DocumentCode :
647089
Title :
Joint channel estimation and pre-equalization for monobit transmission system
Author :
Pengfei Li ; Zhiyong Wang ; Huarui Yin
Author_Institution :
Dept. of Electron. Eng. & Inf. Sci., Univ. of Sci. & Technol. of China, Hefei, China
fYear :
2013
fDate :
12-14 Aug. 2013
Firstpage :
303
Lastpage :
308
Abstract :
High date rate is one of the important targets in future communication systems, which requires large bandwidth. However, the multibit analog-to-digital converter (ADC) with such a high rate and large bandwidth will have a large power consumption and high implementation complexity. Therefore, monobit receivers have been proposed. In this paper, we concentrate on the channel estimation and equalization for monobit transmission system, which is not investigated up to now. To our surprise, the channel state information (CSI) can be estimated accurately in the condition of one bit quantization, with the proposed greedy pursuit algorithm and iterative method. The minimum mean square error (MMSE) pre-equalizer is then applied to suppress the effect of inter symbol interference (ISI) of the multipath channel. The bit error rate (BER) performance of the proposed algorithm is presented and compared with that of full CSI acknowledge. With the pre-equalizer, the ISI effect is canceled almost completely and “error floor” is eliminated as well. The BER performance can be boosted significantly.
Keywords :
channel estimation; equalisers; error statistics; greedy algorithms; intersymbol interference; iterative methods; least mean squares methods; multipath channels; quantisation (signal); radio receivers; ADC; BER performance; CSI; ISI effect; MMSE pre-equalizer; bit error rate; channel pre-equalization; channel state information; communication systems; error floor; greedy pursuit algorithm; high date rate; high implementation complexity; intersymbol interference; iterative method; joint channel estimation; minimum mean square error; monobit receivers; monobit transmission system; multibit analog-to-digital converter; multipath channel; one bit quantization; power consumption; Bit error rate; Channel estimation; Equalizers; Estimation error; Receivers; Signal processing algorithms; Signal to noise ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications in China (ICCC), 2013 IEEE/CIC International Conference on
Conference_Location :
Xi´an
Type :
conf
DOI :
10.1109/ICCChina.2013.6671133
Filename :
6671133
Link To Document :
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