New node-oriented weighted four-cycle statistics for bipartite ERGMs are defined, implemented, and shown in simulation to avoid phase transitions exhibited by existing alternating two-path terms.
Overcoming near-degeneracy in the autologistic actor attribute model
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abstract
The autologistic actor attribute model, or ALAAM, is the social influence counterpart of the better-known exponential-family random graph model (ERGM) for social selection. Extensive experience with ERGMs has shown that the problem of near-degeneracy which often occurs with simple models can be overcome by using "geometrically weighted" or "alternating" statistics. In the much more limited empirical applications of ALAAMs to date, the problem of near-degeneracy, although theoretically expected, appears to have been less of an issue. In this work I present a comprehensive survey of ALAAM applications, showing that this model has to date only been used with relatively small networks, in which near-degeneracy does not appear to be a problem. I show near-degeneracy does occur in simple ALAAM models of larger empirical networks, define some geometrically weighted ALAAM statistics analogous to those for ERGM, and demonstrate that models with these statistics do not suffer from near-degeneracy and hence can be estimated where they could not be with the simple statistics.
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Improving exponential-family random graph models for bipartite networks
New node-oriented weighted four-cycle statistics for bipartite ERGMs are defined, implemented, and shown in simulation to avoid phase transitions exhibited by existing alternating two-path terms.