完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.author | 李韋宏 | zh_TW |
dc.contributor.author | 吳令堯 | zh_TW |
dc.contributor.author | 林昀儒 | zh_TW |
dc.date | 113學年度第一學期 | zh_TW |
dc.date.accessioned | 2025-01-21T03:52:10Z | - |
dc.date.available | 2025-01-21T03:52:10Z | - |
dc.date.submitted | 2025-01-21 | - |
dc.identifier.other | D1155099、D1153539、D1170899 | zh_TW |
dc.identifier.uri | http://dspace.fcu.edu.tw/handle/2376/4977 | - |
dc.description.abstract | 中文摘要 本研究針對積體電路(IC)生產線,結合數位孿生技術與智慧控制策略進行模擬與優化,以應對工業 4.0 與智慧製造快速發展下的挑戰,包括生產流程複雜、設備整合困難、製程控制精度不足,以及產品客製化需求提升等問題。本研究利用 CIROS 軟體與 PLC 梯形圖語言模擬與控制生產線的關鍵製程環節,包括進料分類檢測、翻轉搬運、加工、切割、瑕疵檢測與儲存作業,以期提升生產效率、降低成本並優化資源利用。 研究過程中,設計並建立了包含六個站點的模擬生產線,包括進料分類檢測站、翻轉站、加工站、切割站、瑕疵檢測站與儲料站。透過虛擬生產線的設計,精確模擬實際生產環境,並利用 PLC 程式實現設備協同作業、即時數據監控與製程參數優化,顯著提升產品良率與整體生產效能。模擬結果顯示整體生產線運行流暢,並通過穩定性與負載測試,驗證系統的可靠性與彈性。 實驗結果結果,基於 CIROS 軟體構建的生產線模擬系統在智慧控制策略的輔助下,可實現穩定且高效的運作。數位孿生技術與智慧控制策略的導入,能有效提升生產效率,降低能源消耗與資源浪費,同時具有良好的擴展性與靈活性。本研究不僅驗證了數位孿生技術在積體電路生產線應用中的可行性,亦為智慧製造提供了重要參考。 線模擬中的有效性,亦展示了智慧控制策略對生產流程優化的影響,未來也可擴展應用於其他產業的製造領域。 | zh_TW |
dc.description.abstract | Abstract This study focuses on the simulation and optimization of integrated circuit (IC) production lines by incorporating digital twin technology and intelligent control strategies. In the context of rapid advancements in Industry 4.0 and smart manufacturing, traditional IC production lines face challenges such as complex production processes, difficulties in equipment integration, insufficient precision in process control, and increasing demand for product customization. Utilizing CIROS software and PLC ladder logic programming, this research simulates and controls key stages of the IC production line, including material classification and inspection, flipping and transportation, processing, cutting, defect detection, and storage operations, with the aim of enhancing production efficiency, reducing costs, and optimizing resource utilization. A virtual production line comprising six simulation stations—material classification and inspection, flipping, processing, cutting, defect detection, and storage—was designed and implemented to accurately replicate real-world production environments. Intelligent control strategies were programmed using PLCs to enable equipment collaboration, real-time data monitoring, and process parameter optimization, thereby improving product yield and overall production performance. Simulation results demonstrated smooth operation of the production line, with stability and load testing verifying the system’s reliability and flexibility. The experimental results indicate that the production line simulation system developed using CIROS software, supported by intelligent control strategies, can achieve stable and efficient operation. The integration of digital twin technology and intelligent control strategies effectively improves production efficiency, reduces energy consumption and resource waste, and offers excellent scalability and flexibility. This study not only validates the feasibility of applying digital twin technology in IC production lines but also provides valuable insights for advancing smart manufacturing. | zh_TW |
dc.description.tableofcontents | 目錄 中文摘要 ........................................................................................................................ 1 Abstract .......................................................................................................................... 2 目錄 ................................................................................................................................ 3 第一章 緒論 .................................................................................................................. 5 1.1 研究背景與動機 ............................................................................................. 5 1.1.1 數位孿生技術的發展概述 .................................................................. 5 1.1.2 積體電路生產線的複雜性與挑戰 ...................................................... 5 1.1.3 數位孿生在積體電路生產線中的應用前景 ...................................... 6 1.2 研究目的與意義 ............................................................................................. 7 1.2.1 提升生產線模擬的精確度與效率 ...................................................... 7 1.2.2 優化智慧控制策略以提高生產品質與降低成本 .............................. 7 1.2.3 為積體電路產業的數位化轉型提供技術支撐 .................................. 7 第二章 文獻回顧與理論基礎 ...................................................................................... 8 2.1 數位孿生技術概述 ......................................................................................... 