English

Power Allocation in the Energy Harvesting Full-Duplex Gaussian Relay Channels

Networking and Internet Architecture 2021-04-07 v1 Emerging Technologies Information Theory math.IT Optimization and Control

Abstract

In this paper, we propose a general model to study the full-duplex non-coherent decode-and-forward Gaussian relay channel with energy harvesting (EH) nodes, called NC-EH-RC\mathcal{RC}, in three cases: i)i) no energy transfer (ET), ii)ii) one-way ET from the source (S) to the relay (R), and iii)iii) two-way ET. We consider the problem of optimal power allocation in NC-EH-RC\mathcal{RC} in order to maximize the total transmitted bits from S to the destination in a given time duration. General stochastic energy arrivals at S and R with known EH times and values are assumed. In NC-EH-RC\mathcal{RC} with no ET, the complicated min-max optimization form along with its constraints make the problem intractable. It is shown that this problem can be transformed to a solvable convex form; however, convex optimization solution does not provide the structural properties of the optimal solution. Therefore, following an alternative perspective, we investigate conditions on harvesting process of S and R where we find optimal algorithmic solution. Further, we propose some suboptimal algorithms and provide some examples, in which the algorithms are optimal. Moreover, we find a class of problems for NC-EH-RC\mathcal{RC} with one-way ET from S to R, where the optimal algorithmic solution is devised. For NC-EH-RC\mathcal{RC} with two-way ET, we propose \emph{general} optimal algorithmic solution. Furthermore, the performance of the proposed algorithms are evaluated numerically and compared with optimal numerical convex optimization tools.

Keywords

Cite

@article{arxiv.1411.3716,
  title  = {Power Allocation in the Energy Harvesting Full-Duplex Gaussian Relay Channels},
  author = {Mahmood Mohassel Feghhi and Mahtab Mirmohseni and Aliazam Abbasfar},
  journal= {arXiv preprint arXiv:1411.3716},
  year   = {2021}
}

Comments

Accepted for publication in International Journal of Communication Systems (Special Issue on Energy Efficient Wireless Communication Networks with QoS), October 2014