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In-Situ Calibration: Migrating Control System IP Module Calibration from the Bench to the Storage Ring

机译:原位校准:将控制系统IP模块迁移从台面到存储环校准

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The control System for the Advanced Light Source (ALS) at Lawrence Berkeley National Lab (LBNL) uses in-house designed IndustryPack (IP) modules contained in compact PCI (cPCI) crates with 16-bit analog I/O to control instrumentation. To Make the IP modules interchangeable, each module is calibrated for gain and offset compensation. We initially developed a method of verifying and calibrating the IP modules in a lab bench test environment using a PC with LabVIEW. The subsequent discovery that the ADCs have significant drift characteristics over periods of days of installed operation prompted development of an "in-situ" calibration process-one in which the IP modules can be calibrated without removing them from the cPCI crates in the storage ring. This paper discusses the original LabVIEW PC calibration and the migration to the proposed in-situ EPICS control system calibration.
机译:Lawrence Berkeley国家实验室(LBNL)的高级光源(ALS)的控制系统使用了Compact PCI(CPCI)板条箱中的内部设计的IndustyPack(IP)模块,具有16位模拟I / O控制仪器。为了使IP模块可互换,每个模块都被校准,以获得增益和偏移补偿。我们首先使用带有LabVIEW的PC验证和校准实验室台式测试环境中的IP模块的方法。随后的发现,ADC在安装的操作天数具有显着的漂移特性,提示开发“原位”校准过程 - 其中可以校准IP模块,而不会从存储环中从CPCI箱中移除它们。本文讨论了原始LabVIEW PC校准和迁移到建议的原位史诗控制系统校准。

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