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A design methodology using signal-to-noise ratio for plastic scintillation detectors design and performance optimization

机译:一种使用信噪比的塑料闪烁探测器设计和性能优化的设计方法

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摘要

>Purpose: The design of novel plastic scintillation detectors (PSDs) is impeded by the lack of a suitable framework to simulate and predict their performance. The authors propose to use the signal-to-noise ratio (SNR) to model the performance of PSDs that use charge-coupled devices (CCDs) as photodetectors.>Methods: In PSDs using CCDs, the SNR is inversely related to the normalized standard deviation of the dose measurement. Thus, optimizing the SNR directly optimizes the system’s precision. In this work, a model of SNR as a function of the system parameters is derived for optical fiber-based PSD systems. Furthermore, this proposed model is validated using experimental results. A formula for the efficiency of fiber coupling to CCDs is derived and used to simulate the performance of a PSD under varying magnifications.>Results: The proposed model is shown to simulate the experimental performance of an actual PSD to a suitable degree of accuracy under various conditions.>Conclusions: The SNR constitutes a useful tool to simulate the dosimetric precision of PSDs. Using the SNR model, recommendations for the design and optimization of PSDs are provided. Using the same framework, recommendations for non-fiber-based PSDs are also provided.
机译:>目的:新型塑料闪烁探测器(PSD)的设计因缺乏合适的框架来模拟和预测其性能而受到阻碍。作者建议使用信噪比(SNR)来建模将电荷耦合器件(CCD)用作光电探测器的PSD的性能。>方法:在使用CCD的PSD中,SNR为与剂量测量的标准化标准差成反比。因此,优化SNR可以直接优化系统的精度。在这项工作中,对于基于光纤的PSD系统,得出了SNR作为系统参数函数的模型。此外,使用实验结果验证了该提出的模型。得出了光纤耦合到CCD的效率的公式,并用来模拟不同放大倍数下PSD的性能。 >结论:SNR是模拟PSD剂量精确度的有用工具。使用SNR模型,提供了有关PSD设计和优化的建议。使用相同的框架,还提供了针对非基于光纤的PSD的建议。

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