A Human-Centric Lunar Time Zone Framework (LTZ/ULTZ) for Coordinated Lunar Operations

This preprint proposes a human-centric lunar operational time framework built around a Universal Lunar Time Zone (ULTZ) and 24 canonical longitude-based Lunar Time Zones (LTZ). The framework is intentionally geometric and independent of solar illumination. It separates the underlying continuous SI-second reference from a scaled 24-division lunar operational display, allowing machine-level timing precision to coexist with human-readable local lunar time. The paper defines the mathematical mapping from a continuous reference timescale to ULTZ and from selenographic longitude to canonical LTZ identifiers. It also specifies antimeridian handling, zone naming, leap-second continuity policy, conformance rules, and an Adaptive LTZ (ALTZ) layer for future base-specific operational conventions. Additional extensions include a Lunar Time Core (LTC) for lunar-resident timing autonomy, a Lunar Illumination Index (LII) as separate environmental metadata, and a governance model for future multi-stakeholder standardization. A staged validation programme is proposed covering software verification, human-factors testing, networked rover/base testbeds, and mission-integration studies. The framework is positioned as an operational and civil-style representation layer that complements, rather than replaces, precision timing standards, relativistic corrections, spacecraft clock systems, or future internationally adopted lunar reference-time architectures.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-09
DOI
https://doi.org/10.5281/zenodo.22672027
Primary Topic
GNSS positioning and interference
Type
preprint
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preprint

A Human-Centric Lunar Time Zone Framework (LTZ/ULTZ) for Coordinated Lunar Operations

Sivashankar Karthikeyan M.
Zenodo (CERN European Organization for Nuclear Research)
GNSS positioning and interference
preprint

A Human-Centric Lunar Time Zone Framework (LTZ/ULTZ) for Coordinated Lunar Operations

Sivashankar Karthikeyan M.
preprint en

Abstract

This preprint proposes a human-centric lunar operational time framework built around a Universal Lunar Time Zone (ULTZ) and 24 canonical longitude-based Lunar Time Zones (LTZ). The framework is intentionally geometric and independent of solar illumination. It separates the underlying continuous SI-second reference from a scaled 24-division lunar operational display, allowing machine-level timing precision to coexist with human-readable local lunar time. The paper defines the mathematical mapping from a continuous reference timescale to ULTZ and from selenographic longitude to canonical LTZ identifiers. It also specifies antimeridian handling, zone naming, leap-second continuity policy, conformance rules, and an Adaptive LTZ (ALTZ) layer for future base-specific operational conventions. Additional extensions include a Lunar Time Core (LTC) for lunar-resident timing autonomy, a Lunar Illumination Index (LII) as separate environmental metadata, and a governance model for future multi-stakeholder standardization. A staged validation programme is proposed covering software verification, human-factors testing, networked rover/base testbeds, and mission-integration studies. The framework is positioned as an operational and civil-style representation layer that complements, rather than replaces, precision timing standards, relativistic corrections, spacecraft clock systems, or future internationally adopted lunar reference-time architectures.

Zenodo (CERN European Organization for Nuclear Research)
Institute on Taxation and Economic Policy (US)
GNSS positioning and interference
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A Human-Centric Lunar Time Zone Framework (LTZ/ULTZ) for Coordinated Lunar Operations — Sivashankar Karthikeyan M. · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS