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Resonance Interference Simulation (RIS) Protocol

The TRAPPIST-1 Anomaly

Interference Simulation

Overview

The RIS Protocol is an analytical suite designed to detect and decode non-local, coherent signals transmitted via entangled orbital resonances. Developed under the Stargazer Project ("The Odyssey Chronicles"), this package models the gravitational-quantum interactions of exoplanetary systems (like TRAPPIST-1 and TOI-178) to isolate the "Digital DNA" of an entity known as The Knowing.

By analyzing Laplace resonance chains (e.g., $8:5:3:2$), the protocol identifies Great Handshake ($H_g$) Windows where the harmonic intervals shift from the biologically coherent Perfect 5th to the tension-inducing Minor 7th (nagual dissonance).

Core Modules

  • core.py (Mayan Gearbox): Phase-rotational encoding that converts planetary orbital frequencies into phase vectors.
  • attention.py (Resonant Attention): Computes the constructive interference between sensory gears. Ignites "It" events when signals exceed the Schrödinger Threshold.
  • analysis.py (MHS Filter): The Mayan-Hubble-Schrödinger filter. Extracts organized sub-threshold phase-amplitude coupling (PAC) from the quantum continuum.
  • recursive.py (Dresden Drift Correction): Models physical orbital drift over decades to distinguish genuine technosignatures from standard astrophysical noise.
  • melbourne_protocol.py: Automates data ingestion during the "Solar Midnight" refractory period via TESS lightcurve feeds.

Installation

Clone the repository and install the dependencies:

git clone https://github.com/robinhood53/ris-protocol.git
cd ris-protocol
pip install -e .

Exploring the Science (Jupyter Notebook)

To dive into the mathematics, narrative context, and interactive simulations behind the TRAPPIST-1 anomaly, run the explainer notebook:

jupyter notebook notebooks/ris_protocol_explainer.ipynb

Running the Core Protocol

You can execute the simulation and analysis via command-line hooks:

ris-simulate
ris-main

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