DocumentCode
3243046
Title
Multiple-Symbol Differential Detection Based on Combinatorial Geometry
Author
Pauli, V. ; Lampe, Lutz ; Schober, Robert ; Fukuda, Kenji
Author_Institution
Univ. of Erlangen-Nuremberg, Erlangen
fYear
2007
fDate
24-28 June 2007
Firstpage
827
Lastpage
832
Abstract
In this paper, the application of combinatorial geometry to noncoherent multiple-symbol differential detection (MSDD) is considered. The resulting algorithm is referred to as CG-MSDD. Analytical expressions for both the complexity and the error-rate performance of CG-MSDD are derived and it is shown that its complexity is polynomial in the length N of the MSDD observation window if the rank of the N times N channel autocorrelation matrix is fixed, but in fact exponential in N if standard fading models are considered. Compared to popular sphere-decoder based MSDD, CG-MSDD is superior (i) in low-signal-to-noise power ratio (SNR) slow-fading channels as its complexity is independent of the SNR, (ii) as its complexity is constant, i.e., independent of the particular channel and noise realization, and (iii) asymptotically, as its complexity exponent only scales linearly with the bandwidth of the fading process.
Keywords
computational complexity; computational geometry; fading channels; matrix algebra; channel autocorrelation matrix; combinatorial geometry; complexity performance; error-rate performance; fading channels; low-signal-to-noise power ratio; multiple-symbol differential detection; observation window; sphere-decoder; AWGN; Autocorrelation; Bandwidth; Character generation; Computational complexity; Fading; Geometry; Performance analysis; Polynomials; Signal to noise ratio;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 2007. ICC '07. IEEE International Conference on
Conference_Location
Glasgow
Print_ISBN
1-4244-0353-7
Type
conf
DOI
10.1109/ICC.2007.141
Filename
4288812
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