Title :
Robust Power Allocation for Multicarrier Amplify-and-Forward Relaying Systems
Author :
Rao, Akhila ; Nisar, Muhammad Danish ; Alouini, Mohamed-Slim
Author_Institution :
Comput., Electr., & Math. Eng. & Sci. Div., King Abdullah Univ. of Sci. & Technol., Thuwal, Saudi Arabia
Abstract :
It has been shown that adaptive power allocation can provide a substantial performance gain in wireless communication systems when perfect channel state information (CSI) is available at the transmitter. In the case when only imperfect CSI is available, the performance may significantly degrade, and robust power-allocation schemes are developed to save this kind of degradation. In this paper, we investigate power-allocation strategies for multicarrier systems, in which each subcarrier employs single amplify-and-forward (AF) relaying scheme. Optimal power-allocation schemes are proposed by maximizing the approximated channel capacity under an aggregate power constraint (APC) and a separate power constraint (SPC). By comparison with the uniform power-allocation (UPA) scheme and the best channel power-allocation (BCPA) scheme, we confirm that both the APC and SPC schemes achieve a performance gain over benchmark schemes. In addition, the impact of channel uncertainty is also considered in this paper by modeling the uncertainty regions as bounded sets, and results show that the uncertainty can degrade the worst case performance significantly.
Keywords :
amplify and forward communication; channel allocation; channel capacity; relay networks (telecommunication); AF relaying scheme; APC; BCPA scheme; SPC; UPA scheme; aggregate power constraint; approximated channel capacity maximization; best channel power-allocation scheme; bounded sets; channel uncertainty; imperfect CSI; multicarrier amplify-and-forward relaying systems; perfect channel state information; robust power-allocation schemes; separate power constraint; uniform power-allocation scheme; wireless communication systems; Channel capacity; Relays; Resource management; Robustness; Signal to noise ratio; Transmitters; Uncertainty; Multicarrier system; robust power allocation;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2013.2252212