首页> 外文会议>International conference on nuclear engineering >THE ROLE OF FPGA-BASED ARCHITECTURES IN THE CONTROL ROOM MODERNIZATION PROCESS: PRELIMINARY RESULTS OF A CASE-STUDY
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THE ROLE OF FPGA-BASED ARCHITECTURES IN THE CONTROL ROOM MODERNIZATION PROCESS: PRELIMINARY RESULTS OF A CASE-STUDY

机译:基于FPGA的架构在控制室现代化过程中的作用:案例研究的初步结果

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In the context of a plant modernization, developing digital I&C technology is a crucial challenge to improve nuclear plants safety and reliability. Digital technology is usually oriented to achieve functions such as plant control, monitoring, simulation and protection in a user-friendly way. On the other hand, the analogue instrumentation implemented in the so-called "old generation consoles" is often essential and not immediately or completely replaceable. As a consequence, the interaction between the analogue and digital data seems to be a necessary step before starting the digital I&C licensing process. The fundamental difference between analogue and digital technologies relies on the fact that digital logic is based on processors, hence it can be customized by programming its software. However, introducing new code can result in a new set of potential failure modes to be accounted for. As a consequence, original analogue systems mostly assure a higher level of protection with respect to digital systems. In this scenario, a benefit could arise from the use of Field-Programmable Gate Arrays (FPGAs), based on a hardware architecture whose routing is made via software, thus resulting in a variety of possible tasks. FPGAs' employment ranges from automotive and industrial applications, ASIC prototyping, software defined radios, radar, image and DSP. In this work a critical analysis of FPGA fundamental features and potentialities in nuclear plant I&C design is achieved in conjunction with some practical applications. Troubles arising from coping with processor-based system are presented and compared to benefits and potentialities offered by FPGA real-time architectures: in- deed, FPGAs comprise a higher number of logic blocks and functions able to manage parallel processes with self triggering, and provided into a "non-frozen " structure but easily reconfigurable. This characteristics of being in-system programmable (ISP), i.e. a device capable of being programmed while remaining resident in a high-level system, can be considered as the main advantage of using FPGA. The employment on a large scale is also justified by its high determinism and testability, leading to high performance in terms of reliability. As a case-study, we propose a supervisory full-digital system that has been designed, realized, tested and validated implementing a FPGA architecture to be used in parallel to the TRIG A nuclear reactor RC-1 analogue console at the ENEA Casaccia Research Centre in Rome. We report on the design choices, and on pros and cons of using FPGA instead of the classical processor-based architectures. This preliminary apparatus has been developed using the LABVIEW environment and FPGA-based technology, an appropriate tool to get across simulation to Hardware-in-the-Loop (HIL) technique allowing to move on production from prototyping.
机译:在植物现代化的背景下,开发数字I&C技术是改善核电站安全性和可靠性的至关重要挑战。数字技术通常以用户友好的方式实现诸如工厂控制,监控,仿真和保护等功能。另一方面,在所谓的“旧代控制台”中实现的模拟仪器通常是必不可少的,而不是立即或完全可更换。因此,在开始数字I&C许可过程之前,模拟和数字数据之间的交互似乎是必要的步骤。模拟和数字技术之间的基本差异依赖于数字逻辑基于处理器的事实,因此可以通过编程其软件来定制。但是,引入新代码可能会导致要考虑的新潜在故障模式。因此,原始模拟系统主要确保了对数字系统的更高水平的保护。在这种情况下,可以通过使用现场可编程门阵列(FPGA)来产生一个好处,基于其路由通过软件进行路由,从而导致各种可能的任务。 FPGA的就业范围从汽车和工业应用,ASIC原型,软件定义的无线电,雷达,图像和DSP。在这项工作中,与一些实际应用,实现了对核电站I&C设计中FPGA基本特征和潜力的关键分析。提出了由应对基于处理器的系统的麻烦,并与FPGA实时架构提供的益处和潜力相比:实常,FPGA包括更高数量的逻辑块和能够通过自触发管理并行进程的功能,并提供进入“非冷冻”结构,但容易可重新配置。这种具有系统中可编程(ISP)的特征,即能够被编程的设备在高级系统中剩余的居民,可以被视为使用FPGA的主要优点。大规模的就业人数也通过其高决定性和可测试性,在可靠性方面具有高性能。作为一个案例研究,我们提出了一项监督全数字系统,该系统已经设计,实现,测试和验证,实现了在eNEA Casaccia研究中心的核反应堆RC-1模拟控制台并行使用的FPGA架构在罗马。我们报告了使用FPGA而不是基于经典的基于处理器的架构的设计选择,以及利弊。这种初步设备已经使用LabVIEW环境和基于FPGA的技术开发了一个适当的工具,以跨越循环(HIL)技术跨越模拟,允许从原型化上进行生产。

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