开发基于 FPGA 的紧凑型数字多通道分析仪

Hoai-Phuong Pham, Nhi-Dien Nguyen, Xuan Tan Nguyen, The-Dat Trang, Quang Dong Ong, K. Nguyen
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摘要

在这项工作中,我们利用现场可编程门阵列(FPGA)设计并构建了数字多通道分析仪(DMCA),用于为断层扫描设备构建光谱测量系统。DMCA 的硬件由一个分辨率为 14 位、采样率为每秒 1.05 亿采样点(MSPs)的 ADC 和 FPGA 板组成。在将 DMCA 的三个功能模块(包括脉冲整形滤波器、峰值检测和频谱直方图处理)集成到 FPGA 芯片之前,在 Matlab 环境中对其进行了仿真和优化。基于高纯锗(HPGe)探测器和标准源 60Co 和 137Cs,对 DMCA 的性能进行了评估。在 DMCA 系统上测量的光谱显示,光谱峰值随时间(100 小时)的漂移小于 1%,在 1332 keV 60Co 时的分辨率为 2.6 keV。这项研究开发的 DMCA 系统具有多种优势:稳定、小巧、多功能和成本效益高。
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Development of a Compact Digital Multichannel Analyzer based on FPGA
In this work, we designed and built a digital multichannel analyzer (DMCA) using field-programmable gate array (FPGA), which is used to build a spectroscopic measurement system for a tomography device. DMCA's hardware was built with an ADC with 14-bit resolution and a sampling rate of 105 million samples per second (MSPs) combined with an FPGA board. The models of three functional blocks in DMCA, including pulse shaping filter, peak detection, and spectrum histogram processing, were simulated and optimized in the Matlab environment before they were integrated on the FPGA chip. The performance of DMCA was evaluated based on the high purity germanium (HPGe) detector with standard sources 60Co and 137Cs. The spectrum measured on the DMCA system showed that the drift of the spectral peak over time (100 hours) was of less than 1% and a resolution of 2.6 keV was at 1332 keV 60Co. The DMCA developed in this work demonstrated various advantages: stability, compactness, versatility, and cost effectiveness.
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