Digital platforms and digital science libraries

A. M. Elizarov, E. K. Lipachev

Abstract


The directions of the development and use of digital technologies in scientific activities based on digital platforms, the significance and role of digital libraries in the formation of such platforms, as well as the problems of ensuring the integration (connectivity) of the extracted information are discussed. Approaches to the creation of scientific information spaces as subspaces of a single information space are considered. The concept of a metadata factory is introduced as a system of interconnected software tools aimed at creating, processing, storing and managing metadata of digital library objects and allowing to integrate the created digital collections into aggregating digital scientific libraries. A number of tasks related to the construction of a metadata factory for the Lobachevskii-DML digital mathematical library have been solved. It is proposed to use this implemented metadata factory as an element of the ecosystem of any scientific digital platform.

Full Text:

PDF (Russian)

References


DOI:10.25559/INJOIT.2307-8162.08.202011.80-90

T. V. Ershova, Konceptualizaciya predmetnoj oblasti «cifrovaya ekonomika» kak osnova razvitiya ee ponyatijnogo apparata. Informacionnoe obshchestvo. 2019. Vyp. 6. S. 34–41.

R. S. Evans, A. Gawer, The Rise of the Platform Enterprise: A Global Survey. The Center for Global Enterprise, 2016. The Emerging Platform Economy Series No. 1. 2016. 29 p.

G. G. Parker, M. W. van Alstyne, S. P. Choudary, Platform Revolution: How Networked Markets Are Transforming the Economy – and How to Make Them Work for You. W.W. Norton & Company, 2016

White Paper. Digital Platforms. Digital regulatory policy for growth, innovation, competition and participation of the Economic Affairs Ministry. Berlin: Federal Ministry for Economic Affairs and Energy, 2017. 116 p. URL: https://www.de.digital/DIGITAL/Redaktion/EN/Publikation/white-paper.html

T. V. Ershova, Yu. E. Hohlov, Cifrovye platformy dlya issledovanij i razrabotok. Informacionnoe obshchestvo. 2017. Vyp. 6. S. 17–24.

Ya. Yu. Eferin, K. M. Rossoto, Yu. E. Hohlov, Cifrovye platformy v Rossii: konkurenciya mezhdu nacional'nymi i zarubezhnymi mnogostoronnimi platformami stimuliruet ekonomicheskij rost i innovacii. Informacionnoe obshchestvo. 2019. Vyp. 1-2. S. 16–34.

Programma «Cifrovaya ekonomika Rossijskoj Federacii». Utverzhdena rasporyazheniem Pravitel'stva RF ot 28 iyulya 2017 g. № 1632. URL: http://government.ru/docs/28653/

W. Y. Arms. Digital libraries. Cambridge; London, 2000.

A. B. Antopol'skij, T. V. Majstrovich, Elektronnye biblioteki: principy sozdaniya. M.: Liberiya-Bibinform, 2007. 288 s.

I. Xie, K. K. Matusiak, Discover Digital Libraries: Theory and Practice. Elsevier Inc. 2016.

A. Jackson, The Digital Mathematics Library. Notices Amer. Math. Soc. 2003. V. 50. P. 918–923.

T. Bouche, Introducing the mini-DML project. ECM4 Satellite Conference EMANI/DML. 2004. P. 19–29.

J. M. Borwein, E. M. Rocha, J. F. Rodrigues (eds.), Communicating Mathematics in the Digital Era. Taylor & Francis, 2008. 325 p.

T. Bouche, Some Thoughts on the Near-Future Digital Mathematics Library. Towards a Digital Mathematics Library. Masaryk University, 2008. P. 3–15. URL: https://eudml.org/doc/221606.

T. Bouche, Digital Mathematics Libraries: The Good, the Bad, the Ugly. Math. Comput. Sci. 2010. V. 3. P. 227–241. URL: https://doi.org/10.1007/s11786-010-0029-2.

