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一种基于碲锌镉光子计数探测器的新型多维煤矸石 X 射线分选算法。

A novel multi-dimensional coal and gangue X-ray sorting algorithm based on CdZnTe photon counting detectors.

机构信息

State Key Laboratory of Solidification Processing, and MIIT Key Laboratory of Radiation Detection Materials and Devices, Northwestern Polytechnical University, Xi'an, China.

Shenzhen Research Institute of Northwestern Polytechnical University, Shenzhen, China.

出版信息

J Xray Sci Technol. 2024;32(2):369-378. doi: 10.3233/XST-230250.

Abstract

BACKGROUND

The gangue content in coal seriously affects the calorific value produced by its combustion. In practical applications, gangue in coal needs to be completely separated. The pseudo-dual-energy X-ray method does not have high sorting accuracy.

OBJECTIVE

This study aims to propose a novel multi-dimensional coal and gangue X-ray sorting algorithm based on CdZnTe photon counting detectors to solve the problem of coal and gangue sorting by X-ray.

METHODS

This complete algorithm includes five steps: (1) Preferred energy bins, (2) transmittance sorting, (3) one-dimensional R-value sorting, (4) two-dimensional R-value sorting, and (5) three-dimensional R-value sorting. The output range of each step is determined by prior information from 65 groups of coal and gangue. An additional 110 groups of coal and gangue are employed experimentally to validate the algorithm's accuracy.

RESULTS

Compared with the 60% sorting accuracy of the Pseudo-dual-energy method, the new algorithm reached a sorting accuracy of 99%.

CONCLUSIONS

Study results demonstrate the superiority of this novel algorithm and its feasibility in practical applications. This novel algorithm can guide other two-substance X-ray sorting applications based on photon counting detectors.

摘要

背景

煤中的矸石含量严重影响其燃烧产生的热值。在实际应用中,需要将煤中的矸石完全分离。拟双峰能 X 射线法的分选精度不高。

目的

本研究旨在提出一种基于 CdZnTe 光子计数探测器的新型多维煤矸石 X 射线分选算法,以解决 X 射线分选煤矸石的问题。

方法

该完整算法包括五个步骤:(1)优选能窗,(2)透过率分选,(3)一维 R 值分选,(4)二维 R 值分选,(5)三维 R 值分选。每个步骤的输出范围由 65 组煤矸石的先验信息确定。另外用 110 组煤矸石进行实验验证该算法的准确性。

结果

与伪双峰能法 60%的分选精度相比,新算法的分选精度达到 99%。

结论

研究结果表明,该新型算法具有优越性,在实际应用中具有可行性。这种新型算法可以指导基于光子计数探测器的其他两物质 X 射线分选应用。

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