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一种用于时变辐射场剂量测定的亚皮安测量算法。

A Sub-Picoampere Measurement Algorithm for Use in Dosimetry of Time-Varying Radiation Fields.

作者信息

Kuć Michał, Maciak Maciej, Tulik Piotr

机构信息

Radiological Metrology and Biomedical Physics Division, National Centre for Nuclear Research, Andrzeja Sołtana 7, 05-400 Otwock, Poland.

Institute of Metrology and Biomedical Engineering, Faculty of Mechatronics, Warsaw University of Technology, Św. A. Boboli 8, 02-525 Warsaw, Poland.

出版信息

Sensors (Basel). 2024 Mar 21;24(6):2012. doi: 10.3390/s24062012.

Abstract

Dosimetry based on gas detectors operating in the recombination and saturation region provides unique research opportunities but requires high-quality electrometers with a measuring range below 1 pA (10 A). The standard approach in electrometry is to strive to increase the accuracy and precision of the measurement, ignoring the importance of its duration. The article presents an algorithm for the measurement of low current values (from 100 fA) that allows both a fast measurement (with a step of 2.3 ms) and high accuracy (measurement error below 0.1%), depending on the measurement conditions and the expected results. A series of tests and validations of the algorithm were carried out in a measurement system with a Keithley 6517B electrometer and a REM-2 recombination chamber under conditions of constant and time-varying radiation fields. The result of the work is a set of parameters that allow for the optimisation of the operation of the algorithm, maximising the quality of the measurements according to needs and the expected results. The algorithm can be used in low current measurement systems, e.g., for dosimetry of mixed radiation fields using recombination methods and chambers.

摘要

基于在复合和饱和区域工作的气体探测器的剂量测定提供了独特的研究机会,但需要测量范围低于1皮安(10⁻¹²安)的高质量静电计。静电测量的标准方法是努力提高测量的准确性和精度,而忽略测量持续时间的重要性。本文提出了一种用于测量低电流值(从100飞安起)的算法,该算法根据测量条件和预期结果,既能实现快速测量(步长为2.3毫秒)又能保证高精度(测量误差低于0.1%)。在配备吉时利6517B静电计和REM - 2复合电离室的测量系统中,在恒定和时变辐射场条件下对该算法进行了一系列测试和验证。这项工作的成果是一组参数,可用于优化算法的运行,根据需求和预期结果最大限度地提高测量质量。该算法可用于低电流测量系统,例如,用于使用复合方法和电离室的混合辐射场剂量测定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/841f/10975528/144d16f292f1/sensors-24-02012-g001.jpg

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