•实现和维护必要的安全水平需要连续的安全管理流程:•评估当前威胁和对策的定义,将风险降低到可接受的水平•训练的组织 /技术指标•常规 /事件控制的重复。
编辑 Prof. Dr.-Ing. Stefan Hartmann 固体力学分部 应用力学研究所 数学/计算机科学和机械工程学院 克劳斯塔尔理工大学 教授 Dr. rer. nat. Andreas Meister 分析和应用数学工作组 卡塞尔大学数学系 教授 Dr. rer. nat. Michael Schäfer 机械工程数值方法研究所 达姆施塔特工业大学机械工程系 教授 Dr. rer. nat. Stefan Turek 应用数学研究所 多特蒙德工业大学数学学院 德国国家图书馆发布的书目信息 德国国家图书馆将此出版物列在德国国家书目中;详细的书目数据可在互联网上查阅,网址为 http://dnb.d-nb.de。 ISBN 印刷版:978-3-89958-666-4 ISBN 在线版:978-3-89958-667-1 URN:urn:nbn:de:0002-6673 © 2009,卡塞尔大学出版社有限公司,卡塞尔 www.upress.uni-kassel.de 封面布局:Jörg Batschi Grafik Design,卡塞尔 印刷:docupoint,马格德堡 德国印刷
1坎皮纳斯大学(UNICAMP)的电气和计算机工程学院,Campinas 13083-852,巴西; carlos.rufino@carissma.eu(C.A.R.J.); m228835@dac.unicamp.br(M.M.A.)2在生物能源(USP/UNICAMP/UNESP)的机构间研究生课程,Cora Coralina街330号,CIDADE UNIVERSITÁRIA,CAMPINAS 13083-896,巴西3 Carissma Electric,Connectuction of Electric,Connected and Secutect and Secure Ebsibility and Secure Ebsibility(C-Ecos),TechnIsche Hochsche Hochschulany Ingololstadt,85049949999999.850499499999949949999.850949999994999.850499999996号。 daniel.koch@carissma.eu(D.K.); yash.kotak@carissma.eu(y.k。); sergej.diel@thi.de(s.d.); gero.walter@carissma.eu(g.w.); Hans-Georg.schweiger@thi.de(H.-G.S.)4巴勒莫大学(UNIPA)工程系,意大利巴勒莫90128; eleonora.rivasanseverino@community.unipa.it(E.R.S.); pierluigi.gallo@unipa.it(p.g.)5 Consorzio Nazionale Interuniversitario per le Telecomunicazioni(CNIT),43124意大利帕尔马 *通信:hzanin@unicamp.br
a 通讯作者:埃尔朗根-纽伦堡弗里德里希亚历山大大学 (FAU),Lange Gasse 20, 90403 Nuremberg,德国,mario.liebensteiner@fau.de b 格劳宾登应用技术大学,Comercialstrasse 20, 7000 Chur,瑞士,ad-hurim.haxhimusa@fhgr.ch c 凯泽斯劳滕技术大学,Gottlieb-Daimler-Str. 42,67663 凯泽斯劳滕,德国,fabian.naumann@wiwi.uni-kl.de
Tony Heitkam Daniela Holtgräwe CeBiTec 生物学院和德累斯顿工业大学生物学院 比勒费尔德大学 01069 Dresden 33615 Bielefeld 德国 德国 电话:(+49) 351 463 39593 (+49) 521 106 8724 电子邮箱:tony.heitkam@tu-dresden.de dholtgra@cebitec.uni-bielefeld.de 连载标题:甜菜中的重复
托尼·汉斯卡姆(Tony Hanskam)生物学生物学学院cebite cebite cobite cobite cobites filogic dictarter diss 3915 8710 8724:tony.hetkam@tu-dresen.de dhtgra@cebitebec.unicbaxeld.unic-baxeld.unic-baxeld.de跑步标题
Spomoml 由:丹麦海洋工程部、芬兰海洋技术委员会、Aéronautique 协会海事技术协会(法国)提供。Institut de Recherche de la Constructionton Navale(法国)、Schlfftpaütechnische Gesellschaft(德国)。Verband der Deutschen Schiff- baüindustrie {德国)。日本船舶工程学会、意大利船舶技术协会、意大利自动化协会、荷兰海事技术物理研究所、挪威船舶研究所、船舶挪威技术协会、西班牙海军工程师协会、西班牙海军建造研究协会、瑞典船舶研究基金会、瑞典机械工程师协会、英国船舶研究协会、英国船舶工程师学会(联合王国)、Z^reb Electrotechnic Uriiveraity(南斯拉夫)。
1 NASA Langley Research Center, Hampton, VA, United States, 2 Istituto Nazionale di Fisica Nucleare (INFN), Sezione di Milano, Milan, Italy, 3 German Cancer Research Center (DKFZ), Heidelberg, Germany, 4 University of Heidelberg, Heidelberg, Germany, 5 Thales Alenia Space, Torino, Italy, 6 GSI Helmholtzzentrum für Schwerionenforschung, Darmstadt, Germany, 7 Institute for Nuclear Research of the Russian Academy of Sciences, Moscow, Russia, 8 University