8 2.1.1 數位孿生的定義與核心要素 .............................................................. 8 2.1.2 數位孿生的技術架構與實現機制 ...................................................... 8 2.2 積體電路生產線模擬技術 ............................................................................. 9 2.2.1 生產線模擬的關鍵技術與方法 .......................................................... 9 2.2.2 數位孿生在生產線模擬中的應用案例分析 ...................................... 9 2.3 智慧控制技術基礎 ....................................................................................... 10 2.3.1 智慧控制的理論框架與算法類型 .................................................... 10 2.3.2 數位孿生與智慧控制的融合機制 .................................................... 11 第三章 研究方法與步驟 ............................................................................................ 12 3.1 系統架構 ....................................................................................................... 12 3.2 軟體與相關技術說明 ................................................................................... 13 3.2.1 CIROS 軟體模擬技術 ....................................................................... 13 3.2.2 GX WORKS2 程式設計 ................................................................... 14 3.3 生產線模擬環境 ........................................................................................... 15 3.3.1 Separating Station ............................................................................... 15 3.3.2 氣壓迴轉模組 .................................................................................... 16 3.3.3 Processing Station ............................................................................... 17 3.3.4 蓋印缸鑽孔模組 ................................................................................ 19 3.3.5 Testing Station ..................................................................................... 20 基於數位孿生的積體電路生產線模擬與智慧控制技術研究報告 4 逢甲大學學生報告 ePaper(2025 年) 3.3.6 Store Work Cell ................................................................................... 21 第四章 實驗與結果分析 ............................................................................................ 23 4.1 生產線模擬結果 ........................................................................................... 23 4.2 生產線穩定性分析 ....................................................................................... 23 4.3 綜合結果討論 ............................................................................................... 24 第五章 結論與展望 .................................................................................................... 25 5.1 研究成果總結 ............................................................................................... 25 5.1.1 生產線模擬與智慧控制的技術突破 ................................................ 25 5.1.2 研究對積體電路產業的貢獻 ............................................................ 25 5.2 研究局限與不足 ........................................................................................... 25 5.2.1 研究過程中的問題與挑戰 ................................................................ 25 5.2.2 現有技術與方法的局限性 ................................................................ 26 5.3 未來研究方向與建議 ................................................................................... 26 5.3.1 結合人工智慧與大數據分析 ............................................................ 26 5.3.2 強化異常處理與容錯設計 ................................................................ 26 5.3.3 系統整合與跨領域應用 .................................................................... 26 參考文獻 ...................................................................................................................... 28 | zh_TW |
dc.format.extent | 29p. | zh_TW |
dc.language.iso | zh | zh_TW |
dc.rights | openbrowse | zh_TW |
dc.subject | 生產線模擬 | zh_TW |
dc.subject | 數位孿生 | zh_TW |
dc.subject | 積體電路 | zh_TW |
dc.subject | CIROS | zh_TW |
dc.subject | Digital Twin | zh_TW |
dc.subject | Integrated Circuit (IC) | zh_TW |
dc.subject | Production Line Simulation | zh_TW |
dc.title | 基於數位孿生的積體電路生產線模擬與智慧控制技術研究報告 | zh_TW |
dc.title.alternative | Research Report on Digital Twin-Based Simulation and Intelligent Control Technology for Integrated Circuit Production Lines | zh_TW |
dc.type | UndergraReport | zh_TW |
dc.description.course | 機電元件模擬 | zh_TW |
dc.contributor.department | 自動控制工程學系, 資訊電機學院 | zh_TW |
dc.description.instructor | 陳, 志成 | - |
dc.description.programme | 自動控制工程學系, 資訊電機學院 | zh_TW |
分類: | 資電113學年度 |
文件中的檔案:
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1131-10.pdf | 1.69 MB | Adobe PDF | 檢視/開啟 |
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