基于DEA控制模型的激光加工系统监控软件设计  

Design of monitoring software for laser processing system based on DEA control model

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作  者:余泽 谭安祖 YU Ze;TAN Anzu(The eye hospital of Wenzhou Medical University, Wenzhou Zhejiang 325000,China)

机构地区:[1]温州医科大学附属眼视光医院,浙江温州325000

出  处:《激光杂志》2019年第4期172-175,共4页Laser Journal

基  金:国家自然科学基金(No.60873139)

摘  要:针对激光加工系统中,存在监控准确度较低、占用内存较大等问题,设计了一种基于DEA控制模块的激光加工系统监控软件。将系统划分为不同的模块,主要有:身份验证模块、监控模块、数据管理模块等。在OEF图形算法的基础上构建DEA控制模型,在激光加工系统中加入DEA控制模型,能够更好地控制系统。操作人员利用上述模块完成激光加工系统的监控、数据管理等功能,并且每个模块的界面都非常清楚,为系统的平稳运行提供了保障。系统中的监控软件主要包括:端口设置、转换器配置、电动机状态请求、用户请求回应等。这些软件具有数据收集、处理、分析等功能,能够保障激光加工系统监控功能的稳定运行。实验结果表明:本文的监控软件监控准确度高,并且监控过程中软件运行所占用的CPU时间以及内存耗费都较低,能够达到理想的监控效果。For the laser processing system, there is a problem of low monitoring accuracy and large memory consumption. A laser processing system monitoring software based on DEA control module is designed. The system is divided into different modules, mainly including: identity verification module, monitoring module, data management module and so on. The DEA control model is built on the basis of the OEF graphics algorithm, and the DEA control model is added to the laser processing system to better control the system. The operator uses the above modules to complete the functions of monitoring and data management of the laser processing system, and the interface of each module is very clear, which provides a guarantee for the smooth operation of the system. The monitoring software in the system mainly includes: port setting, converter configuration, motor status request, user request response, and the like. The software has functions such as data collection, processing, and analysis to ensure stable operation of the laser processing system monitoring function. The experimental results show that the designed monitoring software has high monitoring accuracy, and the CPU time and memory consumption occupied by the software running during the monitoring process are low, which can achieve the ideal monitoring effect.

关 键 词:DEA控制模型 激光加工系统 监控软件设计 

分 类 号:TN249[电子电信—物理电子学]

 

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