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Signal-to-Noise Analysis in Count Rate Dependent Adaptive Digital Pulse Processing for Gamma-Ray Spectroscopy

机译:计数率相关的自适应数字脉冲处理中伽马射线光谱的信噪分析

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An optimum filter to achieve best signal to noise ratio is a primary prerequisite in high resolution gamma spectroscopy systems. Digital techniques for nuclear spectroscopy are increasingly implemented in modern radiation detection systems, which allow consideration of the attributes of the generated signal on a pulse-by-pulse basis. In this work, the limits of the count rate dependent signal-to-noise ratio (SNR) are established for time invariant (fixed) and time variant (adaptive) digital filters. The calculated results illustrate that the adaptive filter provides improved SNR for a given pulse throughput rate as compared to a fixed filter. Further analysis shows that the detector with a low input capacitance is a preferable choice to achieve better SNR and improved performance at high count rates. A 14-bit adaptor module with sampling rate of 250 MS/s is used for digitizing a high purity germanium (HPGe) detector's pre-amplifier pulses. Fixed and adaptive digital trapezoid shaping algorithms with timing filter, baseline restorer, and pile-up rejecter are implemented using field programmable gate array (FPGA) for real-time signal processing. The experimental results using the coaxial HPGe with fixed and adaptive shaping show reasonable agreement with the theoretical calculations. At input count rate of 400 kcps with 50% throughput rate after pile- up rejection, the improvement in measured SNR is 30% with adaptive trapezoid filter in comparison to the fixed filter.
机译:在高分辨率伽玛光谱系统中,实现最佳信噪比的最佳滤波器是首要前提。在现代辐射检测系统中,越来越多地实现了用于核光谱的数字技术,该技术允许逐脉冲地考虑所生成信号的属性。在这项工作中,为时不变(固定)和时变(自适应)数字滤波器建立了计数率相关信噪比(SNR)的限制。计算结果表明,与固定滤波器相比,对于给定的脉冲吞吐速率,自适应滤波器可提供更高的SNR。进一步的分析表明,具有低输入电容的检测器是在较高计数率下获得更好的SNR和改善性能的首选。一个采样率为250 MS / s的14位适配器模块用于数字化高纯锗(HPGe)检测器的前置放大器脉冲。使用现场可编程门阵列(FPGA)实施具有定时滤波器,基线恢复器和堆积抑制器的固定和自适应数字梯形成形算法,以进行实时信号处理。使用具有固定和自适应成形的同轴HPGe的实验结果与理论计算显示出合理的一致性。在输入计数率为400 kcps且堆积拒绝后吞吐率为50%的情况下,与固定滤波器相比,自适应梯形滤波器的SNR测量提高了30%。

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