研究生: |
李梓祥 Lee, Tzu-Hsian |
---|---|
論文名稱: |
紅外線浮水印於合成皮革之加值應用 Infrared Watermark for Value-added Applications to Synthetic Leather |
指導教授: |
王希俊
Wang, Hsi-Chun |
學位類別: |
碩士 Master |
系所名稱: |
圖文傳播學系 Department of Graphic Arts and Communications |
論文出版年: | 2014 |
畢業學年度: | 102 |
語文別: | 中文 |
論文頁數: | 53 |
中文關鍵詞: | 防偽科技 、數位半色調 、紅外線浮水印 、合成皮革 、加值應用 |
英文關鍵詞: | anti-counterfeiting technology, digital halftoning, infrared watermark, synthetic leather, value-added application |
論文種類: | 學術論文 |
相關次數: | 點閱:201 下載:4 |
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由於文化創意產業及環保意識的崛起,現今多數的皮製產品不再以真皮為主要素材,並大量使用合成之皮製物,以滿足顧客多樣化、客製化的需求;另一方面,由於仿冒商品亦為全球所關心之議題,因此以合成皮所製作之產品亦須具備相當程度之防偽功能。本研究目的在以半色調技術設計之浮水印隱藏於人工皮革產品中,並利用紅外線偵測驗證浮水印之存在。透過UV平台式噴印機,列印防偽機制於合成皮革之文創商品,並使用數位半色調和印墨材料在紅外線照射下的光學特性差異,構成具防偽功能的浮水印。藉由紅外線偵測裝置進行觀察檢視隱藏有資訊的浮水印,以驗證加密效果。另藉由測試導表了解UV印墨之噴印特性後,找出黑(K)、洋紅(M)、青(C)、黃(Y)印墨比例的最適組合,將隱藏圖案設計成浮水印的形式整合於合成皮革所製作之文創商品的加密圖像中。結果顯示,所輸出製作之防偽浮水印,可利用紅外線偵測裝置成功辨識所隱藏之圖像,並且進行加值應用於合成皮革產品中。
The rise of cultural creative industry and environmental awareness has led to the phenomenon that most of leather products are no longer made of genuine leather. Products made of synthetic leather are manufactured in massive quantity to satisfy the diversified and customized needs. On the other hand, anti-counterfeiting features are required for products of synthetic leather, because unauthorized duplication is an issue of global concern. The study is focused on a hidden watermark designed by digital halftoning techniques. Infrared detection is used to verify the existence of the watermark. A counterfeiting mechanism involving UV inkjet printer is introduced in cultural creative products made of synthetic leather. The difference in the optical properties of ink materials is explored to produce a watermark with multiple anti-counterfeiting features. It allows observation of watermark with hidden information under IR detection for verification. A calibration chart is used to find the optimized density combination of inks of black(K), magenta(M), cyan(C) and yellow(Y). The hidden pattern is designed into a watermark and integrated in an encrypted image on a cultural creative product made of synthetic leather. The results show that the hidden watermark can be successfully identified by using IR detection device.
一、中文文獻
江瑞璋(2003)數位印刷的防偽GLOSSMARK,取自http://www.brainnew.com.tw/Article/ra2003/ra_082003.htm
金台寶(2006)近紅外線影像技術在印刷品鑑定方面的應用。印刷技術季刊。101,21-39。
周文明(2008)不同解析度對噴墨列印品質影響之研究,噴墨印刷品質評估與技術研討會,03[民97.03] ,頁152-163。
莊國揚(2009)替代性環保油墨應用技術簡介,取自http://www.greenprint.org.tw/ef07/hyfiles/info/108_file84.pdf
泓博(2012)輻射固化油墨將在包裝印刷市場迎來新的發展機遇。科技傳媒印刷技術,6期。
陳永甫(2004)紅外輻射紅外器件與典型應用。北京:電子工業出版社。
張家龍(2008)紅外線數位浮水印結合資訊加密之防偽設計。資訊科技國際研討會論文集,朝陽科技大學資訊學院。
張景行(2005)影響UV印刷品質相關因素之探討。印藝,257期,頁37。
楊音妮、王湘涵、李貞慧、曾庭姿(2008)圖文傳播藝術學報.179,噴墨印刷水轉印於,ABS色彩品質檢測研究。
劉文心(2009)以紅外線浮水印為基礎之擴增實境創新研究。國立臺灣師範大學圖文傳播學系碩士論文,台北市。
曾士泰、羅維德、黃耀德、湯競恆、謝國煌(2004)光電產業用紫外光硬化型樹脂研發。A-027,第二十七屆高分子研討會專輯。
蕭佩琪、王希俊、連啟明(2004)文件底紋之混合網點數位浮水印技術。第三屆數位典藏技術研討會論文集,中央研究院資訊科學研究所。
二、外文文獻
Bender, W., et al. (1996). Techniques for data hiding. IBM System Journal, 35(3&4), pp.313-336.
Hecht, D. L. (1994). Embedded data glyph technology for hardcopy digital documents. In IS&T/SPIE 1994 International Symposium on Electronic Imaging: Science and Technology (pp. 341-352). International Society for Optics and Photonics.
Hersch, R. D., Donzé, P., & Chosson, S. (2007). Color images visible under UV light. In ACM Transactions on Graphics (TOG) (Vol. 26, No. 3, p. 75). ACM.
Kang, H. R. (1999). Digital color halftoning (pp. 174-175). Bellingham, Washington USA: SPIE Optical Engineering Press.
Kiuchi, M., & Saito, K. (2002). Frequency analysis for security printing lines. In Electronic Imaging 2002(pp. 110-120). International Society for Optics and Photonics.
Okuyama, K., & Suzuki, M. (2000). “Carbon Black,” U.S. Patent No. 6,136,286. Washington, DC: U.S. Patent and Trademark Office.
Phillips, G. K. (2002). Combining nanocharacter printing, digital watermarking, and UV-coded taggents for optimal machine-readable security. In Electronic Imaging 2002 (pp. 150-158). International Society for Optics and Photonics.
Uematsu, T. (2006). Combining overt and covert anti-counterfeiting technologies for securities. In Electronic Imaging 2006 (pp. 60750L-60750L). International Society for Optics and Photonics.
Van Renesse, R. L. (2005). Optical document security. 3rd edit: Artech House.
Wang, S. G., Liu, C. H., & Xu, B. (2005). Glossmark technology: beyond halftone frequencies. In Electronic Imaging 2005 (pp. 544-553). International Society for Optics and Photonics.