DocumentCode
299807
Title
A new lattice polynomial perceptron and its applications to fading channel equalization and adjacent-channel interference suppression
Author
Xiang, Zeng-Jun ; Bi, Guang-Guo ; Schlegel, Christian B.
Author_Institution
INRS-Telecommun., Quebec Univ., Montreal, Que., Canada
Volume
1
fYear
1995
fDate
18-22 Jun 1995
Firstpage
478
Abstract
Introduces a new lattice polynomial perceptron (LPP) with a faster convergence rate. The adaptation of the parameters in each lattice stage can be carried out independently, which is very suitable for VLSI implementations. Applications of the LPP for frequency-selective fading channel equalization and adjacent-channel interference suppression in 16-level and 64-level quadrature amplitude modulation (QAM) receiver systems are considered. Computer simulations are used to evaluate and compare the performance of LPP with that of the polynomial perceptron (PP), fractionally spaced bilinear perceptron (FSBLP), fractionally spaced decision feedback multilayer perceptron (FSDFMLP), and the conventional decision feedback equalizer (DFE). The results show that in 16QAM system, the performance of LPP is better than that of PP and FSDFMLP. FSBLP can achieve almost the same performance as that of LPP. While in 64QAM system, the performance of LPP is clearly superior to that of the other structures
Keywords
adjacent channel interference; convergence of numerical methods; digital radio; equalisers; fading; interference suppression; land mobile radio; lattice theory; multipath channels; perceptrons; polynomials; quadrature amplitude modulation; radio receivers; radiofrequency interference; 16QAM; 64QAM; 900 MHz; LPP; QAM receiver systems; UHF; VLSI implementations; adjacent-channel interference suppression; convergence rate; fading channel equalization; lattice polynomial perceptron; parameter; performance; quadrature amplitude modulation; Application software; Convergence; Decision feedback equalizers; Frequency-selective fading channels; Interference suppression; Lattices; Multilayer perceptrons; Polynomials; Quadrature amplitude modulation; Very large scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 1995. ICC '95 Seattle, 'Gateway to Globalization', 1995 IEEE International Conference on
Conference_Location
Seattle, WA
Print_ISBN
0-7803-2486-2
Type
conf
DOI
10.1109/ICC.1995.525215
Filename
525215
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