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抽蓄电站运行仿真培训系统的研究与应用

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针对周宁抽蓄电站运行和故障诊断处理过程,运用三维建模软件进行全景建模,依托三维引擎OSG和Unity3D开发了仿真培训系统.该系统通过研发仿真支撑平台、"四遥"条件串并联嵌套技术、单故障诊断和处理模型构建技术、多故障人工智能BP神经网络技术、仿真模式切换技术、可变速仿真技术等,在三维交互平台上模拟抽蓄电站复杂的工况转换流程、故障诊断和处理流程,将复杂枯燥的流程以生动的游戏形式展现,用户可任意自由操作,节约了实际系统故障演练成本以及大量的工作时间和师资人力成本;此外,系统可扩展性和可维护性强,电站有新的设备仪器更新或新的操作规程时,只需要部分更新相应的三维模型和逻辑即可.系统为培养抽蓄电站运行人员提供了专业平台,对提高抽蓄电站的整体管理水平具有重要意义.
Research and Application of Simulation Training System of Pumped Storage Power Station Operation
Utilizing three-dimensional modeling software,a panoramic modeling approach is employed to depict the operation and fault diagnosis processes of the Zhouning Pumped Storage Power Station.Leveraging 3D engines such as OSG and Unity3D,a simulation training system is developed.This system integrates various technologies including simulation support platform development,parallel and nested connection of"Four-Remote"conditions,single fault diagnosis and handling model construction,multi-fault artificial intelligence BP neural network technology,simulation mode switching,and variable-speed simulation.These technologies simulate the complex operational transitions and fault diagnosis procedures of the pumped storage power station on a three-dimensional interactive platform,presenting intricate processes in an engaging gaming format.Users can freely manipulate the system,saving costs associated with actual system fault drills,as well as significant amounts of working time and human resources.Moreover,the system exhibits strong scalability and maintainability;when the power station undergoes equipment updates or new operational procedures,only partial updates to the corresponding 3D models and logic are required.This system provides a professional platform for training pumped storage power station operators,thereby significantly enhancing the overall management level of the power station.

pumped storage power stationcondition transformationfault diagnosis3D simulationsimulation training

徐伦忠

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中国水利水电第十六工程局有限公司,福建 福州 353000

抽蓄电站 工况转换 故障诊断 三维模拟 仿真培训

2024

中国水能及电气化
水利部水电局 四川省地方电力局 中国水利水电科学研究院

中国水能及电气化

影响因子:0.316
ISSN:1673-8241
年,卷(期):2024.(9)