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Radio-Frequency (RF) Devices for Safeguards: Where We Are and Where We Need to Go

机译:用于保护的射频(RF)设备:我们在哪里以及我们需要去的地方

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Radio-frequency (RF) devices have revolutionized many aspects of modern industrial processes. RF technology can enable wireless communication for item identification, sensor communication, and asset tracking. Radio-frequency identification (RFID) is a technology that utilizes wireless communication to interrogate and identify an electronic tag attached to an item in order to identify the item. The technology comes in many forms: passive or active tags, low to ultra-wideband frequencies, small paper-thin tags to brick-sized units, and simple tags or highly integrated sensor packages. RF technology, and specifically RFID, has been applied widely in commercial markets for inventory, supply chain management, and asset tracking. Several recent studies have demonstrated the potential safeguards benefits of utilizing RFID versus conventional inventory tagging methods for tracking nuclear material. These studies have indicated that the RF requirements for arms control and nuclear safeguards functions are more stringent than the RF requirements for other inventory tracking and accounting applications. Additionally, other requirements must be addressed, including environmental and operating conditions, authentication, tag location, and attachment. Facility restrictions on the use of the radio spectrum, method of tag attachment, and sensitivity of the data collected impact the tag selection and system design. More important, the intended use of the system must be considered. The requirements for using RF to facilitate inventory management will differ greatly from the requirements for deploying RF for unattended monitoring applications. Recent studies have investigated these considerations to advance commercial RF devices for safeguards use, and a number of system concepts have been developed. This paper provides an overview of recent studies and current technologies, and investigates the requirements, existing gaps, and several potential next steps for advancing RF techniques for safeguards use.
机译:射频(RF)设备彻底改变了现代工业过程的许多方面。 RF技术可以为项目识别,传感器通信和资产跟踪启用无线通信。射频识别(RFID)是利用无线通信来询问和识别附加到物品的电子标签以便识别该项目的技术。该技术有多种形式:无源或有源标签,低到超宽带频率,小纸一样薄的标签来砖尺寸单位,简单的标记或高度集成的传感器包。 RF技术和专门RFID,已广泛应用于库存,供应链管理和资产跟踪的商业市场。最近的几项研究表明,利用RFID与常规库存标记方法进行跟踪核材料的潜在保障效益。这些研究表明,武器控制和核保护函数的RF要求比其他库存跟踪和会计应用程序的RF要求更严格。此外,必须解决其他要求,包括环境和操作条件,身份验证,标签位置和附件。用于使用无线电频谱的设施限制,标签附件方法,以及收集的数据的灵敏度影响标签选择和系统设计。更重要的是,必须考虑系统的预期用途。使用RF以促进库存管理的要求将从部署RF的要求中有很大差异,以便无人看管的监测应用程序。最近的研究已经调查了这些考虑因素推进用于保护的商业RF设备,并开发了许多系统概念。本文提供最近的研究和现有技术的概述,以及调查的要求,存在的差距,并为保障推进使用RF技术几个潜在的下一个步骤。

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