Rosemann, Philipp; Partani, Sanket; Miranda, Marc; Mahn, Jannik; Karrenbauer, Michael; Meli, William; Hernangomez, Rodrigo; Lübke, Maximilian; Kochems, Jacob; Köpsell, Stefan; Aziz-Koch, Anosch; Askar, Ramez; Beuster, Julia; Blume, Oliver; Franchi, Norman; Schotten, Hans D. et al:
Enabling mobility-oriented JCAS in 6G networks: an architecture proposal
In: 2024 IEEE 4th International Symposium on Joint Communications & Sensing (JC&S) : 19-21 March 2024, Leuven, Belgium - 4. IEEE International Symposium on Joint Communications and Sensing (JC&S) (Leuven, 19.-21.03.2024) - Piscataway, NJ: IEEE, 2024, 6 Seiten
2024Konferenz-/Tagungsbeitrag in Konferenz-/TagungsbandOA Grün
Technische Universität Ilmenau (1992-) » Fakultät für Elektrotechnik und Informationstechnik (1992-) » Institut für Informationstechnik (2004-) » Fachgebiet Elektronische Messtechnik und Signalverarbeitung (2018-)
Titel in Englisch:
Enabling mobility-oriented JCAS in 6G networks: an architecture proposal
Autor*in:
Rosemann, Philipp
SCOPUS
58740251000
;
Partani, Sanket
SCOPUS
57215967795
;
Miranda, Marc
SCOPUS
58740251100
;
Mahn, Jannik
SCOPUS
58072465500
;
Karrenbauer, Michael
SCOPUS
57189382148
;
Meli, William
SCOPUS
58739558200
;
Hernangomez, Rodrigo
SCOPUS
57216844998
;
Lübke, Maximilian
SCOPUS
57215341389
;
Kochems, Jacob
SCOPUS
57196478364
;
Köpsell, Stefan
SCOPUS
55887790800
;
Aziz-Koch, Anosch
SCOPUS
58740940300
;
Askar, Ramez
SCOPUS
59153315500
;
Beuster, JuliaTU
SCOPUS
57705914800
Sonstiges
der Hochschule zugeordnet
;
Blume, Oliver
SCOPUS
6602348055
;
Franchi, Norman
SCOPUS
56027315300
;
Thomä, ReinerTU
GND
132014971
ORCID
0000-0002-9254-814XORCID iD
ResearcherID
I-3719-2013
SCOPUS
57208826369
SCOPUS
57212087040
SCOPUS
7006664708
Sonstiges
der Hochschule zugeordnet
;
Stańczak, Sławomir;Schotten, Hans D.
SCOPUS
7004559819
Erscheinungsjahr:
2024
Open-Access-Publikationsweg:
OA Grün
Scopus ID
Sprache des Textes:
Englisch
Schlagwort, Thema:
6G ; Architecture ; JCAS ; U2X ; V2X
Datenträgertyp:
Online-Ressource
Ressourcentyp:
Text
Lizenztyp:
Alle Rechte vorbehalten
Peer Reviewed:
Ja
Teil der Statistik:
Ja

Abstract in Englisch:

Sensing plays a crucial role in autonomous and assisted vehicular driving, as well as in the operation of autonomous drones. The traditional segregation of communication and onboard sensing systems in mobility applications is due to be merged using Joint Communication and Sensing (JCAS) in the development of the sixth generation (6G) mobile radio standard. The integration of JCAS functions into the future road traffic landscape introduces novel challenges for the design of the 6G system architecture. Special emphasis will be placed on facilitating direct communication between road users and aerial drones. In various mobility scenarios, diverse levels of integration will be explored, ranging from leveraging communication capabilities to coordinate different radars to achieving deep integration through a unified waveform. In this paper, we have identified use cases and derived five higher-level Technical Cases (TCs). Functional requirements for the 6G system architecture for a device-oriented JCAS approach will be extracted from the TCs and used to conceptualize the architectural views.