Title :
Codebook Design and Selection for Multi-Cell Cooperative Transmission Limited Feedback Systems
Author :
Hou, Xueying ; Yang, Chenyang
Author_Institution :
Sch. of Electron. & Inf. Eng., Beihang Univ., Beijing, China
Abstract :
Coherent multi-cell cooperative transmission, also referred to as coordinated multi-point transmission (CoMP), is a promising way to provide high spectral efficiency for universal frequency reuse cellular systems. To report the required channel information to the transmitter in frequency division duplexing systems, limited feedback techniques are often applied. Considering that the large scale fading gains of channels from multiple base stations (BSs) to one mobile station are different and the number of cooperative BSs may be dynamic, it is not flexible nor compatible to employ a large codebook for directly quantizing the CoMP channel. In this paper, per-cell codebook for separately quantizing local and cross channels are studied. We first optimize the bit allocation among per-cell codebooks, aiming at minimizing the average quantization error of the aggregated CoMP channel. A closed-form codebook size allocation method is proposed, which only depends on the large scale fading gains of per-cell channels. Considering that the optimal per-cell codeword selection for CoMP channel is of high complexity, we propose a serial codeword selection method, whose complexity is quite low but the performance approaches that of the optimal codeword selection. Simulation results validate our analysis and demonstrate an evident performance gain of our methods.
Keywords :
cellular radio; channel coding; communication complexity; cooperative communication; fading channels; feedback; frequency division multiplexing; quantisation (signal); radio transmitters; spectral analysis; CoMP channel; bit allocation; channel fading gain; codebook design; cooperative BS; coordinated multipoint transmission; feedback technique; frequency division duplexing system; mobile station; multicell cooperative transmission limited feedback system; multiple base station; per cell codebook; quantization error; serial codeword selection method; spectral efficiency; universal frequency reuse cellular system; Array signal processing; Bit rate; Complexity theory; Copper; Fading; Joints; Quantization;
Conference_Titel :
Vehicular Technology Conference (VTC Spring), 2011 IEEE 73rd
Conference_Location :
Yokohama
Print_ISBN :
978-1-4244-8332-7
DOI :
10.1109/VETECS.2011.5956335