{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2022,4,1]],"date-time":"2022-04-01T02:10:26Z","timestamp":1648779026757},"reference-count":28,"publisher":"Institute of Electronics, Information and Communications Engineers (IEICE)","issue":"2","content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":["IEICE Trans. Inf. &amp; Syst."],"published-print":{"date-parts":[[2016]]},"DOI":"10.1587\/transinf.2015edp7034","type":"journal-article","created":{"date-parts":[[2016,1,31]],"date-time":"2016-01-31T22:13:11Z","timestamp":1454278391000},"page":"370-382","source":"Crossref","is-referenced-by-count":1,"title":["Offline Selective Data Deduplication for Primary Storage Systems"],"prefix":"10.1587","volume":"E99.D","author":[{"given":"Sejin","family":"PARK","sequence":"first","affiliation":[{"name":"POSTECH"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Chanik","family":"PARK","sequence":"additional","affiliation":[{"name":"POSTECH"}],"role":[{"role":"author","vocabulary":"crossref"}]}],"member":"532","reference":[{"key":"1","unstructured":"[1] L. Dubois and M. Amalsas, \u201cKey considerations as deduplication evolves into primary storage,\u201d White Paper, IDC, May 2010."},{"key":"2","unstructured":"[2] B. Zhu, K. Li, and R.H. Patterson, \u201cAvoiding the disk bottleneck in the data domain deduplication file system,\u201d FAST, pp.1-14, 2008."},{"key":"3","unstructured":"[3] C. Dubnicki, L. Gryz, L. Heldt, M. Kaczmarczyk, W. Kilian, P. Strzelczak, J. Szczepkowski, C. Ungureanu, and M. Welnicki, \u201cHydrastor: A scalable secondary storage,\u201d FAST, pp.197-210, 2009."},{"key":"4","unstructured":"[4] M. Lillibridge, K. Eshghi, D. Bhagwat, V. Deolalikar, G. Trezis, and P. Camble, \u201cSparse indexing: Large scale, inline deduplication using sampling and locality,\u201d FAST, pp.111-123, 2009."},{"key":"5","unstructured":"[5] W. Dong, F. Douglis, K. Li, R.H. Patterson, S. Reddy, and P. Shilane, \u201cTradeoffs in scalable data routing for deduplication clusters,\u201d FAST, pp.15-29, 2011."},{"key":"6","doi-asserted-by":"crossref","unstructured":"[6] D.T. Meyer and W.J. Bolosky, \u201cA study of practical deduplication,\u201d ACM Transactions on Storage (TOS), vol.7, no.4, p.14, 2012.","DOI":"10.1145\/2078861.2078864"},{"key":"7","unstructured":"[7] W. Xia, H. Jiang, D. Feng, and Y. Hua, \u201cSilo: A similarity-locality based near-exact deduplication scheme with low ram overhead and high throughput,\u201d USENIX Annual Technical Conference, 2011."},{"key":"8","unstructured":"[8] F. Guo and P. Efstathopoulos, \u201cBuilding a high-performance deduplication system,\u201d USENIX Annual Technical Conference, 2011."},{"key":"9","doi-asserted-by":"crossref","unstructured":"[9] A. Muthitacharoen, B. Chen, and D. Mazieres, \u201cA low-bandwidth network file system,\u201d ACM SIGOPS Operating Systems Review, pp.174-187, ACM, 2001.","DOI":"10.1145\/502059.502052"},{"key":"10","unstructured":"[10] K. Srinivasan, T. Bisson, G.R. Goodson, and K. Voruganti, \u201cidedup: latency-aware, inline data deduplication for primary storage,\u201d FAST, pp.1-14, 2012."},{"key":"11","unstructured":"[11] C. Alvarez, \u201cNetapp deduplication for fas and v-series deployment and implementation guide,\u201d Technical Report, TR-3505, 2011."},{"key":"12","unstructured":"[12] EMC, \u201cAchieving storage efficiency through emc celerra data deduplication,\u201d White paper, March 2010."},{"key":"13","unstructured":"[13] IBM, \u201cIBM storage tank \u2014 a distributed storage system,\u201d White paper, Jan. 2002."},{"key":"14","unstructured":"[14] A. El-Shimi, R. Kalach, A. Kumar, A. Ottean, J. Li, and S. Sengupta, \u201cPrimary data deduplication-large scale study and system design,\u201d USENIX Annual Technical Conference, pp.285-296, 2012."