TY - GEN
T1 - Some Results on Distributed Source Simulation with no Communication
AU - Berg, Tomer
AU - Shayevitz, Ofer
AU - Kim, Young Han
AU - Wang, Lele
N1 - Publisher Copyright:
© 2019 IEEE.
PY - 2019/8
Y1 - 2019/8
N2 - We consider the problem of distributed source simulation with no communication, in which Alice and Bob observe sequences Un and Vn respectively, drawn from a joint distribution pUV⊗n, and wish to locally generate sequences Xn and Yn respectively with a joint distribution that is close (in KL divergence) to pXY⊗n. We provide a single-letter condition under which such a simulation is asymptotically possible with a vanishing KL divergence. Our condition is nontrivial only in the case where the Gàcs-Körner (GK) common information between U and V is nonzero, and we conjecture that only scalar Markov chains X-U-V-Y can be simulated otherwise. Motivated by this conjecture, we further examine the case where both pUV and pXY are doubly symmetric binary sources with parameters p, q ≤ 1/2 respectively. While it is trivial that in this case p ≤ q is both necessary and sufficient, we show that when p is close to q then any successful simulation is close to being scalar in the total variation sense.
AB - We consider the problem of distributed source simulation with no communication, in which Alice and Bob observe sequences Un and Vn respectively, drawn from a joint distribution pUV⊗n, and wish to locally generate sequences Xn and Yn respectively with a joint distribution that is close (in KL divergence) to pXY⊗n. We provide a single-letter condition under which such a simulation is asymptotically possible with a vanishing KL divergence. Our condition is nontrivial only in the case where the Gàcs-Körner (GK) common information between U and V is nonzero, and we conjecture that only scalar Markov chains X-U-V-Y can be simulated otherwise. Motivated by this conjecture, we further examine the case where both pUV and pXY are doubly symmetric binary sources with parameters p, q ≤ 1/2 respectively. While it is trivial that in this case p ≤ q is both necessary and sufficient, we show that when p is close to q then any successful simulation is close to being scalar in the total variation sense.
UR - https://www.scopus.com/pages/publications/85081097444
U2 - 10.1109/ITW44776.2019.8989131
DO - 10.1109/ITW44776.2019.8989131
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AN - SCOPUS:85081097444
T3 - 2019 IEEE Information Theory Workshop, ITW 2019
BT - 2019 IEEE Information Theory Workshop, ITW 2019
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2019 IEEE Information Theory Workshop, ITW 2019
Y2 - 25 August 2019 through 28 August 2019
ER -