题,构建了一个基于容器云的分布式遥测设备数字仿真系统。数字仿真系统按照分布式遥测设备物理设备层、基础服务层、核心功能层、模型服务层和应用显示层五层架构构建。采用分布式时间同步技术,统一系统时间。建立了声发射单元测量模型、遥测数据处理模型和距离覆盖计算模型。在静态和动态实验中,系统完成80套设备测量方案的快速设计大约需要2分钟。模拟数据与实测数据一致性好,相关性强。结果表明,该数字仿真系统能较好地模拟实际设备的功能,提高了遥测设备的实时性和可靠性。
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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