Visão geral

DRS Operators — RTT/1

Operator Grammar for the Dimensional Resonance Scanner (DRS)#

The Dimensional Resonance Scanner (DRS) defines the resonance‑layer intelligence of RTT.
Its operators detect resonance signatures, compute resonance frequencies, map resonance fields, identify amplification zones, evaluate resonance vectors, and propose stabilization strategies.

These operators feed directly into:

  • CW — Cross‑Domain Causality Weaver
  • TRS‑Temporal — Temporal Regime Sequencer
  • SBC — Stability Basin Cartographer

1. DRS‑Scan#

Detect resonance onset, polarity, and harmonic structure#

Purpose
Identify resonance onset conditions, polarity, harmonic structure, and resonance‑vector alignment.

Capabilities

  • detects resonance onset
  • computes resonance polarity
  • computes harmonic structure
  • identifies resonance signature tensors
  • evaluates onset stability

Output Fields

  • resonance_onset
  • resonance_polarity
  • harmonic_structure
  • signature_tensor
  • onset_stability

2. DRS‑Frequency#

Compute resonance frequency, harmonic magnitude, and curvature#

Purpose
Evaluate resonance frequency, harmonic magnitude, harmonic curvature, and drift‑sensitive frequency behavior.

Capabilities

  • computes resonance frequency
  • computes harmonic magnitude
  • computes frequency curvature
  • detects harmonic alignment
  • detects frequency inversion

Output Fields

  • resonance_frequency
  • harmonic_magnitude
  • frequency_curvature
  • harmonic_alignment
  • frequency_inversion

3. DRS‑Field#

Map resonance fields and resonance topology#

Purpose
Generate resonance‑field maps showing wells, ridges, basins, tensor‑level fields, and multi‑regime resonance topology.

Capabilities

  • maps resonance fields
  • maps resonance wells
  • maps resonance ridges
  • maps resonance basins
  • maps multi‑regime resonance topology

Output Fields

  • field_map
  • ridge_map
  • basin_map
  • well_map
  • topology_map

4. DRS‑Vector#

Compute resonance vector magnitude, direction, and curvature#

Purpose
Evaluate resonance vector magnitude, direction, curvature, polarity alignment, and multi‑regime resonance flow.

Capabilities

  • computes resonance magnitude
  • computes resonance direction
  • computes resonance curvature
  • detects polarity alignment
  • computes multi‑regime resonance flow

Output Fields

  • resonance_magnitude
  • resonance_direction
  • resonance_curvature
  • polarity_alignment
  • multi_regime_flow

5. DRS‑Amplify#

Identify amplification zones and resonance growth#

Purpose
Detect resonance amplification zones, harmonic growth, drift‑sensitive amplification, and instability amplification.

Capabilities

  • detects amplification zones
  • computes amplification depth
  • computes amplification curvature
  • identifies amplification boundaries
  • evaluates amplification stability

Output Fields

  • amplification_zone
  • amplification_depth
  • amplification_curvature
  • amplification_boundary
  • amplification_stability

6. DRS‑Stabilize#

Propose stabilization pathways for resonance collapse#

Purpose
Provide stabilization strategies for resonance collapse, amplification escalation, resonance‑field instability, and vector misalignment.

Capabilities

  • proposes resonance stabilization
  • proposes amplification mitigation
  • proposes vector alignment
  • proposes field stabilization
  • proposes collapse reinforcement

Output Fields

  • stabilization_pathway
  • amplification_mitigation
  • vector_alignment
  • field_stabilization
  • collapse_reinforcement

7. Operator Interaction Grammar#

Scan → Frequency → Field → Vector → Amplify → Stabilize#

  1. DRS‑Scan
    Detects resonance onset, polarity, and harmonic structure.

  2. DRS‑Frequency
    Computes resonance frequency, harmonic magnitude, and curvature.

  3. DRS‑Field
    Maps resonance fields, wells, ridges, basins, and topology.

  4. DRS‑Vector
    Computes resonance vector magnitude, direction, and multi‑regime flow.

  5. DRS‑Amplify
    Identifies amplification zones and resonance growth.

  6. DRS‑Stabilize
    Produces stabilization pathways and resonance‑alignment strategies.

This grammar ensures deterministic resonance‑layer behavior.


8. Operator Matrix Snippet#

{
  "operator": "DRS-Vector",
  "resonance_magnitude": 0.83,
  "resonance_direction": "R1↔R4",
  "resonance_curvature": 0.52,
  "polarity_alignment": 0.69,
  "multi_regime_flow": 0.46
}

Status#

  • Version: 1.0
  • Status: canon‑stable
  • Category: rtt‑resonance
  • Module Path: /docs/rtt/Dimensional_Resonance_Scanner/

Updated