T. Bouche, The Digital Mathematics Library as of 2014. Notices Amer. Math. Soc. 2014. V. 61. No. 9. P. 1085–1088.

A. M. Elizarov, E. K. Lipachev, D. S. Zuev, Digital mathematical libraries: Overview of implementations and content management services. CEUR Workshop Proceedings. 2017. V. 2022. P. 317–325.

A. B. ZHizhchenko, A. D. Izaak, Informacionnaya sistema Math-Net.Ru. Primenenie sovremennyh tekhnologij v nauchnoj rabote matematika. Uspekhi matematicheskih nauk. 2007. T. 62, №5 (377). C. 107–132. URL: https://doi.org/10.4213/rm8147. URL: http://www.mathnet.ru/links/ c59aff2f134382372f88aa415a76755f/rm8147.pdf.

A. B. ZHizhchenko, A. D. Izaak, Informacionnaya sistema Math-Net.Ru. Sovremennoe sostoyanie i perspektivy razvitiya. Impakt-faktory rossijskih matematicheskih zhurnalov // Uspekhi matematicheskih nauk. 2009. T. 64, №4 (388). S. 195–204. URL: https://doi.org/10.4213/rm9312; http://www.mathnet.ru/links/ e27ab619eaefe03fe79d663468ddd3a0/rm9312.pdf.

D. E. Chebukov, A. D. Izaak, O. G. Misyurina, Yu. A. Pupyrev, A. B. Zhizhchenko. Math-Net.Ru as a Digital Archive of the Russian Mathematical Knowledge from the XIX Century to Today. Intelligent Computer Mathematics. Lecture Notes in Computer Science. 2013. V. 7961. P. 344–348. URL: https://doi.org/ 10.1007/978-3-642-39320-4_26.

M. Bartošek, P. Kovář, M. Šárfy, DML-CZ Metadata Editor. In: Sojka P. (ed.) Towards Digital Mathematics Library. Masaryk University, 2010. P. 139–151. URL: https://dml.cz/bitstream/handle/10338.dmlcz/702537/DML_001-2008-1_17.pdf.

M. Bartošek, J. Rákosník, DML-CZ: The Experience of a Medium-Sized Digital Mathematics Library. Notices of the AMS. 2013. V. 60. No 8. P. 1028–1033. URL: http://dx.doi.org/10.1090/noti1031.

T. Bouche, Toward a digital mathematics library? In: Borwein J.M., Rocha E.M., Rodrigues J.F. (Eds) Communicating Mathematics in the Digital Era. Taylor & Francis, 2008. P. 47–73. URL: https://hal.archives-ouvertes.fr/hal-00347682.

C. Lange, Ontologies and Languages for Representing Mathematical Knowledge on the Semantic Web // Semantic Web. 2013. V. 4. No. 2. P. 119–158. URL: https://content.iospress.com/articles/semantic-web/sw059.

Vladimir Serebryakov, Semantic digital libraries. What is it? CEUR Workshop Proceedings. 2014. V. 1297. P. 1–5. URL: http://ceur-ws.org/Vol-1297/1-5_paper-1.pdf.

A. M. Elizarov, A. V. Kirillovich, E. K. Lipachev, O. A. Nevzorova, Mathematical knowledge management: ontological models and digital technology. Analitika i upravlenie danny`mi v oblastyax s intensivny`m ispol`zovaniem danny`x: sbornik statej XVIII Mezhdun. konf. DAMDID/RCDL'2016. M.: FICz IU RAN, 2016. S. 95–101.

A. M. Elizarov, A. V. Kirillovich, E. K. Lipachev, O. A. Nevzorova, Mathematical Knowledge Management: Ontological Models and Digital Technology // CEUR Workshop Proceedings. 2016. V. 1752. P. 44–50. URL: http://ceur-ws.org/Vol-1752/ paper08.pdf

T. Bouche, O. Labbe, The New Numdam Platform. In: Geuvers H., England M., Hasan O., Rabe F., Teschke O. (Eds) Intelligent Computer Mathematics. CICM 2017. Lecture Notes in Computer Science. Vol. 10383. Springer, Cham, 2017. P. 70–82. URL: https://doi.org/10.1007/978-3-319-62075-6_6. https://zenodo.org/ record/581405/.

