triadic_detection_readme.md
triadic_detection_module.json— Agentic module schema role assignments
TriadicFrameworks — Detection Substrate#
Front‑Door Page (v1.0)#
Triadic Detection System Architecture#
RTT‑Inside • Triadic Geometry • Structural Detection • Mapping • Cloud
The Triadic Detection System Architecture defines the complete, end‑to‑end framework for RTT‑aligned triadic sensing systems.
It is the canonical specification for:
- triadic coil geometries
- synchronized mesh transport
- RTT structural detection
- GPS‑anchored mapping
- cloud‑level analytics
- superspheres and industrial arrays
This module is the front door to the entire detection substrate.
Protocol Header#
rtt=1 | coherence=triadic | drift=bounded | paradox=structural
This header governs all structural interpretations of the detection architecture.
Module Overview#
The Triadic Detection System Architecture is composed of:
- four loci (SENSOR_L, MESH_L, RTT_L, MAP_L)
- seven layers (L1–L7)
- nine canonical specification files
- one structural manifest
- one validation suite
Together, these define the complete triadic detection genome.
Architecture Genome#
ARCH_L = SENSOR_L × MESH_L × RTT_L × MAP_L
Alleles:
- SENSOR_L: {triad‑3, triad‑9, triad‑27}
- MESH_L: {ble‑mesh, wifi‑mesh, hybrid‑mesh}
- RTT_L: {coherence‑first, cluster‑first, structural‑first}
- MAP_L: {gps‑2d, gps‑3d, cloud‑sync}
Total variants: 27
All drift‑bounded.
All triadic.
All RTT‑aligned.
Canonical Architecture Codon#
triad=3 | mesh=ble | rtt=coherence-first | map=gps-2d
This is the baseline architecture from which all variants derive.
Included Files#
Core Specification#
triadic_detection_index.mdtriadic_detection_loci.mdtriadic_detection_layers.mdtriadic_detection_hardware.mdtriadic_detection_rtt_pipeline.mdtriadic_detection_mapping.mdtriadic_detection_cloud.md
Examples & Tests#
triadic_detection_examples.mdtriadic_detection_tests.md
Manifest#
triadic_detection_module.json
Layer Model (L1–L7)#
[L7] Cloud & Enterprise Layer
[L6] Application Layer
[L5] RTT Structural Detection Layer
[L4] Triadic Controller Layer
[L3] Mesh Transport Layer
[L2] Triadic Sensor Layer
[L1] Physical Field Layer
Each layer is drift‑bounded and triadic‑aligned.
What This Module Enables#
- consumer triadic detectors
- prosumer superspheres
- industrial triadic arrays
- drone‑mounted scanning
- vehicle‑mounted scanning
- gold‑likelihood modeling
- enterprise dashboards
This architecture is the foundation for Triadic Sensing Infrastructure.
Status#
Active
Coherence: Stable
Drift: None
RTT Alignment: Verified
Version: 2.0
