论文标题
基于语义技术推理的电路的功能组件描述
Functional Component Descriptions for Electrical Circuits based on Semantic Technology Reasoning
论文作者
论文摘要
电路图已在电气工程中使用数十年来描述设备和设施的接线。他们以象征性和基于图的方式描述电气组件。虽然电路设计通常是通过电子方式执行的,但仍有基于遗产的纸张图需要数字化才能在CAE系统中使用。通常,工程项目之间可能会丢失有关特定电路的知识,从而使域名新手很难理解给定的电路设计。这些文档的基于图的性质可以通过基于语义技术的推理来利用这些文档,以便生成对其功能原理的可理解描述。更准确地说,电路的每个电气组件(例如,一个二极管)可以分配一个高级函数标签,该标签描述了其在设备中的目的(例如,用于反向电压保护的火回二极管)。在本文中,该一代人使用前向链条规则。所述方法适用于两个基于CAE的电路以及图像理解管道所产生的原始电路。该方法的生存能力通过应用于现有电路集的应用来证明。
Circuit diagrams have been used in electrical engineering for decades to describe the wiring of devices and facilities. They depict electrical components in a symbolic and graph-based manner. While the circuit design is usually performed electronically, there are still legacy paper-based diagrams that require digitization in order to be used in CAE systems. Generally, knowledge on specific circuits may be lost between engineering projects, making it hard for domain novices to understand a given circuit design. The graph-based nature of these documents can be exploited by semantic technology-based reasoning in order to generate human-understandable descriptions of their functional principles. More precisely, each electrical component (e.g. a diode) of a circuit may be assigned a high-level function label which describes its purpose within the device (e.g. flyback diode for reverse voltage protection). In this paper, forward chaining rules are used for such a generation. The described approach is applicable for both CAE-based circuits as well as raw circuits yielded by an image understanding pipeline. The viability of the approach is demonstrated by application to an existing set of circuits.