Title :
Adaptive closed-loop power control with quantized feedback and loop filtering
Author :
Su, Hsuan-Jung ; Geraniotis, Evaggelos
Author_Institution :
Lucent Technol. Bell Labs, Holmdel, NJ, USA
fDate :
1/1/2002 12:00:00 AM
Abstract :
Power control is important in maintaining the communication link quality under fading and interference situations. In recent years, research on power control has been conducted toward reducing power consumption while maintaining reliable link quality. These previous works, however, did not try to optimize power control algorithms under practical constraints. In this paper, we first observe and provide some insights into the previous works on different aspects of power control schemes. These observations motivate us to propose a new power control scheme which has several novel features: it uses an adaptive optimal quantizer at the receiver for transmitting discrete feedback information and an adaptive quantization scaler/restorer followed by a loop filter at the transmitter. Optimal quantization minimizes the feedback information loss and the additional power control error caused by it, while the loop filter can be designed to achieve the lowest power control error. Optimization of the loop filter requires some computational power. Fortunately, filter self-design capability can be implemented. In that case, closed-loop power control can be seen as an instance of a general channel identification problem. Intuitive explanation, together with analysis and simulation results of the proposed scheme will be given
Keywords :
adaptive control; closed loop systems; cochannel interference; fading channels; feedback; filtering theory; interference suppression; mobile radio; power control; quantisation (signal); radio links; telecommunication control; adaptive closed-loop power control; adaptive optimal quantizer; adaptive quantization scaler/restorer; channel identification problem; cochannel interference; communication link quality; discrete feedback information; fading channel; interference; loop filter optimization; loop filtering; mobile radio systems; multiple access interference; power consumption reduction; quantized feedback; receiver; simulation results; transmitter; wireless communications; Adaptive control; Error correction; Fading; Feedback loop; Information filtering; Information filters; Maintenance; Power control; Programmable control; Quantization;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/7693.975447