A. Sadegh., C. Lange, M. E. Vidal, S. Auer, Integration of Scholarly Communication Metadata using Knowledge Graphs. International Conference on Theory and Practice of Digital Libraries. 2017. P. 328–341.

O. M. Ataeva, V. A. Serebryakov, Information Model of LibMeta Digital Library. Lobachevskii J. of Mathematics. 2019. V. 40. No 7. P. 861–875. URL: https://doi.org/10.1134/S1995080219070035.

A. A. Bezdushnyj, A. N. Bezdushnyj, A. K. Nesterenko, V. A. Serebryakov, T. M. Sysoev, Vozmozhnosti tekhnologij ISIR v podderzhke Edinogo Nauchnogo Informacionnogo Prostranstva RAN. Elektronnye biblioteki: perspektivnye metody i tekhnologii, elektronnye kollekcii – RCDL-2004: Trudy VI Vserossijskoj nauchnoj konferencii. M., 2004. S. 254–262.

A. A. Bezdushnyj, A. N. Bezdushnyj, A. K. Nesterenko, V. A. Serebryakov., T. M. Sysoev, Predlozheniya po naboram metadannyh dlya nauchnyh informacionnyh resursov ENIP RAN. Elektronnye biblioteki. 2004. T. 7, №5. URL: https://elbib.ru/article/view/256

A. A. Bezdushnyj, A. N. Bezdushnyj, A. B. ZHizhchenko, N. E. Kalyonov, M. V. Kulagin, V. A. Serebryakov, Predlozheniya po naboram metadannyh dlya nauchnyh informacionnyh resursov ENIP RAN. Elektronnye biblioteki: perspektivnye metody i tekhnologii, elektronnye kollekcii – RCDL-2004: Trudy VI vserossijskoj nauchnoj konferencii. M., 2004. S. 277–284.

A. A. Bezdushnyj, A. N. Bezdushnyj, V. A. Serebryakov, Skhemy metadannyh ENIP: praktika primeneniya OWL v ENIP. Informacionnoe obespechenie nauki: novye tekhnologii (pod red. N.E. Kalyonova). M., 2005. S. 155–182.

A. A. Bezdushnyj, A. N. Bezdushnyj, V. A. Serebryakov, V. I. Filippov, Integraciya metadannyh Edinogo Nauchnogo Informacionnogo Prostranstva RAN. M.: Vychislitel'nyj centr im. A.A. Dorodnicyna RAN, 2006. 238 s.

A. A. Bezdushnyj, Skhemy metadannyh dlya nauchnyh informacionnyh resursov ENIP RAN. Poryadkovyj analiz i smezhnye voprosy matematicheskogo modelirovaniya: Trudy IV mezhdunarodnoj nauchnoj konferencii. Institut prikladnoj matematiki i informatiki. Vladikavkaz, 2006. S. 260–271.

A. A. Bezdushnyj, A. N. Bezdushnyj, V. A. Serebryakov, V. I. Filippov, Integraciya metadannyh Edinogo Nauchnogo Informacionnogo Prostranstva RAN. Vychislitel'nyj centr RAN. Moskva, 2006. 238 s.

A. A. Bezdushnyj, A. N. Bezdushnyj, A. K. Nesterenko, V. A. Serebryakov., T. M. Sysoev, K. B. Tejmurazov, V. I. Filippov, Informacionnaya Web-sistema «Nauchnyj institut» na platforme ENIP. M.: Vychislitel'nyj Centr im. A.A. Dorodnicyna RAN, 2007. 248 s.

