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Automation and control of the MMT thermal system

机译:MMT热系统的自动化和控制

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This study investigates the software automation and control framework for the MMT thermal system. Thermal-related effects on observing and telescope behavior have been considered during the entire software development process. Regression analysis of telescope and observatory subsystem data is used to characterize and model these thermal-related effects. The regression models help predict expected changes in focus and overall astronomical seeing that result from temperature variations within the telescope structure, within the primary mirror glass, and between the primary mirror glass and adjacent air (i.e., mirror seeing). This discussion is followed by a description of ongoing upgrades to the heating, ventilation and air conditioning (HVAC) system and the associated software controls. The improvements of the MMT thermal system have two objectives: 1) to provide air conditioning capabilities for the MMT facilities, and 2) to modernize and enhance the primary mirror (M1) ventilation system. The HVAC upgrade necessitates changes to the automation and control of the M1 ventilation system. The revised control system must factor in the additional requirements of the HVAC system, while still optimizing performance of the M1 ventilation system and the M1's optical behavior. An industry-standard HVAC communication and networking protocol, BACnet (Building Automation and Control network), has been adopted. Integration of the BACnet protocol into the existing software framework at the MMT is discussed. Performance of the existing automated system is evaluated and a preliminary upgraded automated control system is presented. Finally, user interfaces to the new HVAC system are discussed.
机译:这项研究调查了MMT热系统的软件自动化和控制框架。在整个软件开发过程中,已经考虑了与热有关的对观测和望远镜行为的影响。望远镜和天文台子系统数据的回归分析用于表征和模拟这些与热有关的影响。回归模型有助于预测由于望远镜结构内部,主镜玻璃内部以及主镜玻璃与相邻空气之间的温度变化(即镜观察)而导致的焦点和整体天文观测的预期变化。在讨论之后,将描述对供暖,通风和空调(HVAC)系统及其相关软件控件的正在进行的升级。 MMT热系统的改进有两个目标:1)为MMT设施提供空调功能,以及2)现代化和增强主镜(M1)通风系统。 HVAC升级需要更改M1通风系统的自动化和控制。修订后的控制系统必须考虑HVAC系统的其他要求,同时仍要优化M1通风系统的性能和M1的光学性能。已采用行业标准的HVAC通信和网络协议BACnet(楼宇自动化和控制网络)。讨论了将BACnet协议集成到MMT的现有软件框架中。对现有自动化系统的性能进行了评估,并提出了初步升级的自动化控制系统。最后,讨论了新的HVAC系统的用户界面。

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