Integration of satellite data processing technologies of external providers into Roscosmos information system on example of the Satellite Center of the Far Eastern Branch of the Russian Academy of Sciences

№4 (2022)

Aleksanin A.I., Dyakov S.E., Babyak P.V., Aleksanina M.G.

УДК 528.8.04:001.51
https://doi.org/10.47148/1609-364X-2022-4-44-53

AbstractAbout the AuthorReferences
On an example of a service for merged SST charts computing, the problems of integrating a sophisticated technology of external provider into the Roscosmos State Information System for the Operational Delivery of Earth Remote Sensing Data (SIS OD ERS) are considered. The main goal of the SIS OD ERS is the implementation of a simple and uniform access to satellite data of both Russian and worldwide archives, as well as to high-level processing products in a required thematic area. External provider gets access to satellite data archives and computing resources of SIS OD ERS. The key issue is minimizing the cost of processing data from both Roscosmos and external providers. The Multiple Access Center for Regional Satellite Monitoring of the Environment of the Far East Branch of the Russian Academy of Sciences deploy its services to SIS OD ERS. The options for arranging the exchange of data and services between a provider and SIS OD ERS are proposed. A REST web services are made, with its support in the Python environment. As a result of the integration, daily merged SST charts are built that preserve the structure of thermal fronts for any water area and with the accuracy that corresponds the international standards. The service is distributed. Both the resources and data of Roscosmos and the Satellite Center of the Far Eastern Branch of the Russian Academy of Sciences, and the data from the foreign information systems are used.
Anatoly I. Aleksanin
Doctor of Technical Sciences
Head of the Satellite Monitoring Laboratory
Institute of Automation and Control Processes, Far Eastern Branch of the Russian Academy of Sciences
5, Radio Str., Vladivostok, 690041, Russia
Professor at Far Eastern Federal University
10, Ajax Bay, Russky Island, Vladivostok, 690091 Russia
e-mail: aleks@iacp.dvo.ru
ORCID: : 0000-0002-8915-7981

Sergey E. Dyakov
Junior Researcher
Institute of Automation and Control Processes, Far Eastern Branch of the Russian Academy of Sciences
5, Radio Str., Vladivostok, 690041, Russia
е-mail: sergdkv@gmail.com
ORCID: 0000-0002-8462-4173

Pavel V. Babyak
Lead Software Engineer
Institute of Automation and Control Processes, Far Eastern Branch of the Russian Academy of Sciences
5, Radio Str., Vladivostok, 690041, Russia
е-mail: vanger.paul@yandex.ru

Marina G. Aleksanina
Candidate of Technical Sciences
Senior Researcher
Institute of Automation and Control Processes, Far Eastern Branch of the Russian Academy of Sciences
5, Radio Str., Vladivostok, 690041, Russia
Associate Professor of Far Eastern Federal University
10, Ajax Bay, Russky Island, Vladivostok, 690091 Russia
е-mail: margeo@mail.ru
ORCID: 0000-0002-0274-3487

  1. Aleksanin A.I., Aleksanina M.G., Babyak P.V., Eremenko V.S. Integration of satellite data and service providers. Sovremennye problemy distantsionnogo
    zondirovaniya Zemli iz kosmosa. 2019;16(3):288–300. DOI: 10.21046/2070-7401-2019-16-3-288-300.
  2. Babyak P.V., Nedoluzhko I.V., Fomin E.V. An approach used to provide satellite data processing services at Multiple Access Centre for Regional
    Satellite Monitoring of Environment FEB RAS. In: Internet i sovremennoe obshchestvo : materialy XIV Vserossiiskoi ob”edinennoi konferentsii
    (St. Petersburg, 12–14 October 2011). St. Petersburg: MPSS; 2011. pp. 27–32.
  3. Diakov S.E., Kachur V.A. Creating composite maps of ocean surface temperature preserving thermal structures. Sovremennye problemy
    distantsionnogo zondirovaniya Zemli iz kosmosa. 2016;13(2):84–94. DOI: 10.21046/2070-7401-2016-13-2-84-94.
  4. Lupyan E.A., Mazurov A.A., Nazirov R.R., Proshin A.A., Flitman E.V. Tekhnologiya postroeniya avtomatizirovannykh informatsionnykh sistem
    sbora, obrabotki, khraneniya i rasprostraneniya sputnikovykh dannykh dlya resheniya nauchnykh i prikladnykh zadach [Technology for creating
    automated information systems for satellite data collecting, processing, storing and distributing for solving scientific and applied problems] //
    Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa. 2004;1(1):81–88.
  5. Nedolyzhko B.V. Integration of resources of the center of joint use for regional satellite monitoring of environment FEB RAS into the Service
    Support Environment of the European Space Agency. Computational technologies. 2010;15(4):116–130.
  6. Nedoluzhko I.V., Babyak P.V., Tarasov G.V., Eremenko V.S. Infrastructure for receive, distributed processing and delivery of satellite data at Multiple
    Access Center of Regional Satellite Monitoring FEB RAS. Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa. 2012;9(3):324–
    331.
  7. Nosenko Yu.I., Novikov M.V., Zaichko V.A., Romashkin V.V., Loshkarev P.A. Edinaya territorial’no-raspredelennaya informatsionnaya sistema
    DZZ – problemy, resheniya, perspektivy (chast’ 2) [Unified geographically distributed information system of remote sensing – problems, solutions,
    prospects (part 2)]. Geomatika. 2010;4:31–37.
  8. Smirnov A.O., Smishkal’n A.V., Romanova K.N., Ustinov M.M. Tekhnologicheskaya osnova formirovaniya i dovedeniya do potrebitelei produktov i
    uslug, osnovannykh na rezul’tatakh kosmicheskoi deyatel’nosti [Technological basis for the formation and communication to consumers of products
    and services based on the results of space activities]. In: Sovremennye problemy distantsionnogo zondirovaniya Zemli iz kosmosa: materialy 18
    Vseros. otkrytoi konf. (Moscow, 16–20 November 2020). Moscow: IKI RAN; 2020. p. 442. DOI: 10.21046/18DZZconf-2020a.
  9. Shokin Yu.I., Zhizhimov O.L., Pestunov I.A., Sinyavskii Yu.N., Smirnov V.V. Raspredelennaya informatsionno-analiticheskaya sistema dlya poiska,
    obrabotki i analiza prostranstvennykh dannykh [Distributed information and analytical system for search, processing and analysis of spatial data].
    Computational technologies. 2007;12(S3):108–115.
  10. Shokin Yu.I., Potapov V.P. GIS today: current state, perspectives, solutions. Computational technologies. 2015;20(5):175–213.
  11. Kobler B., Berbert J. NASA Earth Observing System Data Information System (EOSDIS). In: Digest of Papers Eleventh IEEE Symposium
    on Mass Storage Systems (Monterey, 7–10 October 1991). 1991. pp. 18–19. Available at: https://www.computer.org/csdl/proceedings/
    mass/1991/12OmNzlUKpJ (accessed 05/12/2022). DOI: 10.1109/MASS.1991.160199.
  12. Mitchell A., Ramapriyan H., Lowe D. Evolution of web services in EOSDIS – Search and order metadata registry (ECHO). In: 2009 IEEE International
    Geoscience and Remote Sensing Symposium (Cape Town, 12–17 July 2009). 2009. Vol. 5. pp. 371–374. Available at: https://ieeexplore.ieee.org/
    abstract/document/5417653 (accessed 05/12/2022). DOI: 10.1109/IGARSS.2009.5417653.

Key words: information system, Earth remote sensing data, satellite data, delivery of data and services

Section: Conference proceedings ITES-2022