{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2022,3,29]],"date-time":"2022-03-29T09:59:21Z","timestamp":1648547961714},"reference-count":24,"publisher":"Walter de Gruyter GmbH","issue":"5","content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":[],"published-print":{"date-parts":[[2021,5,26]]},"abstract":"<jats:title>Zusammenfassung<\/jats:title>\n               <jats:p>Im aktuellen Netzentwicklungsplan Strom ist der Neu- und Zubau mehrerer 1000\u2009km von \u00dcbertragungsleitungen geplant. Eine zunehmende Anzahl von Verbindungen wird dabei als Drehstrom-Erdkabel ausgef\u00fchrt. Aufgrund der erzielbaren Vorteile erscheinen supraleitende 380\u2009kV Drehstromkabel zunehmend attraktiv. Dieser Beitrag fasst zun\u00e4chst den grundlegenden Aufbau und die Eigenschaften supraleitender 380\u2009kV Drehstromkabel zusammen und f\u00fchrt an einem Beispiel einen wirtschaftlichen Vergleich mit einem konventionellen Kabel durch. Abschliessend werden die wichtigsten Anforderungen an die Systemintegration eines supraleitenden Kabels aus Sicht eines Netzbetreibers aufgef\u00fchrt und deren Erf\u00fcllung bewertet. Als wesentliches Ergebnis bleibt festzuhalten, dass supraleitende 380\u2009kV Kabel wirtschaftlich sein k\u00f6nnen und die betrieblichen Anforderungen an die Systemintegration aus Sicht eines Netzbetreibers erf\u00fcllen k\u00f6nnen.<\/jats:p>","DOI":"10.1515\/auto-2021-0017","type":"journal-article","created":{"date-parts":[[2021,4,29]],"date-time":"2021-04-29T22:19:49Z","timestamp":1619734789000},"page":"401-408","source":"Crossref","is-referenced-by-count":0,"title":["Wirtschaftlichkeit und Systemintegration von supraleitenden 380\u2009kV H\u00f6chstspannungskabeln"],"prefix":"10.1515","volume":"69","author":[{"given":"Mathias","family":"Noe","sequence":"first","affiliation":[{"name":"Karlsruher Institut f\u00fcr Technologie (KIT) , Karlsruhe , Germany"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"given":"Dustin","family":"Kottonau","sequence":"additional","affiliation":[{"name":"Karlsruher Institut f\u00fcr Technologie (KIT) , Karlsruhe , Germany"}],"role":[{"role":"author","vocabulary":"crossref"}]}],"member":"374","published-online":{"date-parts":[[2021,4,30]]},"reference":[{"key":"2021062112502399805_j_auto-2021-0017_ref_001_w2aab3b7d384b1b6b1ab2ab1Aa","unstructured":"Netzentwicklungsplan Strom 2030, Version 2019, Zweiter Entwurf, 15. April 2019, www.netzentwiclungsplan.de."},{"key":"2021062112502399805_j_auto-2021-0017_ref_002_w2aab3b7d384b1b6b1ab2ab2Aa","unstructured":"J. Br\u00fcggmann, Bodenschutz bei Erdverkabelung, Programm Umweltdialog, Vortrag Bonn 2018, https:\/\/www.netzausbau.de\/SharedDocs\/Downloads\/DE\/Veranstaltungen\/2018\/UD_Bonn\/Vortrag_Brueggmann_Amprion.pdf?__blob=publicationFile."},{"key":"2021062112502399805_j_auto-2021-0017_ref_003_w2aab3b7d384b1b6b1ab2ab3Aa","unstructured":"M. Stemmle, F. Merschel, M. Noe, AMPACITY PROJECT \u2013 Update on world\u2018s first superconducting cable and fault current limiter installation in a German city center, in: 23rd International Conference on Electricity Distribution, Lyon, 15\u201318 June 2015, Paper 0678."},{"key":"2021062112502399805_j_auto-2021-0017_ref_004_w2aab3b7d384b1b6b1ab2ab4Aa","unstructured":"D. Kottonau, E. Shabagin, W.\u2009T. Batista de Sousa, J. Geisb\u00fcsch, M. Noe, H. Stagge, S. Fechner, H. Woiton, T. K\u00fcsters, Bewertung des Einsatzes supraleitender 380\u2009kV Kabel, KIT Scientific Publishing, Karlsruhe, 22.08.2019, ISBN 9783731509271, https:\/\/www.ksp.kit.edu\/9783731509271."},{"key":"2021062112502399805_j_auto-2021-0017_ref_005_w2aab3b7d384b1b6b1ab2ab5Aa","unstructured":"CIGRE Technical Brochure 644, Working Group D1.38, Common Characteristics and Emerging Test Techniques for HTS Power Equipment, December 2015."