DRL-based Sum-Rate Maximization in D2D Communication Underlaid Uplink Cellular Networks

Citations

WEB OF SCIENCE

19
Citations

SCOPUS

23

초록

Device-to-device (D2D) communication affords the benefits of improved network spectral efficiency, throughput, energy efficiency, and delay performance. However, D2D communication underlaid cellular uplinks are degraded by interference between D2D user equipment (DUE) and cellular user equipment (CUE) that use the same frequency band. In this context, researchers have proposed the optimization of the transmit power of the devices to mitigate interference. This power allocation problem is generally modeled as a NP-hard combinatorial optimization problem with linear constraints; therefore, traditional optimization methods are ineffective in addressing the problem. In this paper, we apply a deep reinforcement learning (DRL) algorithm to optimize the transmit power for both DUEs and CUEs in the context of D2D communication underlaid uplink cellular networks, which can solve the optimization problem via optimal decision-making together with efficient deep network training. Our simulation results show that the proposed algorithm affords a near-global-optimum solution with lower computation complexity than exhaustive search, and outperforms the fixedpower, weighted minimum mean square error (WMMSE), gradient descent method, and Newton-Raphson approaches. IEEE

키워드

Cellular networks; computational complexity; D2D communication; Deep reinforcement learning; Device-to-device communication; Interference; Receivers; Resource management; sum-rate maximization; Training; Transmitters; Cellular radio systems; Combinatorial optimization; Decision making; Deep learning; Energy efficiency; Gradient methods; Mean square error; Mobile telecommunication systems; NP-hard; Reinforcement learning; Wireless networks; Combinatorial optimization problems; Computation complexity; Deviceto-device (D2D) communication; Gradient Descent method; Minimum mean square errors; Optimal decision making; Sum-rate maximizations; Uplink cellular networks; Optimization
제목
DRL-based Sum-Rate Maximization in D2D Communication Underlaid Uplink Cellular Networks
저자
Ron, D.; Lee, J.
DOI
10.1109/TVT.2021.3106398
발행일
2021-10
유형
Article
저널명
IEEE Transactions on Vehicular Technology
권
70
호
10
페이지
11121 ~ 11126