of New Hampshire, Durham, NH, United States, 9 Technische Universität Darmstadt, Darmstadt, Germany, 10 Heidelberg Ion Beam Therapy Center, Heidelberg, Germany, 11 University of Tennessee, Knoxville, TN, United States, 12 University of Trento, Trento, Italy, 13 Trento Institute for Fundamental Physics and Applications (INFN-TIFPA), Trento, Italy, 14 Universita ' di Roma “ Sapienza ” , Roma, Italy, 15 European Space Agency, Noordwijk, Netherlands, 16 RHEA System, Noordwijk,荷兰,17 TechnischeUniversitätWien,Atominstitut,维也纳,奥地利,奥地利18号Chalmers技术大学,哥德堡,瑞典,19莱多斯创新公司19,美国德克萨斯州休斯敦
1水资源管理主席和水通系统建模,德国柏林技术大学柏林2号柏林2号大学气象研究所,弗雷伊大学柏林,柏林,柏林,柏林3号水资源系,地理 - 世界性科学和地球科学和地球学院(ITC),特威特(ITC),特威特(ITC),特威特(ITC工程技术,荷兰恩斯切德大学,特温特大学
Manuscript received June 7, 2020; revised November 8, 2020; accepted December 23, 2020. Date of publication January 11, 2021; date of current version March 18, 2021. The work of Uzi Pereg was supported in part by the Bundesministerium für Bildung und Forschung (BMBF) under Grant 16KIS0856 and in part by the Viterbi Scholarship of the Technion. The work of Christian Deppe was supported by the Bundesministerium für Bildung und Forschung (BMBF) under Grant 16KIS0856. The work of Holger Boche was supported in part by the Bundesministerium für Bildung und Forschung (BMBF) under Grant 16KIS0858, in part by the German Federal Ministry of Education and Research (BMBF) within the national initiative for “Post Shannon Communication (NewCom)” under Grant 16KIS1003K, in part by the German Research Foundation (DFG) within the Gottfried Wilhelm Leibniz Prize under Grant BO 1734/20-1, and in part by the German Research Foundation (DFG) within the Germany's Excellence Strategy under Grant EXC-2092 - 390781972 and Grant EXC-2111 - 390814868. This article was presented in part at the 2020 Munich Conference on Quantum Science and Technology (MCQST), in part at the 2020 IEEE Information Theory Workshop (ITW), and in part at the 24th Annual Conference on Quantum Information Processing (QIP 2021). (Corresponding author: Uzi Pereg.) Uzi Pereg and Christian Deppe are with the Institute for Communica- tions Engineering, Technische Universität München, 80333 Munich, Germany (e-mail: uzi.pereg@tum.de; christian.deppe@tum.de). Holger Boche is with the Institute of Theoretical Information Tech- nology, Technische Universität München, 80290 Munich, Germany, also with the Munich Center for Quantum Science and Technology (MCQST), 80799 Munich, Germany, and also with the CASA—Cyber Security in the Age of Large-Scale Adversaries–Excellenzcluster, Ruhr-Universität Bochum, 44801 Bochum, Germany (e-mail: boche@tum.de). Communicated by M. M. Wilde, Associate Editor for Quantum Information Theory. Color versions of one or more figures in this article are available at https://doi.org/10.1109/TIT.2021.3050529. Digital Object Identifier 10.1109/TIT.2021.3050529