Automatic taxonomy generation: Issues and possibilities
Raghu Krishnapuram, Krishna Kummamuru
IFSA 2003
Complexity distortion theory (CDT) is a mathematical framework providing a unifying perspective on media representation. The key component of this theory is the substitution of the decoder in Shannon's classical communication model with a universal Turing machine. Using this model, the mathematical framework for examining the efficiency of coding schemes is the algorithmic or Kolmogorov complexity. CDT extends this framework to include distortion by defining the complexity distortion function. We show that despite their different natures, CDT and rate distortion theory (RDT) predict asymptotically the same results, under stationary and ergodic assumptions. This closes the circle of representation models, from probabilistic models of information proposed by Shannon in information and rate distortion theories, to deterministic algorithmic models, proposed by Kolmogorov in Kolomogorov complexity theory and its extension to lossy source coding, CDT.
Raghu Krishnapuram, Krishna Kummamuru
IFSA 2003
Ehud Altman, Kenneth R. Brown, et al.
PRX Quantum
Daniel M. Bikel, Vittorio Castelli
ACL 2008
Kento Tsubouchi, Yosuke Mitsuhashi, et al.
npj Quantum Information