A. N. Bezdushnyj, V. A. Serebryakov, Edinoe nauchnoe informacionnoe prostranstvo (ENIP) RAN. Novye tekhnologii v informacionno-bibliotechnom obespechenii nauchnyh issledovanij. Sbornik nauchnyh trudov. Ekaterinburg, 2010. S. 6–17.

M. V. Kulagin, V. A. Serebryakov, Informacionnoe prostranstvo RAN (Proekty i realizaciya, 1998-2013). Nauchnyj servis v seti Internet: trudy XVIII Vserossijskoj nauchnoj konferencii (19–24 sentyabrya 2016 g., g. Novorossijsk). M.: IPM im. M.V. Keldysha, 2016. S. 194–222. doi:10.20948/abrau-2016-40

A. N. Bezdushnyj, A. B. ZHizhchenko, M. V. Kulagin, V. A. Serebryakov, Integrirovannaya sistema informacionnyh resursov RAN i tekhnologiya razrabotki cifrovyh bibliotek. Programmirovanie. 2000. T. 26, № 4. S. 177–185.

A. A. Bezdushny, A. N. Bezdushny, A. K. Nesterenko, V. A. Serebriakov, T. M. Sysoev, Integrated System of Information Resources of the Russian Academy of Sciences. Proceedings of the 8th World Multi-Conference on Systemics, Cybernetics and Informatics SCI-2004, Orlando, Florida. 2004. P. 462–467.

A. B. Antopol'skij, N. E. Kalenov, V. A. Serebryakov, A. N. Sotnikov, O edinom cifrovom prostranstve nauchnyh znanij. Vestnik Rossijskoj akademii nauk. 2019. T. 89, №7. S. 728–735.

M.-A. Sicilia (Ed.): Handbook of Metadata, Semantics and Ontologies. World Scientific Publishing Co. Pte. Ltd., 2014.

G. Alemu, B. Stevens, An Emergent Theory of Digital Library Metadata. Enrich then Filter. Chandos Publishing is an imprint of Elsevier, 2015.

R. Gartner, Metadata. Shaping Knowledge from Antiquity to the Semantic Web. Springer International Publishing Switzerland, 2016.

M. R. Kogalovsky, Metadata in Computer Systems. Programming and Computer Software. 2013, V. 39, No 4. P. 182–193.

P. O. Gafurova, A. M. Elizarov, E. K. Lipachev, Basic Services of Factory Metadata Digital Mathematical Library Lobachevskii-dml. Russian Digital Libraries Journal. 2020, No. 3. P. 336–381.

T. Bouche, O. Labbe, The New Numdam Platform. CICM 2017: Intelligent Computer Mathematics, P. 70–82.

A. Elizarov, A. Kirillovich, E. Lipachev, O. Nevzorova, Digital Ecosystem OntoMath: Mathematical Knowledge Analytics and Management. Communications in Computer and Information Science, Springer. 2017. V. 706. P. 33–46. doi:10.1007/978-3-319-57135-5_3.

A. M. Elizarov, E. K. Lipachev, Lobachevskii DML: Towards a Semantic Digital Mathematical Library of Kazan University. CEUR Workshop Proceedings. 2017. V. 2022. P. 326–333.

A. M. Elizarov, E. K. Lipachev, Semantic Formula Search in Digital Mathematical Libraries. Proceedings of the 2nd Russia and Pacific Conference on Computer Technology and Applications (RPC 2017). IEEE. P. 39–43. URL: https://doi.org/10.1109/RPC.2017.8168063.

Journal Publishing Tag Library NISO JATS, version 1.3d1 (ANSI/NISO Z39.96-2019). October 2019. URL: https://jats.nlm.nih.gov/archiving/1.3d1/

M. Jost, T. Bouche, C. Goutorbe, J. P. Jorda, D3.2: The EuDML metadata schema. Revision: 1.6 as of 15th December 2010, http://www.mathdoc.fr/publis/d3.2-v1.6.pdf

EuDML metadata schema specification (v2.0–final). URL: https://initiative.eudml.org/eudml-metadata-schema-specification-v20-final

Standard ECMA-376: Office Open XML File Formats, URL: https://www.ecma-international.org/publications/standards/Ecma-376.htm

A. M. Elizarov, E. K. Lipachev, S. M. Khaydarov, Automated System of Services for Processing of Large Collections of Scientific Documents. CEUR Workshop Proceedings. 2016. V. 1752. P. 58–64.

