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On the development of radiation tolerant surveillance camera from consumer-grade components

机译:从消费级组件开发耐辐射监控摄像机

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In this paper an overview on the process of designing a radiation tolerant surveillance camera from consumer grade components and commercially available particle shielding materials is given. This involves utilization of Monte-Carlo particle transport code MCNP6 and ENDF/B-VII.0 nuclear data libraries, as well as testing the physical electrical systems against γ radiation, utilizing JSI TRIGA mk. II fuel elements as a γ-ray sources. A new, aluminum, 20 cm × 20 cm × 30 cm irradiation facility with electrical power and signal wire guide-tube to the reactor platform, was designed and constructed and used for irradiation of large electronic and optical components assemblies with activated fuel elements. Electronic components to be used in the camera were tested against γ-radiation in an independent manner, to determine their radiation tolerance. Several camera designs were proposed and simulated using MCNP, to determine incident particle and dose attenuation factors. Data obtained from the measurements and MCNP simulations will be used to finalize the design of 3 surveillance camera models, with different radiation tolerances.
机译:本文概述了从消费级组件和可商购的颗粒防护材料设计耐辐射监视摄像机的过程。这涉及利用蒙特卡洛粒子传输代码MCNP6和ENDF / B-VII.0核数据库,以及利用JSI TRIGA mk测试物理电子系统对γ辐射的影响。 II型燃料元件作为γ射线源。设计并建造了一个新的铝制20厘米×20厘米×30厘米的辐照设备,该辐照设备具有将电力和信号线导管引入反应堆平台,并用于辐照带有活化燃料元件的大型电子和光学组件。相机中要使用的电子组件以独立的方式进行了γ辐射测试,以确定其辐射耐受性。提出了几种相机设计,并使用MCNP进行了仿真,以确定入射粒子和剂量衰减因子。从测量和MCNP模拟获得的数据将用于最终确定3个具有不同辐射容限的监视摄像机模型的设计。

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