A frontier proposal with a validation plan, not an implemented detector.
Intended capability
Research whether the field could support this proposed outcome: House-wide flock activity uniformity: healthy flocks move with spatially uniform low-band activity; disease, heat stress, or feed failure shows as zone-to-zone activity divergence and panic-wave bands hours before mortality counts move.
This describes the intended outcome. Readiness is research concept, evidence is class C, and a catalog mapping or recording is not proof of this outcome at a real site.
Solution blueprint
See the environment before installing it.
This exact kit is one of 191 first-class designs. It includes geometry, objects, nodes, wording, scenarios, installation, limitations, and catalog-bound readiness.
No rendered revision is available yet.
Bundled recording
A related Agriculture scene
This is one recorded vertical scenario. It is not separate validation of every capability in the catalog.
01 The physics
Thousands of small scatterers in aggregate produce a stable, spatially distributed motion-band signature per zone; sick zones go quiet (band energy collapse), panic waves sweep coherent 1-4Hz pulses across zones — both aggregate observables, no per-bird tracking.
02 Shared processing path
Per-zone edge Doppler summary -> uniformity index (cross-zone band-energy dispersion) + panic-wave detector (coherent cross-zone pulse) -> flock baseline manifold per house per age-day.
This is a capability design path. Components may be shared with other catalog entries; it is not presented as a unique algorithm.
03 Validation plan
Own-hardware in one commercial house across two grow-outs vs daily mortality/feed/water telemetry; report lead time of uniformity divergence vs recorded events. No public dataset — frontier build.
04 Commercial hypothesis
For the grower: 'The house tells you which corner is going wrong while there is still time to act.'