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基于CMOS图像传感器的高清摄像机在不同剂量率下的核辐射降解研究

Nuclear Radiation Degradation Study on HD Camera Based on CMOS Image Sensor at Different Dose Rates.

作者信息

Wang Congzheng, Hu Song, Gao Chunming, Feng Chang

机构信息

Institute of Optics and Electronics, Chinese Academy of Sciences, No. 1 Guangdian Avenue Xihang Port, Shuangliu, Chengdu 610209, China.

School of Optoelectronic Information, University of Electronic Science and Technology of China, No. 4, Block 2, North Jianshe Road, Chengdu 610054, China.

出版信息

Sensors (Basel). 2018 Feb 8;18(2):514. doi: 10.3390/s18020514.

Abstract

In this work, we irradiated a high-definition (HD) industrial camera based on a commercial-off-the-shelf (COTS) CMOS image sensor (CIS) with Cobalt-60 gamma-rays. All components of the camera under test were fabricated without radiation hardening, except for the lens. The irradiation experiments of the HD camera under biased conditions were carried out at 1.0, 10.0, 20.0, 50.0 and 100.0 Gy/h. During the experiment, we found that the tested camera showed a remarkable degradation after irradiation and differed in the dose rates. With the increase of dose rate, the same target images become brighter. Under the same dose rate, the radiation effect in bright area is lower than that in dark area. Under different dose rates, the higher the dose rate is, the worse the radiation effect will be in both bright and dark areas. And the standard deviations of bright and dark areas become greater. Furthermore, through the progressive degradation analysis of the captured image, experimental results demonstrate that the attenuation of signal to noise ratio (SNR) versus radiation time is not obvious at the same dose rate, and the degradation is more and more serious with increasing dose rate. Additionally, the decrease rate of SNR at 20.0, 50.0 and 100.0 Gy/h is far greater than that at 1.0 and 10.0 Gy/h. Even so, we confirm that the HD industrial camera is still working at 10.0 Gy/h during the 8 h of measurements, with a moderate decrease of the SNR (5 dB). The work is valuable and can provide suggestion for camera users in the radiation field.

摘要

在这项工作中,我们用钴 - 60γ射线辐照了一款基于商用现货(COTS)互补金属氧化物半导体图像传感器(CIS)的高清(HD)工业相机。除镜头外,被测相机的所有组件均未进行抗辐射加固制造。在偏置条件下对高清相机进行的辐照实验在1.0、10.0、20.0、50.0和100.0 Gy/h的剂量率下进行。实验过程中,我们发现被测相机在辐照后表现出明显退化,且在不同剂量率下有所不同。随着剂量率增加,相同的目标图像变得更亮。在相同剂量率下,亮区的辐射效应低于暗区。在不同剂量率下,剂量率越高,亮区和暗区的辐射效应越差,且亮区和暗区的标准偏差变得更大。此外,通过对捕获图像的渐进退化分析,实验结果表明,在相同剂量率下,信噪比(SNR)随辐射时间的衰减不明显,且随着剂量率增加退化越来越严重。此外,在20.0、50.0和100.0 Gy/h时SNR的下降率远大于在1.0和10.0 Gy/h时。即便如此,我们确认在8小时的测量过程中,该高清工业相机在10.0 Gy/h时仍能工作,信噪比有适度下降(5 dB)。这项工作很有价值,可为辐射领域的相机用户提供建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a74d/5855046/860709bf115a/sensors-18-00514-g001.jpg

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