Service-oriented, holonic environment control of radiopharmaceutical production facilities

T. Borangiu, S. Răileanu, E. Oltean, A. Silisteanu, Iulia Iacob
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Abstract

The paper describes a new holonic solution for the design of generic Facility Environment Conditioning and Control Systems (HFES) based on modelling processes as environment services (EServices) and implementation in multi-agent framework. This approach allows for the customization of: data acquisition, correlation between cleanroom parameters, HVAC channel control and influencing the radiopharmaceuticals production, depending on: (1) facility layout, 2) cleanroom models, 3) relative constraints between parameters of adjacent workspaces, 4) heat and ventilation HVAC channel process models, 5) desired performance indicators of the facility's global control system: basic (stability, precision); for safety and agility (robustness, sensitivity, nervousness, high availability), and 6) control strategies and laws of compensators. The control solution and implementing framework use distributed intelligence delegated to the decentralized control layer of service-oriented agents acting as informational instances of holons, apply web service principles for the cooperation between holons, with the scope of total integration of facility environment processes.
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面向服务的放射性药品生产设施全息环境控制
本文提出了一种基于环境服务(esservices)建模过程和多智能体框架实现的通用设施环境调节与控制系统(HFES)设计的全新整体解决方案。该方法允许定制:数据采集,洁净室参数之间的相关性,暖通空调通道控制和影响放射性药物生产,具体取决于:(1)设施布局,2)洁净室模型,3)相邻工作区参数之间的相对约束,4)热和通风暖通空调通道过程模型,5)设施全局控制系统所需的性能指标:基本(稳定性,精度);对于安全性和敏捷性(鲁棒性、敏感性、紧张性、高可用性),以及6)补偿器的控制策略和规律。控制方案和实现框架采用分布式智能委托给分散控制层的面向服务的代理作为节点的信息实例,应用web服务原理实现节点之间的协作,实现了设施环境过程的全面集成。
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