Bridging the Gap: Intelligent Environments with Smart Materials

H. Schmidtke, Mena Leemhuis, Jana Mertens, R. Courant, Jürgen Maas, Ö. Özçep
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Abstract

Smart Materials (SMat) promise to open new opportunities in the area of Intelligent Environments (IE), whether as part of dedicated smart devices or as the fabric constituting everyday appliances and building infrastructure. Through the use of ontologies both IE engineers and the IEs themselves can be aware of, and predict, how novel configurable and changing materials react under different conditions. In contrast to conventional Smart Objects, however, as computational software/hardware-systems, lending themselves to the object-oriented perspective of conventional ontology specification languages, SMat and IE in the wider sense require a perspective focussing on extended spaces and numerical domains. Both are known to be problematic in terms of usability and computational complexity for the traditional object-oriented languages, with even very basic notions already leading into undecidability. Context Logic (CL), in contrast, is a formalism specialized for these domains. This paper demonstrates how terminology from this area involving extended spaces and numerical domains can be modeled in CL.
弥合差距:智能材料的智能环境
智能材料(SMat)有望在智能环境(IE)领域开辟新的机遇,无论是作为专用智能设备的一部分,还是作为构成日常电器和建筑基础设施的结构。通过使用本体,工业工程师和工业工程师都可以了解并预测新的可配置和不断变化的材料在不同条件下的反应。然而,与传统的智能对象相比,作为计算软件/硬件系统,将自己用于传统本体规范语言的面向对象视角,更广泛意义上的SMat和IE需要关注扩展空间和数值领域的视角。众所周知,对于传统的面向对象语言来说,这两种语言在可用性和计算复杂性方面都存在问题,甚至非常基本的概念也会导致不可判定性。相比之下,上下文逻辑(CL)是专门针对这些领域的形式主义。本文演示了如何在CL中对涉及扩展空间和数值域的该领域的术语进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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