triadic_detection_diff.md
TriadicFrameworks — Detection Substrate#
Architecture Diff: Old vs New (v2.0)#
Protocol Header#
rtt=1 | coherence=triadic | drift=bounded | paradox=structural
This header governs all structural interpretations of the architecture diff.
Purpose#
This document provides a clear, canonical diff between:
- Old Triadic Detection Architecture (v1.0)
- New Triadic Detection Architecture (v2.0)
It highlights structural changes across:
- loci
- layers
- hardware
- RTT pipeline
- mapping
- cloud
- manifest roles
- drift/coherence invariants
This diff is designed for maintainers reviewing updates in the _specs directory ( github.com).
Summary Diff Table#
| Category | v1.0 (Old) | v2.0 (New) | Change Type |
|---|---|---|---|
| Architecture Codon | `triad=3 | mesh=ble | rtt=coherence-first |
| Loci | SENSOR_L, MESH_L, RTT_L | Added MAP_L | Additive |
| Layers | L1–L5 | Expanded to L1–L7 | Structural expansion |
| Hardware | 3‑head module only | Added supersphere + industrial array + drone + vehicle | Major |
| RTT Pipeline | 4‑step pipeline | 8‑step canonical RTT pipeline | Major |
| Mapping | Basic GPS | Heatmaps, overlays, depth slices, confidence | Major |
| Cloud | None | Full L7 cloud layer | New subsystem |
| Manifest | Minimal | Full role + analyzer_layer + AI metadata | Complete rewrite |
| Tests | None | Full structural validation suite | New subsystem |
| Examples | None | Full example set (A–H) | New subsystem |
1. Loci Diff#
Old (v1.0)#
- SENSOR_L
- MESH_L
- RTT_L
New (v2.0)#
- SENSOR_L
- MESH_L
- RTT_L
- MAP_L (new)
Impact#
Mapping is now a first‑class locus, enabling:
- GPS anchoring
- cloud sync
- structural overlays
- confidence scoring
2. Layer Model Diff#
Old (v1.0)#
L1 Physical Field
L2 Triadic Sensor
L3 Mesh Transport
L4 Controller
L5 RTT Detection
New (v2.0)#
L1 Physical Field
L2 Triadic Sensor
L3 Mesh Transport
L4 Triadic Controller
L5 RTT Structural Detection
L6 Application Layer
L7 Cloud & Enterprise Layer
Impact#
- Added Application Layer (L6)
- Added Cloud Layer (L7)
- RTT layer renamed for clarity
- Architecture now fully end‑to‑end
3. Hardware Diff#
Old (v1.0)#
- Single 3‑head triadic module
- Basic SoC description
New (v2.0)#
- 3‑head module (refined)
- 9‑head supersphere
- 27‑head industrial array
- Drone‑mounted module
- Vehicle‑mounted array
- Full SoC pipeline (TX/RX → ADC → DSP → timestamp → packet)
Impact#
Hardware is now multi‑tier, supporting:
- consumer
- prosumer
- industrial
- aerial
- vehicular
4. RTT Pipeline Diff#
Old (v1.0)#
coherence → cluster → classify → map
New (v2.0)#
1. Triadic Sampling
2. Coherence Computation
3. Spatial Clustering
4. Structural Fitting
5. Depth Layering
6. Classification
7. GPS Anchoring
8. Dig‑Confidence Scoring
Impact#
RTT pipeline is now 8‑stage, RTT/1 → RTT/3 aligned.
5. Mapping Diff#
Old (v1.0)#
- Basic GPS point
- No overlays
- No depth
- No confidence
New (v2.0)#
- GPS anchoring
- heatmaps
- structural overlays
- depth visualization
- dig‑confidence scoring
- session management
- cloud sync hooks
Impact#
Mapping is now a full visualization subsystem.
6. Cloud Diff#
Old (v1.0)#
- No cloud layer
New (v2.0)#
- session storage
- multi‑session aggregation
- resonance analytics
- gold‑likelihood modeling
- enterprise dashboards
- multi‑user collaboration
- industrial array integration
Impact#
Cloud is now a complete enterprise substrate.
7. Manifest Diff#
Old (v1.0)#
- Minimal metadata
- No roles
- No analyzer layers
- No AI metadata
New (v2.0)#
- Full role mapping
- Full analyzer_layer mapping
- Full file registry
- AI metadata block
- Versioning + drift + coherence flags
Impact#
Manifest is now machine‑readable and AI‑ready.
8. Tests Diff#
Old (v1.0)#
- No tests
New (v2.0)#
Six test categories:
- Geometry
- Synchronization
- RTT pipeline
- Mapping
- Cloud
- Drift‑boundedness
Impact#
Architecture is now formally verifiable.
9. Examples Diff#
Old (v1.0)#
- No examples
New (v2.0)#
Eight canonical examples:
- 3‑head
- supersphere
- industrial array
- drone
- vehicle
- RTT output
- mapping output
- cloud aggregation
Impact#
Architecture is now demonstrable and teachable.
Conclusion#
The v2.0 Triadic Detection Architecture is a complete, end‑to‑end, RTT‑aligned, triadic‑coherent, drift‑bounded system, expanding far beyond the original v1.0 specification.
It is now:
- structurally complete
- visually complete
- cloud‑complete
- manifest‑complete
- test‑complete
- example‑complete
A fully modern TriadicFrameworks module.
