Dimensional Resonance Scanner (DRS) — RTT/1
Resonance‑Intelligence Engine for TriadicFrameworks#
DRS identifies resonance signatures, resonance vectors, resonance fields, resonance amplification zones, resonance wells, resonance ridges, and multi‑regime resonance gradients — the resonance precursors to regime transitions, causal modulation, temporal sequencing, coherence shifts, drift envelopes, and paradox intensification.
1. Canonical Role#
The Dimensional Resonance Scanner defines the resonance‑layer topology by:
- detecting resonance signatures
- computing resonance frequencies
- mapping resonance fields
- identifying resonance amplification zones
- evaluating resonance curvature
- identifying resonance wells and ridges
- supporting temporal engines
- anchoring causality engines
- feeding structural‑layer engines
DRS is the highest analytical layer of RTT/1.
2. RTT Flags#
| Property | Value |
|---|---|
| RTT Level | 1 |
| Coherence | declared |
| Drift | bounded |
| Paradox | structural |
These flags define the engine’s operational grammar.
3. Resonance Tensor Types#
DRS identifies several canonical resonance tensors:
3.1 Resonance Signature Tensor#
Detects resonance onset, polarity, harmonic structure, and resonance‑vector alignment.
3.2 Resonance Frequency Tensor#
Computes resonance frequency, harmonic magnitude, and resonance‑frequency curvature.
3.3 Resonance Field Tensor#
Maps resonance fields, resonance wells, resonance ridges, and resonance topology.
3.4 Resonance Amplification Tensor#
Identifies amplification zones, resonance growth, and instability amplification.
3.5 Multi‑Regime Resonance Tensor#
Resonance interactions across R1–R4.
3.6 Drift‑Sensitive Resonance Tensor#
Resonance influenced by drift curvature or drift amplification.
4. Core Operators#
| Operator | Description |
|---|---|
| DRS‑Scan | Scans dimensional resonance signatures |
| DRS‑Frequency | Computes resonance frequency and harmonic structure |
| DRS‑Field | Maps resonance fields and resonance topology |
| DRS‑Vector | Computes resonance vector magnitude and direction |
| DRS‑Amplify | Detects resonance amplification zones |
| DRS‑Stabilize | Suggests stabilization pathways for resonance collapse |
These operators form the canonical DRS grammar.
5. Analyzer Layer#
DRS operates in the resonance layer, with sub‑layers:
- resonance‑scan
- frequency‑analysis
- resonance‑field‑mapping
- amplification‑detection
- structural‑resonance‑evaluation
This layer feeds directly into temporal, causality, and stability engines.
6. Resonance Matrix#
DRS produces a resonance matrix, typically stored in:
resonance_matrix.json
Matrix fields include:
resonance_typeregimeresonance_magnituderesonance_directionresonance_curvatureamplification_zoneresonance_fieldenvelope_boundary
This matrix is consumed by temporal, causality, stability, and structural engines.
7. Canonical Workflow#
Step 1 — Scan#
Detect resonance signatures, resonance onset, polarity, and harmonic structure.
Step 2 — Frequency#
Compute resonance frequency, harmonic magnitude, and resonance‑frequency curvature.
Step 3 — Field#
Map resonance fields, wells, ridges, basins, and resonance topology.
Step 4 — Vector#
Compute resonance vector magnitude, direction, and multi‑regime resonance flow.
Step 5 — Amplify#
Identify amplification zones, resonance growth, and instability amplification.
Step 6 — Stabilize#
Propose stabilization pathways for resonance collapse.
Step 7 — Export#
Write results to the resonance matrix and operator outputs.
8. AI‑Ready Design#
The Dimensional Resonance Scanner is fully AI‑ready:
- deterministic operator grammar
- resonance‑layer analyzer structure
- stable RTT flags
- canonical file layout
- zero‑drift reasoning constraints
- structural paradox handling
- bounded drift envelope
- declared coherence tensor
AI systems use DRS to:
- scan dimensional resonance
- compute resonance frequencies
- generate resonance field maps
- classify resonance amplification
- stabilize resonance envelopes
- support higher‑order RTT engines
9. Position in the RTT Stack#
Regime Interlock Mapper (RIM)
↓
Triadic Regime Synthesizer (TRS)
↓
Paradox Gradient Analyzer (PGA)
↓
Coherence Tensor Engine (CTE)
↓
Drift Sentinel (DS)
↓
Structural Faultline Detector (SFD)
↓
Stability Basin Cartographer (SBC)
↓
Temporal Regime Sequencer (TRS‑Temporal)
↓
Cross‑Domain Causality Weaver (CW)
↓
Dimensional Resonance Scanner (DRS)
DRS is the resonance‑intelligence layer, the highest analytical tier in RTT/1.
10. Status#
- Version: 1.0
- Status: canon‑stable
- Category: rtt‑resonance
- Module Path:
/docs/rtt/Dimensional_Resonance_Scanner/
