DocumentCode
2523623
Title
Blind sequence detection of vector channels based on a novel clustering algorithm
Author
Daneshgaran, F. ; Mondin, M. ; Roden, M.S.
Author_Institution
Dept. of Electr. & Comput. Eng., California State Univ., Los Angeles, CA, USA
Volume
3
fYear
1996
fDate
21-24 Oct 1996
Firstpage
964
Abstract
Space diversity reception is known to be an excellent means of combating the detrimental effects of the mobile radio channel in data transmission. This paper addresses the problem of data detection for digital communications employing space diversity reception, where the system model contains a single input multiple output vector channel (this model may be further generalized to multiple-input multiple-output, MIMO vector channels). The received vector corrupted by AWGN is modeled as the noisy output of a finite state vector Markov source. Subsequently, a redundant discretely valued basis of minimal dimensionality is identified for the input space. Estimation of the output labels associated with these basis allows labeling of the state transition diagram. For this purpose, certain identifiable characteristics of the output sequences of the Markov source are used to classify its states and generate an initial codebook for a vector quantizer used to restore the output levels. Finally, an iterative implicit sequence detection algorithm is proposed for data detection
Keywords
Gaussian noise; Markov processes; data communication; digital radio; estimation theory; iterative methods; land mobile radio; signal detection; telecommunication channels; vector quantisation; white noise; AWGN; MIMO vector channels; blind sequence detection; clustering algorithm; codebook; data detection; data transmission; digital communications; finite state vector Markov source; iterative implicit sequence detection algorithm; mobile radio channel; noisy output; output label estimation; output levels; output sequences; redundant discretely valued basis; single input multiple output vector channel; space diversity reception; state transition diagram; vector quantizer; AWGN; Additive white noise; Data communication; Digital communication; Diversity reception; Gaussian noise; Labeling; Land mobile radio; MIMO; State estimation;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 1996. MILCOM '96, Conference Proceedings, IEEE
Conference_Location
McLean, VA
Print_ISBN
0-7803-3682-8
Type
conf
DOI
10.1109/MILCOM.1996.571425
Filename
571425
Link To Document