A. M. Elizarov, Sh. M. Khaydarov E. K. Lipachev, Scientific Documents Ontologies for Semantic Representation of Digital Libraries. Proceedings of the 2nd Russia and Pacific Conference on Computer Technology and Applications (RPC 2017). IEEE, 1–5. URL: https://doi.org/10.1109/RPC.2017.8168064.

Extraction from Scientific Literature. D-Lib Magazine. 2015. V. 21, No. 11/12. URL: https://doi.org/10.1045/november2015-tkaczyk.

A. N. Gerasimov, A. M. Elizarov, E. K. Lipachev, Subsystem of Formation Metadata for Science Index Databases on Management Platform Electronic Scientific Journals. Russian Digital Libraries Journal. 2015. V. 18, No. 1-2. P. 6–31.

P. O. Gafurova, A. M. Elizarov, E. K. Lipachev, D. M. Khammatova, Metadata Normalization Methods in the Digital Mathematical Library. CEUR Workshop Proceedings/ 2020. V. 2543. P. 136–148.

The Digital Mathematical Library Project. Status August 2005. URL: http://www.math.uiuc.edu/~tondeur/DML04.pdf

Digital Mathematics Library: a Vision for the Future. International Mathematical Union, 2006. URL: http://www.mathunion.org/fileadmin/IMU/Report/dml_vision. pdf

P. Tondeur, WDML: The World Digital Mathematics Library. The Evolution of Mathematical Communication in the Age of Digital Libraries. IMA Workshop, December 8–9, 2006. URL: http://www.math.uiuc.edu/~tondeur/WDML_IMA_DEC2006. pdf

P. J. Olver, The World Digital Mathematics Library: Report of a Panel Discussion. Proceedings of the International Congress of Mathematicians, August 13–21, 2014, Seoul, Korea. Kyung Moon SA. 2014. V. 1. P. 773–785.

J. Pitman, C. Lynch, Planning a 21st Century Global Library for Mathematics Research. Notices of the AMS. 2014. V. 61, No. 7. P. 776–777. URL: http://www.ams.org/ notices/201407/rnoti-p776.pdf.

Developing a 21st century global library for mathematics research. Washington, D.C.: The National Academies Press, 2014. 131 p. arxiv.org/pdf/1404.1905; URL: http://www.nap.edu/ catalog/18619/developing-a-21st-century-global-library-for-mathematics-research.

R. Todeschini, A. Baccini, Handbook of Bibliometric Indicators: Quantitative Tools for Studying and Evaluating Research. Wiley-VCH Verlag, 2016.

S. Staab, R. Studer (eds.), Handbook on Ontologies. Springer Verlag Berlin, Heidelberg, 2003, 2009.

C. Lange, Ontologies and Languages for Representing Mathematical Knowledge on the Semantic Web. Semantic Web Journal. 2013. V. 4, No. 2. P. 119–158. URL: http://www. semantic-web-journal.net/content/ontologies-and-languages-representing-mathematical-knowledge-semantic-web.

A. Elizarov, A. Kirillovich, E. Lipachev, O. Nevzorova, V. Solovyev, N. Zhiltsov, Mathematical Knowledge Representation: Semantic Models and Formalisms. Lobachevskii J. of Mathematics, 2014. V. 35, No. 4. P. 347–353. URL: https://doi.org/ 10.1134/S1995080214040143.Research & Social Science. 2019. 47. P. 16–27. DOI: 10.1016/j.erss.2018.08.018.


Refbacks

  • There are currently no refbacks.


Abava  Кибербезопасность MoNeTec 2024

ISSN: 2307-8162