基于fpga的核反应堆中子探测系统仿真随机脉冲发生器

F. Ferrucci, C. Verrastro, G. E. Ríos, D. Estryk
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引用次数: 4

摘要

本文介绍了一种基于fpga的脉冲模式中子探测系统仿真器。该设备模拟了鉴别器电路的数字输出,并允许产生0.5脉冲/秒到1脉冲/秒的脉冲序列。仿真是基于同步版本的泊松过程发生器使用伯努利试验。仿真器通过与计算机的串行连接进行控制,脉宽和平均脉率都可以动态更新;因此,当核反应堆处于启动/关闭阶段时,可以模拟探测器的演化。为了考虑脉冲模式探测器系统中存在的死区时间效应,该设备实现了可麻痹死区时间模型和不可麻痹死区时间模型。仿真器还集成了一个数据记录器模块来记录生成的脉冲序列的到达时间间隔值。最后一个特性可用于校准速率计设备并验证仿真器输出信号的统计数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FPGA-based random pulse generator for emulation of a neutron detector system in a nuclear reactor
In this work an FPGA-based emulator of a pulse-mode neutron detector system is presented. The equipment emulates the digital output of a discriminator circuit and permits the generation of pulse trains ranging from 0.5 pulse/s to 1 Mpulse/s. The emulation is based on a synchronous version of a Poisson process generator using Bernoulli trials. The emulator is controlled via a serial connection to a computer and both the pulse-width and the mean pulse-rate can be dynamically updated; thus, making possible the emulation of a detector evolution when a nuclear reactor is in its start-up/shutting-down phase. To also consider the dead-time effects present in pulse-mode detector systems, the equipment implements the paralyzable and nonparalyzable dead-time models. The emulator also incorporates a data-logger module to record interarrival-time values of the generated pulse train. This last feature can be used to calibrate a rate-meter equipment and to verify the statistics of the emulator's output signal.
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