},{"key":"2021062112502399805_j_auto-2021-0017_ref_006_w2aab3b7d384b1b6b1ab2ab6Aa","doi-asserted-by":"crossref","unstructured":"S. Mukoyama, M. Yagi, T. Okuma, O. Maruyama, Y. Shiohara, N. Hayakawa, T. Mizutani, Status of 275\u2009kV REBCO HTS cable development in the NEDO project, Physics Procedia, 58, 2014, 310\u2013313, DOI: 10.1016\/j.phpro.2014.09.077.","DOI":"10.1016\/j.phpro.2014.09.077"},{"key":"2021062112502399805_j_auto-2021-0017_ref_007_w2aab3b7d384b1b6b1ab2ab7Aa","doi-asserted-by":"crossref","unstructured":"G.\u2009S. Lee, S.\u2009S. Bang, H.\u2009A. Mantooth and Y.-J. Shin, Condition monitoring of 154\u2009KV HTS cable systems via temporal sliding LSTM networks, IEEE Power & Energy Society Section, August 2020, DOI: 10.1109\/ACCESS.2020.3014224227.","DOI":"10.1109\/ACCESS.2020.3014227"},{"key":"2021062112502399805_j_auto-2021-0017_ref_008_w2aab3b7d384b1b6b1ab2ab8Aa","doi-asserted-by":"crossref","unstructured":"N. Hayakawa, K. Ishida, T. Matsuoka and H.Kojima, Electrical insulation characteristics and mechanisms of low dielectric loss materials for high-voltage HTS cables, IEEE Transaction on Applied Superconductivity, 27, No.\u20094, June 2017.","DOI":"10.1109\/TASC.2016.2645796"},{"key":"2021062112502399805_j_auto-2021-0017_ref_009_w2aab3b7d384b1b6b1ab2ab9Aa","unstructured":"B.\u2009R. Oswald, A. M\u00fcller, M. Kr\u00e4mer, Vergleichende Studie zu Strom\u00fcbertragungstechniken im H\u00f6chstspannungsnetz, ForWind Studie, Hannover & Oldenburg, 20. September 2005."},{"key":"2021062112502399805_j_auto-2021-0017_ref_010_w2aab3b7d384b1b6b1ab2ac10Aa","unstructured":"Brosch\u00fcre Bundesnetzagentur f\u00fcr Elektrizit\u00e4t, Gas,Telekommunikation, Post und Eisenbahnen, Netzausbau Erdkabel, August 2019, https:\/\/www.netzausbau.de\/SharedDocs\/Downloads\/DE\/Publikationen\/BroschuereErdkabel.pdf?__blob=publicationFile."},{"key":"2021062112502399805_j_auto-2021-0017_ref_011_w2aab3b7d384b1b6b1ab2ac11Aa","doi-asserted-by":"crossref","unstructured":"R.\u2009L. Garwin, J. Matisoo, Superconducting lines for the transmission of large amounts of Electrical Power over large distances, Proceedings IEEE, 55, No.\u20094, April 1967.","DOI":"10.1109\/PROC.1967.5575"},{"key":"2021062112502399805_j_auto-2021-0017_ref_012_w2aab3b7d384b1b6b1ab2ac12Aa","doi-asserted-by":"crossref","unstructured":"P. Graneau, Economic of underground transmission with cryogenic cables, IEEE Transactions on Power Apparatus and Systems, PAS, 89, No.\u20091, January 1970.","DOI":"10.1109\/TPAS.1970.292640"},{"key":"2021062112502399805_j_auto-2021-0017_ref_013_w2aab3b7d384b1b6b1ab2ac13Aa","doi-asserted-by":"crossref","unstructured":"E.\u2009B. Forsyth, Superconducting power transmission systems \u2013 the past and possibly the future, Superconductor Science and Technology, 6, 1993, 699\u2013714.","DOI":"10.1088\/0953-2048\/6\/10\/001"},{"key":"2021062112502399805_j_auto-2021-0017_ref_014_w2aab3b7d384b1b6b1ab2ac14Aa","doi-asserted-by":"crossref","unstructured":"W. Yuan, S. Venuturumilli, Z. Zhang, Y. Mavrocostanti and Min Zhang, Economic feasibility study of using high-temperature superconducting cables in U.\u2009K.\u2019s electrical distribution networks, IEEE Transactions on Applied Superconductivity, 28, No.\u20094, June 2018.","DOI":"10.1109\/TASC.2018.2799332"},{"key":"2021062112502399805_j_auto-2021-0017_ref_015_w2aab3b7d384b1b6b1ab2ac15Aa","doi-asserted-by":"crossref","unstructured":"D. Politano, M. Sj\u00f6str\u00f6m, G. Schnyder, J. Rhyner, Technical and economical assessment of HTS cables, IEEE Transaction on Applied Superconductivity, 11, No.\u20091, March 2001.","DOI":"10.1109\/77.920366"},{"key":"2021062112502399805_j_auto-2021-0017_ref_016_w2aab3b7d384b1b6b1ab2ac16Aa","unstructured":"F. Merschel, M. Noe, M. Stemmle, A. Hobl, O. Sauerbach, AmpaCity \u2013 supraleitende Kabel und Strombegrenzer f\u00fcr die Energieverteilung in Ballungsgebieten, in: Internationaler ETG-Kongress 2013 \u2013 Energieversorgung auf dem Weg nach 2050 \u2013 Symposium 1, 05.11.2013\u201306.11.2013 in Berlin, Deutschland."