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Developing a Human-Computer Interactive Driver to Identify the Folding Type of an On-cell Triple-Folding Display
Thesis

Developing a Human-Computer Interactive Driver to Identify the Folding Type of an On-cell Triple-Folding Display

Chen, Yen Ting
Masters, 國立清華大學, 資訊工程學系
2015

Abstract

三摺 型態辨識 人機互動
With the development in flexible electronic technology, embedded platform have broken the previous non-bendable concept. In order to respond to the development of new ``soft" platform device, the flexible display technology has gradually entered the popular stage of development. Many international display technology R&D manufacturers have invested lots of resources for technical development, such as: South Korea Samsung, Korea LG, Japan's Sony and Taiwan's Industrial Technology Research Institute and AU Optronics. According to market research analysis, the market size of foldable display technology in 2017 will reach $ 30 million, which shows flexible display technology application will be a promising development in the future. To make the applications of flexible display platform more widely used, many studies focused on the design of user interactive models, as well as new types of applications. The main difference between general display panel and foldable panels are the bendability of panels. However, many problems are extended from a single panel bendability issue while developing on the flexible display platform. For example, how to identify the folding type of foldable panels in the future. Furthermore, if the flexible panel integrates touch function, how do we do the judgment according to the folding type of multi-folding panels then become a complex and significant issue. In this paper, regarding to problems above, we develop a driver that integrates three accelerometer-gyro modules, into a realistic embedded platform. By doing so, we simulate the on-cell triple-folding flexible panel. The driver can identify the folding type of triple-folding panel. This application opens a new technology and attempt for future user interactive models.

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