TY - GEN
T1 - Assisted common information
T2 - 2011 IEEE International Symposium on Information Theory Proceedings, ISIT 2011
AU - Prabhakaran, Vinod M.
AU - Prabhakaran, Manoj M.
PY - 2011
Y1 - 2011
N2 - We presented assisted common information as a generalization of Gcs-Krner (GK) common information at last year's ISIT. The motivation for our formulation was to improve upperbounds on the efficiency of protocols for secure two-party sampling (which is a form of secure multi-party computation). Our upperbound was based on a monotonicity property of a rate-region (called the assisted residual information region) associated with the assisted common information formulation. In this note we present further results. We explore the connection of assisted common information with the Gray-Wyner system.We show that the assisted residual information region and the Gray-Wyner region are connected by a simple relationship:the assisted residual information region is the increasing hull of the Gray-Wyner region under an affine map. Several known relationships between GK common information and Gray-Wyner system fall out as consequences of this. Quantities which arise in other source coding contexts acquire new interpretations. In previous work we showed that assisted common information can be used to derive upperbounds on the rate at which a pair of parties can securely sample correlated random variables, given correlated random variables from another distribution. Here we present an example where the bound derived using assisted common information is much better than previously known bounds, and in fact is tight. This example considers correlated random variables defined in terms of standard variants of oblivious transfer, and is interesting on its own as it answers a natural question about these cryptographic primitives.
AB - We presented assisted common information as a generalization of Gcs-Krner (GK) common information at last year's ISIT. The motivation for our formulation was to improve upperbounds on the efficiency of protocols for secure two-party sampling (which is a form of secure multi-party computation). Our upperbound was based on a monotonicity property of a rate-region (called the assisted residual information region) associated with the assisted common information formulation. In this note we present further results. We explore the connection of assisted common information with the Gray-Wyner system.We show that the assisted residual information region and the Gray-Wyner region are connected by a simple relationship:the assisted residual information region is the increasing hull of the Gray-Wyner region under an affine map. Several known relationships between GK common information and Gray-Wyner system fall out as consequences of this. Quantities which arise in other source coding contexts acquire new interpretations. In previous work we showed that assisted common information can be used to derive upperbounds on the rate at which a pair of parties can securely sample correlated random variables, given correlated random variables from another distribution. Here we present an example where the bound derived using assisted common information is much better than previously known bounds, and in fact is tight. This example considers correlated random variables defined in terms of standard variants of oblivious transfer, and is interesting on its own as it answers a natural question about these cryptographic primitives.
UR - https://www.scopus.com/pages/publications/80054795248
UR - https://www.scopus.com/pages/publications/80054795248#tab=citedBy
U2 - 10.1109/ISIT.2011.6034098
DO - 10.1109/ISIT.2011.6034098
M3 - Conference contribution
AN - SCOPUS:80054795248
SN - 9781457705953
T3 - IEEE International Symposium on Information Theory - Proceedings
SP - 2861
EP - 2865
BT - 2011 IEEE International Symposium on Information Theory Proceedings, ISIT 2011
Y2 - 31 July 2011 through 5 August 2011
ER -