Topology Search
The simulator moves through a space of possible graphs, comparing structures rather than assuming a fixed ideal form.
EvolutionLab is an experimental simulator for studying how graph structures evolve under utility, mutation, decay, and adaptive selection. It turns network formation into a laboratory for topology, clustering, efficiency, and emergent organisation.
Rather than simulating biology directly, it explores evolutionary behaviour in graph space, revealing which motifs survive, which collapse, and which repeatedly reappear as stable high-utility forms.
EvolutionLab explores adaptive structure in graph space. It asks how networks behave when links decay, mutations occur, and the system continually selects topologies that better satisfy its utility function.
The simulator moves through a space of possible graphs, comparing structures rather than assuming a fixed ideal form.
Clustering, path efficiency, density, and connectivity emerge from repeated updates instead of being prescribed in advance.
Some motifs recur because they perform well under the objective, acting like attractors in topology space.
EvolutionLab treats graphs as evolving entities. Nodes, edges, clustering, and component structure are measured over time, while a utility function rewards efficient and coherent topologies under changing constraints.
The simulation can be tuned to favour denser graphs, sparser exploration, stronger decay, or more aggressive mutation.
EvolutionLab is the structural layer of the Blue Whale platform. It complements molecular and agent simulations by showing how adaptive selection operates over network topology rather than physical position or direct symbolic behaviour.
EvolutionLab makes topology selection measurable. It reveals how network forms emerge, break, recover, and scale, turning graph evolution into something you can inspect as a repeatable experimental process.
Launch EvolutionLab, sweep parameters, and compare how utility shapes clustering, path length, density, and recurring network motifs.