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  4. Breaking the Central Bias: Spatially Partitioned Experts for Coordinate-Based Neuroevolution

Breaking the Central Bias: Spatially Partitioned Experts for Coordinate-Based Neuroevolution

Author(s)
Claret, Romain  
Chaire de management de l'information  
Gygax, Arthur
O’Neill, Michael
Palma Mendes, Michael  
Chaire de statistique appliquée  
Cotofrei, Paul  
Chaire de management de l'information  
Felber, Pascal  
Conseil de l'Université  
Publisher
Springer Nature Switzerland
Date issued
October 9, 2026
In
Lecture Notes in Computer Science
Pattern Recognition. ICPR 2026 International Workshops
Vol
17114
From page
171
To page
185
Reviewed by peer
true
Subjects
Mixture-of-Experts Neuroevolution Spatial partitioning ES-HyperNEAT Indirect encoding
Abstract
Evolvable-Substrate HyperNEAT (ES-HyperNEAT), a bio-inspired indirect encoding that determines neuron placement and connection weights from spatial coordinates, exhibits a failure mode on MNIST as a diagnostic benchmark. Because input pixels map to a coordinate space centered at the origin, evolved networks converge on a small central cluster of input pixels, a spatial-concentration bias; prior work observed only 21% mean accuracy in this regime. Is this bias an optimization artifact or an architectural ceiling? Inspired by Mixture-of-Experts (MoE) principles, we partition the input into non-overlapping spatial segments, each assigned to a separately evolved specialist network. With 13 such experts, this design reaches 43% mean accuracy, a 106% relative improvement over the baseline. The architectural gain does not depend on data-driven aggregation: equal-weighted averaging, which uses no validation data,
already yields a 70% improvement; the gain comes from partitioning, not the weighting. Receptive-field analysis shows the mechanism: partitioning forces evolution to discover features across the entire image, expanding active pixel coverage from 4% to 79%. Absolute accuracy stays below gradient-trained baselines, but the relative gain points to central bias, not the evolutionary search. Two tools are designed to generalize beyond MNIST: a receptive-field diagnostic for silent input-coverage collapse, and a spatial-partitioning remedy that restores coverage.
Event name
ICPR 2026 International Workshop
Location
Lyon, France, 17-22 August, 2026
ISSN
0302-9743
1611-3349
Publication type
conference paper
Identifiers
https://libra.unine.ch/handle/20.500.14713/100610
DOI
10.1007/978-3-032-39388-3_13
ISBN
9783032393876
9783032393883
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