2025 / installation

Agentic Architecture explores how AI and data-driven strategies can support the built environment in addressing systemic global challenges. Developed under the direction of Prof. Alisa Andrasek, the...

Contributions
agent simulations
100%
voxel massing formulation
100%
intelligent spatial segmentation
100%
component aggregation
50%
distribution mapping
50%
diagramming (animation)
50%
// 1 quantum map (collage by Luyao Jiang)
// 2
// 3
// 4 agentic field
// 5 crystallization

AGENTIC FIELD

Agent-based simulations integrate magnetic-field analogies with classic flocking behaviors (cohesion, separation, and alignment) to generate directional flows and vortex-like dynamics reminiscent of storm systems. Each agent is driven by contextual site data, enabling autonomous decision-making while maintaining emergent collective coherence.

// 6 voxel view vectors
// 7 voxel to components
// 8 component view
// 9 view vectors cluster animation
// 10 face evaluation animation
// 11 component to window mapping animation

ALGORITHMIC ANALYSIS + SEGREGATION

The agent-trail-generated voxel cloud is discretized and analyzed for view, solar irradiance, and wind performance. Each voxel is then assigned a simulation-derived numerical score, which governs volumetric zoning and the allocation of components. Components are then aggregated into clusters. Each component was designed with a focus on its connectivity and aggregation behaviors. When assembled, these components generate the 'micro' tectonic texture.

// 12 plan (animated by Ziyan Li)
// 13 section (animated by Ziyan Li)

HUMAN VS NON-HUMAN

The tower's volume is stratified into human and non-human zones: the perimeter façades, which receive maximum daylight and offer optimal views, house habitable spaces, while the internal core, where light and outlook are limited is reserved for non-human activities.

// 14 ai workflow (lora trained by luyao jiang)
// 15 lora gallery (lora trained by luyao jiang)
// 16 venice biennale 2025 installation