},{"key":"15","unstructured":"[15] M. Cao, S. Bhattacharya, and T. Tso, \u201cEXT4: The next generation of EXT2\/3 filesystem,\u201d 2007 Linux Storage &amp; Filesystem Workshop, 2007."},{"key":"16","unstructured":"[16] T.J. Gibson and E.L. Miller, \u201cLong-term file activity patterns in a unix workstation environment,\u201d Proc. 15th IEEE Symposium on Mass Storage Systems, pp.355-372, 1998."},{"key":"17","unstructured":"[17] A.W. Leung, S. Pasupathy, G.R. Goodson, and E.L. Miller, \u201cMeasurement and analysis of large-scale network file system workloads,\u201d USENIX Annual Technical Conference, pp.5-2, 2008."},{"key":"18","doi-asserted-by":"crossref","unstructured":"[18] K. Ramakrishnan, P. Biswas, and R. Karedla, \u201cAnalysis of file i\/o traces in commercial computing environments,\u201d ACM SIGMETRICS Performance Evaluation Review, vol.20, no.1, pp.78-90, 1992.","DOI":"10.1145\/149439.133090"},{"key":"19","doi-asserted-by":"crossref","unstructured":"[19] A.J. Smith, \u201cAnalysis of long term file reference patterns for application to file migration algorithms,\u201d Software Engineering, IEEE Trans., no.4, pp.403-417, 1981.","DOI":"10.1109\/TSE.1981.230843"},{"key":"20","unstructured":"[20] M. Szeredi, \u201cFile system in userspace, fuse, http:\/\/fuse.sourceforge.net.\u201d"},{"key":"21","unstructured":"[21] T.Y.T. R. Card and S. Tweedie, \u201cDesign and implementation of the second extended filesystem,\u201d Amsterdam Linux Conference, 1994."},{"key":"22","unstructured":"[22] FIPS Pub., \u201c180-1. secure hash standard,\u201d National Institute of Standards and Technology, vol.17, 1995."},{"key":"23","unstructured":"[23] R. McDougall, \u201cFilebench: Application level file system benchmark,\u201d"},{"key":"24","unstructured":"[24] R. Jones et al., \u201cNetperf: a network performance benchmark,\u201d Information Networks Division, Hewlett-Packard Company, 1996."},{"key":"25","doi-asserted-by":"crossref","unstructured":"[25] J.A. Roberson, C.A. Webber, M.C. McWhinney, R.E. Brown, M.J. Pinckard, and J.F. Busch, \u201cAfter-hours power status of office equipment and inventory of miscellaneous plug-load equipment,\u201d Lawrence Berkeley National Laboratory, 2004.","DOI":"10.2172\/821675"},{"key":"26","unstructured":"[26] Y. Agarwal, S. Hodges, R. Chandra, J. Scott, P. Bahl, and R. Gupta, \u201cSomniloquy: Augmenting network interfaces to reduce pc energy usage,\u201d NSDI, pp.365-380, 2009."},{"key":"27","unstructured":"[27] S. Nedevschi, J. Chandrashekar, J. Liu, B. Nordman, S. Ratnasamy, and N. Taft, \u201cSkilled in the art of being idle: Reducing energy waste in networked systems,\u201d NSDI, pp.381-394, 2009."},{"key":"28","unstructured":"[28] T. Das, P. Padala, V.N. Padmanabhan, R. Ramjee, and K.G. Shin, \u201cLitegreen: Saving energy in networked desktops using virtualization,\u201d USENIX Annual Technical Conference, 2010."}],"container-title":["IEICE Transactions on Information and Systems"],"original-title":[],"language":"en","link":[{"URL":"https:\/\/www.jstage.jst.go.jp\/article\/transinf\/E99.D\/2\/E99.D_2015EDP7034\/_pdf","content-type":"unspecified","content-version":"vor","intended-application":"similarity-checking"}],"deposited":{"date-parts":[[2019,9,4]],"date-time":"2019-09-04T04:40:31Z","timestamp":1567572031000},"score":1,"resource":{"primary":{"URL":"https:\/\/www.jstage.jst.go.jp\/article\/transinf\/E99.D\/2\/E99.D_2015EDP7034\/_article"}},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2016]]},"references-count":28,"journal-issue":{"issue":"2","published-print":{"date-parts":[[2016]]}},"URL":"https:\/\/doi.org\/10.1587\/transinf.2015edp7034","relation":{},"ISSN":["0916-8532","1745-1361"],"issn-type":[{"value":"0916-8532","type":"print"},{"value":"1745-1361","type":"electronic"}],"subject":[],"published":{"date-parts":[[2016]]}}}