Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes

碩士 === 元智大學 === 資訊工程學系 === 99 === Due to reduce the test data volumn , test data compression is a common and efficent method. This paper is based on Alternating Run-Length data compression method as the framework to develop a new data compression method to improve the compression ratio. The method...

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Main Authors: Ting-Fang Liu, 劉定芳
Other Authors: Wang-Dauh Tseng
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/60995876886611032100
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spelling ndltd-TW-099YZU053920262016-04-13T04:17:16Z http://ndltd.ncl.edu.tw/handle/60995876886611032100 Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes 以多語意編碼之交錯運行長度測試資料壓縮法 Ting-Fang Liu 劉定芳 碩士 元智大學 資訊工程學系 99 Due to reduce the test data volumn , test data compression is a common and efficent method. This paper is based on Alternating Run-Length data compression method as the framework to develop a new data compression method to improve the compression ratio. The method take the Alternating Run-Length data compression advenntage to improve the test data compression ratio. And our proposed method just use some bits to represent another Run-Length codeword. In other words, our codeword have Multi-Meaning to encode. this method can achieve significant compression ratio. Experimental results for the large ISCAS’89 benchmark circuits have demonstrated the proposed approach can improve the test data compression ratio. Wang-Dauh Tseng 曾王道 2011 學位論文 ; thesis 21 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 元智大學 === 資訊工程學系 === 99 === Due to reduce the test data volumn , test data compression is a common and efficent method. This paper is based on Alternating Run-Length data compression method as the framework to develop a new data compression method to improve the compression ratio. The method take the Alternating Run-Length data compression advenntage to improve the test data compression ratio. And our proposed method just use some bits to represent another Run-Length codeword. In other words, our codeword have Multi-Meaning to encode. this method can achieve significant compression ratio. Experimental results for the large ISCAS’89 benchmark circuits have demonstrated the proposed approach can improve the test data compression ratio.
author2 Wang-Dauh Tseng
author_facet Wang-Dauh Tseng
Ting-Fang Liu
劉定芳
author Ting-Fang Liu
劉定芳
spellingShingle Ting-Fang Liu
劉定芳
Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes
author_sort Ting-Fang Liu
title Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes
title_short Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes
title_full Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes
title_fullStr Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes
title_full_unstemmed Test Data Compression Based on Multi-Meaning Codeword For Alternating Run-Length Codes
title_sort test data compression based on multi-meaning codeword for alternating run-length codes
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/60995876886611032100
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