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Design of Gamma Spectrum Data Acquisition and Processing System Based on ARM/DSP

本站小编 哈尔滨工业大学/2019-10-24

Design of Gamma Spectrum Data Acquisition and Processing System Based on ARM/DSP

Jian-Feng He 1,2, Fang Fang2, Yue-Shun He1, Bin Tang1

(1. Key Laboratory of Radioactive Geology and Exploration Technology Fundamental Science for National Defense, East China Institute of Technology, Nanchang 330013, China; 2. College of Nuclear Technology and Automation Engineering, Chengdu University of Technology, Chengdu 610059, China)



Abstract:

Research for detecting or obtaining radionuclide by gamma energy spectrum data acquisition and process system is one of the key issues about intelligent measurement of gamma-ray spectrum. For this reason, a software and hardware implementation schematic design based on ARM(Advanced RISC Machines)+DSP(Digital Signal Processor) architecture for gamma energy spectrum data acquisition and processing system is proposed. The paper discusses in detail some key technologies such as communication interface design between microcontroller ARM and digital signal processor DSP, distribution scheduling under multi-task in the ARM-Linux, DSP handling procedures for multi-channel A/D high-speed sample. At the same time, because the traditional Gaussian fitting to determine the boundary of peak is not ideal, it puts forward a weighting factor of Gaussian function least squares fitting realize boundary determined. Finally gamma-spectrum data from sodium iodide NaI(TI) scintillation detector is tested and processed in the new system. The results show that gamma energy spectrum data acquisition and process system is perfect functionality, stable and convergence in unimodal. Compared with data from conventional energy spectrometers, the system can keep better energy resolution in a wide range of pulse pass rate.

Key words:  gamma spectrum  data acquisition and processing  ARM+DSP architecture  ARM-Linux  energy spectrometers

DOI:10.11916/j.issn.1005-9113.2013.02.006

Clc Number:TN91

Fund:


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