利用新型混合融合方法优化双能x射线图像增强。

IF 1.7 3区 医学 Q3 INSTRUMENTS & INSTRUMENTATION
Muhammad Fahad, Tao Zhang, Sajid Ullah Khan, Abdullah Albanyan, Fazeela Siddiqui, Yasir Iqbal, Xin Zhao, Yanzhang Geng
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引用次数: 0

摘要

背景:机场保安仍然是确保旅客安全和制止非法活动的主要问题。双能x射线成像(DEXI)是检测旅客行李中隐藏物品的重要技术之一。然而,DEXI图像中的噪声来自各种来源,如电子干扰和x射线强度的波动,可能会影响目标识别的有效性。目的:为了解决DEXI中噪声干扰的挑战,本研究旨在开发并验证一种使用离散小波变换(DWT)和平稳小波变换(SWT)的鲁棒去噪技术。方法:对DEXI图像中的背景噪声和泊松噪声进行定位和去除,提高目标识别精度。在去噪过程中,图像被分解成几个子带,并应用阈值技术在保留重要信息的同时最小化噪声。然后重建图像,以提供更清晰、更准确的扫描对象描述。结果:实验结果证明了基于小波变换和小波变换的去噪策略在抑制DEXI噪声的同时保留关键数据的有效性。用峰值信噪比(PSNR)和均方误差(MSE)来量化去噪技术的性能。该系统对256×256 DEXI图像的平均PSNR为35.23,MSE为19.52,对512×512 DEXI图像的平均PSNR为36.01,MSE为16.29。结论:研究结果表明,本文提出的方法在提高DEXI质量以改进安全检查方面取得了成功,并展示了其在机场安全系统中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing dual energy X-ray image enhancement using a novel hybrid fusion method.

Background: Airport security is still a main concern for assuring passenger safety and stopping illegal activity. Dual-energy X-ray Imaging (DEXI) is one of the most important technologies for detecting hidden items in passenger luggage. However, noise in DEXI images, arising from various sources such as electronic interference and fluctuations in X-ray intensity, can compromise the effectiveness of object identification.

Objective: To address the challenge of noise interference in DEXI, this study aims to develop and validate a robust denoising technique using the Discrete Wavelet Transform (DWT) and Stationary Wavelet Transform (SWT).

Methods: The proposed method targets and removes background and Poisson noise in DEXI images, improving object recognition accuracy. During the denoising process, images are decomposed into several subbands, and thresholding techniques are applied to minimize noise while preserving important information. The images are then reconstructed to provide a cleaner and more accurate depiction of scanned objects.

Results: Experimental results demonstrate the effectiveness of the DWT and SWT-based denoising strategy in preserving critical data while suppressing noise in DEXI. The performance of the denoising technique is quantified using Peak Signal-to-Noise Ratio (PSNR) and Mean Squared Error (MSE). The proposed system achieved an average PSNR of 35.23 and an MSE of 19.52 for 256×256 DEXI images, and an average PSNR of 36.01 and an MSE of 16.29 for 512×512 DEXI images.

Conclusion: The results highlight the achievement of the proposed approach in enhancing the quality of DEXI for improved security screening, demonstrating its potential application in airport security systems.

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来源期刊
CiteScore
4.90
自引率
23.30%
发文量
150
审稿时长
3 months
期刊介绍: Research areas within the scope of the journal include: Interaction of x-rays with matter: x-ray phenomena, biological effects of radiation, radiation safety and optical constants X-ray sources: x-rays from synchrotrons, x-ray lasers, plasmas, and other sources, conventional or unconventional Optical elements: grazing incidence optics, multilayer mirrors, zone plates, gratings, other diffraction optics Optical instruments: interferometers, spectrometers, microscopes, telescopes, microprobes
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