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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/76569


    Title: 以模糊理論為基礎之TFT-LCD廠的AMHS派送控制研究
    Authors: 許智翔;Hsu, Chih-Hsiang
    Contributors: 工業管理研究所
    Keywords: TFT-LCD;自動化物料搬運系統;模糊邏輯理論;TFT-LCD;Automated material handleing system;Fuzzy logic theory
    Date: 2018-07-25
    Issue Date: 2018-08-31 11:28:09 (UTC+8)
    Publisher: 國立中央大學
    Abstract: 隨著科技的日新月異,電子產品的應用日漸發達,生活中常見的電子設備如電視、手機、電腦、平板電腦皆使用TFT-LCD面板,以達到高畫質的表現。由於這些電子產品的市場需求非常大,因此也帶動TFT-LCD面板的需求大量增加。為了增加TFT-LCD面板的產量,TFT-LCD面板業者生產更大面積的玻璃基板,藉此增加面板的產量。大尺寸的玻璃基板仰賴更大世代的TFT-LCD製造廠製造。目前的生產技術將TFT-LCD廠推進到第八代。為了因應大量的需求,除了製造大型的玻璃基板外,提高玻璃基板的產量也能有效解決需求的問題。而TFT-LCD廠建置完成後,又要再提升其產量,就需要提升TFT-LCD廠內物料的流動效率。
    由於第八代TFT-LCD廠之自動化物料搬運系統分為In-Line Stocker系統及RGV系統,因此派送問題涉及各系統間的派送控制及跨系統時的派送控制。In-Line Stocker系統中存在「Stacker Crane載取Cassette時的選取問題」及「Stacker Crane載取Cassette運送至出口點的控制問題」;RGV系統中則有「RGV載取Cassette時的選取問題」。本研究以模糊邏輯理論為基礎,將生產過程中的關鍵屬性搓合,發展模糊邏輯派送方法。利用模擬實驗觀察所提出的法則在不同績效指標下的表現,期望此派送方法能夠有效的改善TFT-LCD廠內的物料流動效率,並提升其生產效率。
    ;With the advancement of technology, the application of electronic products is increasingly developed, and TFT-LCD panels are commonly used in electronic devices such as televisions, smart phones, computers, and laptops for high image quality. The demand for these electronic products is very large, so the demand for TFT-LCD panels is also increasing. In order to increase the output of the panel, TFT-LCD panel manufacturers produce larger areas of glass substrates. Large-size glass substrates are manufactured by a larger generation of TFT-LCD manufacturers, and the current TFT-LCD factory is the eighth generation. After the TFT-LCD factory is builed, it is necessary to increase the flow efficiency of the materials in the TFT-LCD factory to increase the throughput.
    The automated material handling system of the 8th generation TFT-LCD factory is divided into In-Line Stocker system and RGV system. The delivery problem involves delivery between systems and delivery across systems. In the In-Line Stocker system, there are Selection problem when Stacker Crane carries Cassette and Selection problem when Stacker Crane take Cassette to the exit point. In the RGV system, there is a Selection problem when RGV carries Cassette. This study combines key attributes in the production process and develops three fuzzy logic delivery methods based on fuzzy logic theory. The simulation experiment is used to observe the performance of the proposed rule under different performance indicators. It is expected that the proposed fuzzy delivery methods can effectively improve the material flow efficiency in the TFT-LCD plant and improve its production efficiency.
    Appears in Collections:[Graduate Institute of Industrial Management] Electronic Thesis & Dissertation

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