首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Signal processing system based on FPGAs for neutron imaging detectors using scintillators
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Signal processing system based on FPGAs for neutron imaging detectors using scintillators

机译:基于FPGA的闪烁器中子成像探测器信号处理系统

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A signal processing system based on field programmable gate arrays (FPGAs) was developed for a 64 channel x 64 channel neutron imaging device using a wavelength shifting fiber read-out based on a photon-counting method. Light signals detected by 64 channel multi-anode photomultipliers are amplified and converted to digital photon signals containing incident-position and time information of neutron by using high-speed amplifiers and discriminators. By using coincidence circuits made in FPGAs, the incident position of neutron is determined based on these digital signals. A neutron imaging detector composed of the signal processing system and a neutron imaging device with a ZnS:Ag/~6LiF scintillator was evaluated by using neutron beam. It was confirmed that the signal processing based on FPGAs was effective to determine a precise incident position of neutron with high speed and many channel.
机译:针对基于光子计数法的波长移位光纤读出技术的64通道x 64通道中子成像设备,开发了基于现场可编程门阵列(FPGA)的信号处理系统。由64通道多阳极光电倍增管检测到的光信号被放大,并通过使用高速放大器和鉴别器转换为包含中子的入射位置和时间信息的数字光子信号。通过使用FPGA中制作的重合电路,基于这些数字信号确定中子的入射位置。使用中子束对由信号处理系统和带有ZnS:Ag /〜6LiF闪烁体的中子成像装置组成的中子成像检测器进行了评估。可以肯定的是,基于FPGA的信号处理可以有效地确定中子的高速,多通道的精确入射位置。

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