AraY2 v1.0 — Orbital-Calculation Architecture for Phase-Deviation Measurement in Solar System Bodies

  • Luis from Greeneq Spa
  • From Chile
  • Responsive
  • Innovative Products and Technologies

Summary of the technology

AraY2 v1.0 is an orbital-calculation and measurement architecture designed to identify and classify phase-deviation states in selected Solar System orbital systems.

Details of the Technology Offer

AraY2 v1.0 is an orbital-calculation and measurement architecture designed to identify and classify phase-deviation states in selected Solar System orbital systems.

Unlike conventional trajectory-prediction outputs focused primarily on position, AraY2 provides a consolidated measurement layer for orbital phase behavior, transition content, energetic signature, asymmetry retention, control-state response and modular displacement classification.

A public non-enabling 96-hour post-event verification has been published on Zenodo. The disclosed result confirms active-band and neutral/control classification across three anonymized Solar System orbital systems, without exposing the underlying calculation method.

The technology may be relevant for precision orbital navigation, mission-risk reduction, trajectory-correction planning, low-thrust maneuver planning, energetic-signature auditing and controlled aerospace software development.

The technology is available for controlled technical discussion, evaluation, collaboration or licensing conversations under appropriate confidentiality terms.

Luis Pablo Araya S. - lparaya@greeneq.cl . www.greeneq.cl

Intellectual property status

Other forms of protection

Current development status

Commercially available technologies

Desired business relationship

Technology selling

Patent licensing

Attached documents

Related Keywords

  • Industrial Technologies
  • Aerospace
  • Flight Dynamics and GNSS
  • Space System Control
  • Space System Software
  • Navigation

About Greeneq Spa

focuses on transforming complex physical behavior into structured engineering outputs with potential applications in precision orbital navigation, mission-risk reduction, trajectory-correction planning, energetic-signature auditing and controlled aerospace software development.

Luis Pablo Araya

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