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Collocated Dataglyphs for large-message storage and retrieval

机译:用于大型消息存储和检索的并置Dataglyphs

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In contrast to the security and integrity of electronic files, printed documents are vulnerable to damage and forgery due to their physical nature. Researchers at Palo Alto Research Center utilize DataGlyph technology to render digital characteristics to printed documents, which provides them with the facility of tamper-proof authentication and damage resistance. This DataGlyph document is known as GlyphSeal. Limited DataGlyph carrying capacity per printed page restricted the application of this technology to a domain of graphically simple and small-sized single-paged documents. In this paper the authors design a protocol motivated by techniques from the networking domain and back-up strategies, which extends the GlyphSeal technology to larger-sized, graphically complex, multi-page documents. This protocol provides fragmentation, sequencing and data loss recovery. The Collocated DataGlyph Protocol renders large glyph messages onto multiple printed pages and recovers the glyph data from rescanned versions of the multi-page documents, even when pages are missing, reordered or damaged. The novelty of this protocol is the application of ideas from RAID to the domain of DataGlyphs. The current revision of this protocol is capable of generating at most 255 pages, if page recovery is desired and does not provide enough data density to store highly detailed images in a reasonable amount of page space.
机译:与电子文件的安全性和完整性相比,由于其物理性质,印刷文件容易受到损坏和伪造。 Palo Alto Research Center的研究人员利用Dataglyph技术将数字特性呈现给印刷文件,为它们提供防篡改认证和损坏阻力的设施。该数据标识文件称为群集。每个印刷页面的有限数据格相承载能力限制了该技术在图形简单和小型单分页文档的域中的应用。在本文中,作者设计了由网络域和备份策略的技术激励的协议,它将群体技术扩展到更大的图形复杂,多页文件。该协议提供碎片,排序和数据丢失恢复。即插即同地将大的字形消息呈现到多个打印页面上,即使在丢失页面,重新排序或损坏时,即使页面丢失,也会恢复来自多页文档的重新扫描版本的字形数据。本协议的新颖性是将思想从RAID应用于DATAGLYPHS域的应用。该协议的当前修订能够在最多255页上生成,如果需要页面恢复,并且不提供足够的数据密度以在合理的页面空间中存储高度详细的图像。

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