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基于RPA技术的电网数字化流程跟踪控制系统

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为了提高电网运行的可靠性和稳定性,设计基于RPA技术的电网数字化流程跟踪控制系统.基于RPA技术构建电网数字化流程架构,并基于构建结果设计电量智能校核模块、电网监测模块、用电监测模块、版本同步控制模块、节点状态跟踪模块和过程跟踪日志模块,从而完成硬件模块化设计.在设计模块的基础上,令各个软件结构层次之间相互独立,设立跟踪控制目标,计算其动态执行指数,获取电网数字化流程数据,通过RPA机器人将获取的原始数据报表发送至电网系统内,并将数据处理结果制作成相应的数据报表,展现电网运行状态,完成电网数字化流程跟踪控制系统整体设计.实验结果表明,设计系统对电网数字化流程数据的跟踪耗时低于85 ms,跟踪波形与实际波形一致,系统负载维持在10%左右,验证了该系统的有效性.
Power Grid Digital Process Tracking Control System Based on RPA Technology
In order to improve the reliability and stability of power grid operation,a digital process tracking and control system for power grid based on RPA technology is designed.Based on RPA technology,a digital process architecture for the power grid is constructed,and based on the construction results,intelligent electricity verification module,power grid monitoring module,electricity consumption monitoring module,version synchronization control module,node status tracking module,and process tracking log module are designed to complete the hardware system design.On the basis of the hardware system,each software structure level is made independent,then tracking control objectives are set up.Their dynamic execution indexes are calculated,and digital process data of the power grid are obtained.The original data report obtained is sent to the power grid system through RPA robots,and the corresponding data report is produced through data processing results to display the oper-ation status of the power grid.The overall design of the power grid digital process tracking control system is completed.The experimental results show that the tracking time of the designed system for the digital process data of the power grid is less than 85 ms,the tracking waveform is consistent with the actual waveform,and the system load is maintained at around 10%,which verifies the effectiveness of the system.

RPA technologydigital process of power gridtracking control systemhuman machine interaction

孙春艳、徐康

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国网安徽省电力有限公司物资分公司,安徽,合肥 230061

RPA技术 电网数字化流程 跟踪控制系统 人机交互

国网安徽省电力有限公司项目

5316J0294013

2024

微型电脑应用
上海市微型电脑应用学会

微型电脑应用

CSTPCD
影响因子:0.359
ISSN:1007-757X
年,卷(期):2024.40(1)
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