Broadcast Function Computation with Complementary Side Information
Abstract
We consider the function computation problem in a three node network with one encoder and two decoders. The encoder has access to two correlated sources and . The encoder encodes and into a message which is given to two decoders. Decoder 1 and decoder 2 have access to and respectively, and they want to compute two functions and respectively using the encoded message and their respective side information. We want to find the optimum (minimum) encoding rate under the zero error and -error (i.e. vanishing error) criteria. For the special case of this problem with and , we show that the -error optimum rate is also achievable with zero error. This result extends to a more general `complementary delivery index coding' problem with arbitrary number of messages and decoders. For other functions, we show that the cut-set bound is achievable under -error if and are binary, or if the functions are from a special class of `compatible' functions which includes the case .
Cite
@article{arxiv.1610.00867,
title = {Broadcast Function Computation with Complementary Side Information},
author = {Jithin Ravi and Bikash Kumar Dey},
journal= {arXiv preprint arXiv:1610.00867},
year = {2016}
}
Comments
Accepted to IEEE GLOBECOM NetCod 2016