Title :
FMC-based neutron and gamma Radiation Monitoring Module for xTCA applications
Author :
Kozak, Tomasz ; Makowski, Dariusz ; Napieralski, Andrzej
Author_Institution :
Dept. of Microelectron. & Comput. Sci., Tech. Univ. of Lodz, Lodz, Poland
Abstract :
The machines used in High Energy Physics (HEP) experiments, such as accelerators or tokamaks, are sources of gamma and neutron radiation fields. The radiation has a negative influence on electronics and can lead to the incorrect functioning of complex control and diagnostic system designed for HEP machines. Therefore, in most cases the electronic equipments is installed in radiation-safe areas, but in some cases this rule is omitted to decrease costs of the project. The European X-ray Free Electron Laser (E-XFEL), being under construction at DESY research center, is a good example. The E-XFEL uses single tunnel and part of the electronic system will be installed next to main beam pipe and exposed to radiation. The modern Advanced/Micro Telecommunications Computing Architecture (ATCA/μTCA) standards are foreseen as a base for control and diagnostic system for this new project. These flexible standard provides high reliability, availability and usability for the system which can be decreased by negative influence of parasitic radiation field. The additional shielding will be introduced to protect racks with electronics, but during commissioning and, in case of control systems errors, the assumed radiation levels can be exceeded. Therefore, it is highly recommended to monitor doses absorbed by electronics. Moreover, it could be helpful for estimating system lifetime, scheduling maintenance periods and protecting machine from unexpended failures. The paper describes a Radiation Monitoring Module (RMM) based on FPGA mezzanine card standard capable of monitoring gamma radiation and neutron fluence in real-time.
Keywords :
X-ray lasers; dosimetry; field programmable gate arrays; free electron lasers; gamma-ray detection; high energy physics instrumentation computing; neutron detection; nuclear electronics; radiation monitoring; radiation protection; shielding; DESY research center; E-XFEL accelerator; European X-ray free electron laser; FMC-based gamma radiation monitoring module; FMC-based neutron radiation monitoring module; FPGA mezzanine card; HEP machines; absorbed dose monitoring; advanced telecommunication computing architecture; control systems errors; diagnostic system; electronic equipments; electronic system; gamma radiation fields; high energy physics experiments; high reliability analysis; high usability analysis; microtelecommunication computing architecture; neutron radiation fields; parasitic radiation field; radiation monitoring module; radiation-safe areas; scheduling maintenance periods; system lifetime estimation; tokamaks; xTCA applications; Computer architecture; Control systems; Detectors; Neutrons; Radiation monitoring; Sensitivity; Standards; FPGA Mezzanine Card; Micro Telecommunications Computing Architecture; RF Control System; X-ray Free Electron Laser; gamma radiation dosimetry; linear accelerator; neutron radiation dosimetry;
Conference_Titel :
Mixed Design of Integrated Circuits and Systems (MIXDES), 2012 Proceedings of the 19th International Conference
Conference_Location :
Warsaw
Print_ISBN :
978-1-4577-2092-5