Title :
Optimal Power Allocation for Poisson Channels With Time-Varying Background Light
Author :
Ain-ul-Aisha ; Lifeng Lai ; Yingbin Liang
Author_Institution :
Dept. of Electr. & Comput. Eng., Worcester Polytech. Inst., Worcester, MA, USA
Abstract :
In this paper, we study Poisson fading channels with time-varying background light. Different from most of the existing work on fading Poisson channel that focus on the case with time-varying channel gain, our model is motivated by indoor optical wireless communication systems, in which the noise level is affected by the strength of the background light. We study both the single-input single-output and the multiple-input and multiple-output channels. For each channel, we consider scenarios with and without delay constraints. For the case without a delay constraint, we characterize the optimal power allocation scheme that maximizes the ergodic capacity. For the case with a strict delay constraint, we characterize the optimal power allocation scheme that minimizes the outage probability. We also provide several numerical examples to demonstrate the analytic results.
Keywords :
MIMO communication; fading channels; free-space optical communication; telecommunication power management; time-varying channels; Poisson fading channel; delay constraint; ergodic capacity; indoor optical wireless communication system; multiple-input and multiple-output channel; optimal power allocation scheme; single-input single-output channel; time-varying background light; time-varying channel gain; Delays; Fading; Noise level; Optimized production technology; Receivers; Resource management; Transmitters; Ergodic capacity; Outage probability; Poisson channels; Time-varying background light; outage probability; time-varying background light;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2015.2478473