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Design, development, testing and deployment of the world's first fully automated individual body armor x-ray inspection system

机译:世界上第一个全自动独立体铠装X射线检测系统的设计,开发,测试和部署

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With the onset of conflict and great troop deployments into South West Asia in 2003 during Operation Iraqi Freedom, the Radiography Laboratory at the US Army ARDEC was approached to investigate the feasibility of designing an automated inspection system to examine the integrity of all the Small Arms Protective Insert (SAPI) ceramic armor plates currently in service. This amounted to on the order ofl million units so the need for a high-throughput, fully automated system was apparent; this included automated defect recognition (ADR) software and automated material handling (AMH). Among the most challenging imaging artifacts is the fine local variation that arises as a combination of imager noise, photon noise and as a result of the arrangement of the fibers themselves in the plate backing and cover material. In many of these cases, the crack indications are actually smaller than the level of interference imposed by the fine local variations.
机译:在2003年在伊拉克自由期间将冲突和巨大的部队部署到2003年伊拉克自由期间,美国陆军ARDEC的射线照相实验室探讨了设计自动检测系统的可行性,以检查所有小武器保护的完整性目前在服务中的插入(SAPI)陶瓷铠装板。这达到了百万单位的顺序,因此需要高吞吐量,全自动系统是明显的;这包括自动缺陷识别(ADR)软件和自动材料处理(AMH)。在最具挑战性的成像伪影中,作为成像噪声,光子噪声的组合,光子噪声和纤维本身在板背衬和覆盖材料中的结构的结果中出现的优质局部变型。在许多这些情况下,裂缝指示实际上小于精细局部变型施加的干扰水平。

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