Conventional designs on two-way relay networks mainly focus on the spectral efficiency (SE) rather than energy efficiency (EE). In this paper, we consider a system where two source nodes communicate with each other via an amplify-and-forward (AF) relay node and study the power allocation schemes to maximize EE while ensuring a certain data rate. We propose an optimal energy-efficient power allocation algorithm based on iterative search technique. In addition, a closed-form suboptimal solution is derived with reduced complexity and negligible performance degradation. Numerical results show that the proposed schemes can achieve considerable EE improvement compared with conventional designs
Algorithms for joint subcarrier pairing and power allocation are investigated in order to maximize t...
In this study, the authors examine the power allocation (PA) in a two-way relay system, where the re...
In this paper, we formulate and study the optimum power allocation problem in an amplify and forward...
This paper studies the energy efficient transmission and the power allocation problem for multiple t...
In this letter, we propose joint relay selection and power allocation schemes for maximization of th...
In this paper, we propose a joint power allocation, time switching (TS) factor and relay selection s...
In this paper, we study end-to-end energy efficiency of an orthogonal frequency-division multiplexin...
Two power allocation schemes are presented to maximize SE and EE respectively.An iterative algorithm...
Energy efficiency (EE) is becoming an important system design criterion to ensure that the next gene...
International audienceIn this paper, we propose minimum power allocation strategies for repetition-b...
This paper investigates the energy-efficiency enhancement of a variable-gain dual-hop amplify-and-fo...
We consider a multi-pair amplify-and-forward relay network where the energy-constrained relays adopt...
In this paper, we investigate the power allocation (PA) schemes in a two-way relay system, where the...
Abstract We consider a multi-pair amplify-and-forward relay network where the energy-constrained re...
© 2017 University of Western Australia. In this paper, we study a two-hop amplify-and-forward (AF) m...
Algorithms for joint subcarrier pairing and power allocation are investigated in order to maximize t...
In this study, the authors examine the power allocation (PA) in a two-way relay system, where the re...
In this paper, we formulate and study the optimum power allocation problem in an amplify and forward...
This paper studies the energy efficient transmission and the power allocation problem for multiple t...
In this letter, we propose joint relay selection and power allocation schemes for maximization of th...
In this paper, we propose a joint power allocation, time switching (TS) factor and relay selection s...
In this paper, we study end-to-end energy efficiency of an orthogonal frequency-division multiplexin...
Two power allocation schemes are presented to maximize SE and EE respectively.An iterative algorithm...
Energy efficiency (EE) is becoming an important system design criterion to ensure that the next gene...
International audienceIn this paper, we propose minimum power allocation strategies for repetition-b...
This paper investigates the energy-efficiency enhancement of a variable-gain dual-hop amplify-and-fo...
We consider a multi-pair amplify-and-forward relay network where the energy-constrained relays adopt...
In this paper, we investigate the power allocation (PA) schemes in a two-way relay system, where the...
Abstract We consider a multi-pair amplify-and-forward relay network where the energy-constrained re...
© 2017 University of Western Australia. In this paper, we study a two-hop amplify-and-forward (AF) m...
Algorithms for joint subcarrier pairing and power allocation are investigated in order to maximize t...
In this study, the authors examine the power allocation (PA) in a two-way relay system, where the re...
In this paper, we formulate and study the optimum power allocation problem in an amplify and forward...