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Non-adaptive probabilistic group testing with noisy measurements: Near-optimal bounds with efficient algorithms. Venkatesh Saligrama Boston University. Chun Lam Chan , Pak Hou Che and Sidharth Jaggi The Chinese University of Hong Kong. n-d. d.
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Non-adaptive probabilistic group testing with noisy measurements: Near-optimal bounds with efficient algorithms VenkateshSaligrama Boston University Chun Lam Chan, Pak HouChe and SidharthJaggi The Chinese University of Hong Kong
n-d d Non-adaptive probabilistic group testing with noisy measurements: Near-optimal bounds with efficient algorithms VenkateshSaligrama Boston University Chun Lam Chan, Pak HouChe and SidharthJaggi The Chinese University of Hong Kong
n-d d Non-adaptive probabilistic group testing with noisy measurements: Near-optimal bounds with efficient algorithms VenkateshSaligrama Boston University Chun Lam Chan, Pak HouChe and SidharthJaggi The Chinese University of Hong Kong
Literature • No error: [DR82], [DRR89] • With small error ϵ: • Upper bound: [AS09], [SJ10]
Literature • No error: [DR82], [DRR89] • With small error ϵ: • Upper bound: [AS09], [SJ10] • Lower bound: [Folklore]
Non-adaptive probabilistic group testing with noisy measurements: Near-optimal bounds with efficient algorithms
Algorithms motivated by Compressive Sensing • Combinatorial Basis Pursuit (CBP) • Combinatorial Orthogonal Matching Pursuit (COMP)
n-d Noiseless CBP d
n-d Noiseless CBP d Discard
Noiseless CBP n-d • Sample g times to form a group d
Noiseless CBP n-d • Sample g times to form a group d
Noiseless CBP n-d • Sample g times to form a group d
Noiseless CBP n-d • Sample g times to form a group d
Noiseless CBP n-d • Sample g times to form a group • Total non-defective items drawn: d
Noiseless CBP n-d • Sample g times to form a group • Total non-defective items drawn: • Coupon collection: d
Noiseless CBP n-d • Sample g times to form a group • Total non-defective items drawn: • Coupon collection: • Conclusion: d
n-d Noisy CBP d
n-d Noisy CBP d
n-d Noisy CBP d
n-d Noisy CBP d
Summary • With small error ,
End Thanks
Noisy COMP If then =1 else =0