High data rates, low latencies, and a widespread availability are the key properties why current cellular network technologies are used for many different applications. However, the coexistence of different data traffic types in the same 4G/5G-based public mobile network results in a significant growth of interfering data traffic competing for transmission. Particularly in the context of time-critical and highly dynamic Cyber Physical Systems (CPS) and Vehicle-to-Everything (V2X) applications, the compliance with deadlines and therefore the efficient allocation of scarce mobile radio resources is of high importance. Hence, scheduling solutions are required offering a good trade-off between the compliance with deadlines and a spectrum-efficient allocation of resources in mobile networks. In this paper, we present the results of an experimental validation of the Payload-size and Deadline-aware (PayDA) scheduling algorithm using a Software-Defined Radio (SDR)-based eNodeB. The results of the experimental validation prove the high efficiency of the proposed PayDA scheduling algorithm for time-critical applications in both miscellaneous and homogeneous data traffic scenarios.


    Zugriff

    Zugriff prüfen

    Verfügbarkeit in meiner Bibliothek prüfen

    Bestellung bei Subito €


    Exportieren, teilen und zitieren



    Titel :

    Payload-Size and Deadline-Aware Scheduling for Upcoming 5G Networks: Experimental Validation in High-Load Scenarios


    Beteiligte:


    Erscheinungsdatum :

    2018-08-01


    Format / Umfang :

    435639 byte





    Medientyp :

    Aufsatz (Konferenz)


    Format :

    Elektronische Ressource


    Sprache :

    Englisch



    Advanced Wavelength Reservation Method Based on Deadline-Aware Scheduling for Lambda Grid Networks

    Miyagi, H. / Hayashitani, M. / Ishii, D. et al. | British Library Online Contents | 2007


    DMAC: Deadline-Miss-Aware Control

    Pazzaglia, Paolo / Mandrioli, Claudio / Maggio, Martina et al. | BASE | 2019

    Freier Zugriff

    DMAC: Deadline-Miss-Aware Control

    Pazzaglia, Paolo / Mandrioli, Claudio / Maggio, Martina et al. | BASE | 2019

    Freier Zugriff

    Mobility and Deadline-Aware Task Scheduling Mechanism for Vehicular Edge Computing

    da Costa, Joahannes B. D. / de Souza, Allan M. / Meneguette, Rodolfo I. et al. | IEEE | 2023

    Freier Zugriff

    Online Energy-Aware Scheduling for Deadline-Constrained Applications in Distributed Heterogeneous Systems

    Yifan Liu / Chengelie Du / Jinchao Chen et al. | DOAJ | 2024

    Freier Zugriff