Journal article Open Access
Hamann, Arne; Saidi, Selma; Ginthoer, David; Wietfeld, Christian; Ziegenbein, Dirk
<?xml version='1.0' encoding='UTF-8'?> <record xmlns="http://www.loc.gov/MARC21/slim"> <leader>00000nam##2200000uu#4500</leader> <datafield tag="540" ind1=" " ind2=" "> <subfield code="u">https://creativecommons.org/licenses/by/4.0/legalcode</subfield> <subfield code="a">Creative Commons Attribution 4.0 International</subfield> </datafield> <datafield tag="260" ind1=" " ind2=" "> <subfield code="c">2020-10-09</subfield> </datafield> <controlfield tag="005">20230301142638.0</controlfield> <controlfield tag="001">7688420</controlfield> <datafield tag="909" ind1="C" ind2="O"> <subfield code="p">openaire</subfield> <subfield code="o">oai:zenodo.org:7688420</subfield> </datafield> <datafield tag="520" ind1=" " ind2=" "> <subfield code="a"><p>Many industrial players are currently challenged in building distributed CPS and IoT applications with stringent end-to-end QoS requirements. Examples are Vehicle-to-X applications, Advanced Driver-Assistance Systems (ADAS) or functionalities in the Industrial Internet of Things (IIoT). Currently, there is no comprehensive solution allowing to efficiently program, deploy, and operate such distributed applications. This paper will focus on real-time concerns, in building distributed CPS and IoT systems. Thereby, the focus lies, on the one hand, on mechanisms required inside of the IoT (compute) nodes, and, on the other hand, on communication protocols such as TSN and 5G connecting them. In the authors&rsquo; view, the required building blocks for a first end-to-end technology stack are available. However, their integration into a holistic framework is missing.</p></subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">Technical University of Dortmund</subfield> <subfield code="a">Saidi, Selma</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">Robert Bosch GmbH</subfield> <subfield code="a">Ginthoer, David</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">Technical University of Dortmund</subfield> <subfield code="a">Wietfeld, Christian</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">Robert Bosch GmbH</subfield> <subfield code="a">Ziegenbein, Dirk</subfield> </datafield> <datafield tag="856" ind1="4" ind2=" "> <subfield code="s">923437</subfield> <subfield code="z">md5:c1b27df9ca4c8e904741269b12ba2e22</subfield> <subfield code="u">https://zenodo.org/record/7688420/files/DAC2020_SpecialSession_Paper_wCPRnote.pdf</subfield> </datafield> <datafield tag="542" ind1=" " ind2=" "> <subfield code="l">open</subfield> </datafield> <datafield tag="980" ind1=" " ind2=" "> <subfield code="a">publication</subfield> <subfield code="b">article</subfield> </datafield> <datafield tag="100" ind1=" " ind2=" "> <subfield code="u">Robert Bosch GmbH</subfield> <subfield code="a">Hamann, Arne</subfield> </datafield> <datafield tag="024" ind1=" " ind2=" "> <subfield code="a">10.1109/DAC18072.2020.9218564</subfield> <subfield code="2">doi</subfield> </datafield> <datafield tag="245" ind1=" " ind2=" "> <subfield code="a">Building End-to-End IoT Applications with QoS Guarantees</subfield> </datafield> <datafield tag="536" ind1=" " ind2=" "> <subfield code="c">871669</subfield> <subfield code="a">A Model-driven development framework for highly Parallel and EneRgy-Efficient computation supporting multi-criteria optimisation</subfield> </datafield> <datafield tag="650" ind1="1" ind2="7"> <subfield code="a">cc-by</subfield> <subfield code="2">opendefinition.org</subfield> </datafield> </record>
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