Adjacent Channel Interference Aware Joint Scheduling and Power Control for V2V Broadcast Communication
Artikel i vetenskaplig tidskrift, 2021

IEEE This paper proposes scheduling and power control schemes to mitigate the impact of both co-channel interference (CCI) and adjacent channel interference (ACI) on direct vehicle-to-vehicle broadcast communication. The objective is to maximize the number of vehicles that can communicate with the prescribed requirement on latency and reliability. The joint scheduling and power control problem is formulated as a mixed Boolean linear programming (MBLP) problem. A column generation method is proposed to reduce the computational complexity of the joint problem. From the joint problem, we formulate a scheduling-alone problem (given a power allocation) as a Boolean linear programming (BLP) problem and a power control-alone problem (given a schedule) as an MBLP problem. The scheduling problem is numerically sensitive due to the high dynamic range of channel values and adjacent channel interference ratio (ACIR) values. Therefore, a novel sensitivity reduction technique, which can compute a numerically stable optimal solution at the price of increased computational complexity, is proposed. Numerical results show that ACI, just as CCI, is a serious problem in direct vehicle-to-vehicle (V2V) communication due to near-far situations and hence should not be ignored, and its impact can be reduced by proper scheduling and power control.

ACI ratio (ACIR)

Vehicle-to-vehicle (V2V)

RRM

adjacent channel interference (ACI)

scheduling

power control

Författare

Anver Hisham Unnichiriyath Siddique

Chalmers, Elektroteknik, Kommunikation, Antenner och Optiska Nätverk

Di Yuan

Linköpings universitet

Erik Ström

Chalmers, Elektroteknik, Kommunikation, Antenner och Optiska Nätverk

Fredrik Brännström

Chalmers, Elektroteknik, Kommunikation, Antenner och Optiska Nätverk

IEEE Transactions on Intelligent Transportation Systems

1524-9050 (ISSN) 1558-0016 (eISSN)

Vol. 22 1 443-456 8976411

Fifth Generation Communication Automotive Research and innovation (5GCAR)

Europeiska kommissionen (EU) (EC/H2020/761510), 2017-06-01 -- 2019-05-31.

Ämneskategorier

Beräkningsmatematik

Kommunikationssystem

Reglerteknik

DOI

10.1109/TITS.2020.2968526

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Senast uppdaterat

2022-04-05