Towards Optimal Learning of Chain Graphs

09/25/2011
by   Jose M. Peña, et al.
0

In this paper, we extend Meek's conjecture (Meek 1997) from directed and acyclic graphs to chain graphs, and prove that the extended conjecture is true. Specifically, we prove that if a chain graph H is an independence map of the independence model induced by another chain graph G, then (i) G can be transformed into H by a sequence of directed and undirected edge additions and feasible splits and mergings, and (ii) after each operation in the sequence H remains an independence map of the independence model induced by G. Our result has the same important consequence for learning chain graphs from data as the proof of Meek's conjecture in (Chickering 2002) had for learning Bayesian networks from data: It makes it possible to develop efficient and asymptotically correct learning algorithms under mild assumptions.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
12/10/2013

Every LWF and AMP chain graph originates from a set of causal models

This paper aims at justifying LWF and AMP chain graphs by showing that t...
research
10/03/2022

Combinatorial and algebraic perspectives on the marginal independence structure of Bayesian networks

We consider the problem of estimating the marginal independence structur...
research
04/24/2012

Learning AMP Chain Graphs under Faithfulness

This paper deals with chain graphs under the alternative Andersson-Madig...
research
01/10/2013

On characterizing Inclusion of Bayesian Networks

Every directed acyclic graph (DAG) over a finite non-empty set of variab...
research
06/15/2020

p-d-Separation – A Concept for Expressing Dependence/Independence Relations in Causal Networks

Spirtes, Glymour and Scheines formulated a Conjecture that a direct depe...
research
05/27/2020

Learning LWF Chain Graphs: an Order Independent Algorithm

LWF chain graphs combine directed acyclic graphs and undirected graphs. ...
research
01/10/2011

Finding Consensus Bayesian Network Structures

Suppose that multiple experts (or learning algorithms) provide us with a...

Please sign up or login with your details

Forgot password? Click here to reset