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MudGet: Reproduction of the desired lighting environment using a smart-LED
Author(s) -
Yong Hwi Kim,
Yong Yi Lee,
Bilal Ahmed,
Moon Gu Son,
Junho Choi,
Jong Hun Lee,
Kwan H. Lee
Publication year - 2017
Publication title -
journal of computational design and engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.764
H-Index - 24
eISSN - 2288-5048
pISSN - 2288-4300
DOI - 10.1016/j.jcde.2017.02.006
Subject(s) - usability , interface (matter) , software , set (abstract data type) , led lamp , computer science , mood , cluster analysis , smart lighting , artificial intelligence , computer vision , engineering , human–computer interaction , architectural engineering , electrical engineering , psychology , bubble , maximum bubble pressure method , psychiatry , parallel computing , programming language
With the emergence of smart LEDs, lighting based interior design is becoming popular. However, most of the smart LED-based lighting systems rely on expert-human intervention to create a desired atmosphere. For convenience, commercial lighting systems offer a number of options but their usability is fairly restricted. Therefore, an intuitive interface is required for novice users to generate the desired lighting environment. In this paper, we have developed a software, named MudGet, which automatically extracts the light mood from a digital image and controls the LED lamps to reproduce a desired lighting effect according to the extracted light mood. In our method, the light mood is regarded as a set of the representative colors of the digital image. The representative colors are extracted by utilizing K-means clustering algorithm. The dimming parameters are set for which each of the LED lamps create the lighting environment with the mood extracted by the software. To evaluate the feasibility of mood reproduction qualitatively, the degree of similarity between the light mood in the digital image and the reproduced result using LEDs is evaluated by a user study under a miniaturized experimental set. We observe that users can easily produce a desired atmosphere through the proposed MudGet software

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