},{"key":"2021062112502399805_j_auto-2021-0017_ref_017_w2aab3b7d384b1b6b1ab2ac17Aa","unstructured":"A. Fuessl, HTS cable market potential \u2013 a perspective from a tape supplier, in: Workshop Zukunft und Innovation der Energietechnik mit Hochtemperatur-Supraleitern, M\u00e4rz 2018, Berlin, https:\/\/ivsupra.de\/wp-content\/uploads\/2019\/01\/5-ZIEHL-fuessl.pdf."},{"key":"2021062112502399805_j_auto-2021-0017_ref_018_w2aab3b7d384b1b6b1ab2ac18Aa","unstructured":"P. Michalek, Von der Hochspannungsfreileitung zum Supraleiter, in: Workshop Zukunft und Innovation der Energietechnik mit Hochtemperatur-Supraleitern, M\u00e4rz 2020, Berlin, https:\/\/ivsupra.de\/wp-content\/uploads\/2020\/03\/2_Michalek-ZIEHL-VII-Energiewende-Energieeffizienz.pdf."},{"key":"2021062112502399805_j_auto-2021-0017_ref_019_w2aab3b7d384b1b6b1ab2ac19Aa","doi-asserted-by":"crossref","unstructured":"C. Lee, H. Son, Y. Won, Y. Kim,C. Ryu, M. Park and M. Iwakuma, Progress of the first commercial project of high-temperature superconducting cables by KEPCO in Korea, Supercond. Sci. Technol., 33, 2020, 044006 (8 pp.), DOI: 10.1088\/1361-6668\/ab6ec3.","DOI":"10.1088\/1361-6668\/ab6ec3"},{"key":"2021062112502399805_j_auto-2021-0017_ref_020_w2aab3b7d384b1b6b1ab2ac20Aa","unstructured":"B.\u2009R. Oswald: 380\u2009kV Salzburgleitung: Auswirkungen der m\u00f6glichen (Teil)Verkabelung des Abschnitts Tauern-Salzach, Hannover 2007, https:\/\/www.e-control.at\/documents\/20903\/-\/-\/acf6020d-f3a1-45ed-a860-7d03a0c0e75b."},{"key":"2021062112502399805_j_auto-2021-0017_ref_021_w2aab3b7d384b1b6b1ab2ac21Aa","unstructured":"IEC 60071-1:2019 \u2013 Insulation co-ordination \u2013 Part 1: Definitions, principles and rules."},{"key":"2021062112502399805_j_auto-2021-0017_ref_022_w2aab3b7d384b1b6b1ab2ac22Aa","unstructured":"IEC 63075:2019 \u2013 Superconducting AC power cables and their accessories for rated voltages from 6\u2009kV to 500\u2009kV \u2013 test methods and requirements."},{"key":"2021062112502399805_j_auto-2021-0017_ref_023_w2aab3b7d384b1b6b1ab2ac23Aa","unstructured":"Technical Brochure 538 Recommendations for testing of Superconducting cables, Study Committee B1, WG B1.31, 2013."},{"key":"2021062112502399805_j_auto-2021-0017_ref_024_w2aab3b7d384b1b6b1ab2ac24Aa","unstructured":"S. P\u00f6hler, Hochtemperatur-Supraleiter im \u00dcbertragungsnetz, Wissenschaftsdialog: Netzausbau im Fokus der Forschung Bundesnetzagentur, Vortrag 11.10.2019, Bonn."}],"container-title":["at - Automatisierungstechnik"],"original-title":[],"language":"en","link":[{"URL":"https:\/\/www.degruyter.com\/document\/doi\/10.1515\/auto-2021-0017\/xml","content-type":"application\/xml","content-version":"vor","intended-application":"text-mining"},{"URL":"https:\/\/www.degruyter.com\/document\/doi\/10.1515\/auto-2021-0017\/pdf","content-type":"unspecified","content-version":"vor","intended-application":"similarity-checking"}],"deposited":{"date-parts":[[2021,6,21]],"date-time":"2021-06-21T18:59:48Z","timestamp":1624301988000},"score":1,"resource":{"primary":{"URL":"https:\/\/www.degruyter.com\/document\/doi\/10.1515\/auto-2021-0017\/html"}},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2021,4,30]]},"references-count":24,"journal-issue":{"issue":"5","published-online":{"date-parts":[[2021,4,30]]},"published-print":{"date-parts":[[2021,5,26]]}},"alternative-id":["10.1515\/auto-2021-0017"],"URL":"https:\/\/doi.org\/10.1515\/auto-2021-0017","relation":{},"ISSN":["2196-677X","0178-2312"],"issn-type":[{"value":"2196-677X","type":"electronic"},{"value":"0178-2312","type":"print"}],"subject":[],"published":{"date-parts":[[2021,4,30]]}}}