DocumentCode
3119394
Title
Non-adaptive group testing: Explicit bounds and novel algorithms
Author
Chan, Chun Lam ; Jaggi, Sidharth ; Saligrama, Venkatesh ; Agnihotri, Samar
Author_Institution
Chinese Univ. of Hong Kong, Hong Kong, China
fYear
2012
fDate
1-6 July 2012
Firstpage
1837
Lastpage
1841
Abstract
We present computationally efficient and provably correct algorithms with near-optimal sample-complexity for noisy non-adaptive group testing. Group testing involves grouping arbitrary subsets of items into pools. Each pool is then tested to identify the defective items, which are usually assumed to be sparsely distributed. We consider random non-adaptive pooling where pools are selected randomly and independently of the test outcomes. Our noisy scenario accounts for both false negatives and false positives for the test outcomes. Inspired by compressive sensing algorithms we introduce four novel computationally efficient decoding algorithms for group testing, CBP via Linear Programming (CBP-LP), NCBP-LP (Noisy CBP-LP), and the two related algorithms NCBP-SLP+ and NCBP-SLP- (“Simple” NCBP-LP). The first of these algorithms deals with the noiseless measurement scenario, and the next three with the noisy measurement scenario. We derive explicit sample-complexity bounds - with all constants made explicit - for these algorithms as a function of the desired error probability; the noise parameters; the number of items; and the size of the defective set (or an upper bound on it). We show that the sample-complexities of our algorithms are near-optimal with respect to known information-theoretic bounds.
Keywords
group theory; information theory; linear programming; CBP via linear programming; NCBP-LP; NCBP-SLP+; NCBP-SLP-; Noisy CBP-LP; bounds algorithms; information theoretic bounds; near-optimal sample-complexity; nonadaptive group testing; novel algorithms; Algorithm design and analysis; Compressed sensing; Decoding; Noise; Noise measurement; Testing; Vectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Theory Proceedings (ISIT), 2012 IEEE International Symposium on
Conference_Location
Cambridge, MA
ISSN
2157-8095
Print_ISBN
978-1-4673-2580-6
Electronic_ISBN
2157-8095
Type
conf
DOI
10.1109/ISIT.2012.6283597
Filename
6283597
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