Title :
Novel Feedback Bit Allocation Methods for Multi-Cell Joint Processing Systems
Author :
Yu, Seungpyo ; Kong, Han-Bae ; Kim, Young-Tae ; Park, Seok-Hwan ; Lee, Inkyu
Author_Institution :
Sch. of Electr. Eng., Korea Univ., Seoul, South Korea
fDate :
9/1/2012 12:00:00 AM
Abstract :
In this letter, we study multiple-input single-output joint processing (JP) systems with limited feedback where base stations exchange both channel state information and their data via ideal backhaul links. In order to optimize the sum-rate performance of the JP system, we propose a new feedback bit allocation scheme which maximizes quantization accuracy in the presence of pathloss. The quantization accuracy is formulated by the expectation of the inner product between the actual channel vector and the quantized channel vector. First, we derive the quantization accuracy as a closed form, which compensates the phase difference of two channels. Then, the maximum quantization accuracy is achieved by searching possible bit combinations. Simulation results show that the sum rate of our proposed feedback bit allocation strategy is more than twice compared to the conventional equal bit allocation method in the three cell case.
Keywords :
cellular radio; feedback; radio links; vector quantisation; wireless channels; JP system; backhaul link; base station; channel state information; feedback bit allocation method; limited feedback; maximum quantization accuracy; multicell joint processing system; multiple-input single-output joint processing system; pathloss; phase difference; quantized channel vector; sum-rate performance; Accuracy; Antenna feeds; Array signal processing; Bit rate; Joints; Quantization; Vectors; Multicell; limited feedback; multiple antennas;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.062012.111169