Autonomous Modular Habitat with Integrated Environmental Systems and Resonant Structural Architecture

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1. Verfasser: Vo, Thi Linh
Format: Recurso digital
Sprache:Englisch
Veröffentlicht: Zenodo 2026
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author Vo, Thi Linh
author_facet Vo, Thi Linh
contents <p>This preprint presents a conceptual architecture for an autonomous modular habitat designed to operate with minimal external infrastructure. The proposed system integrates renewable energy harvesting, atmospheric water generation, environmental stabilization, and self-maintaining material surfaces.</p> <p>The habitat architecture is based on a modular hexagonal structure inspired by natural honeycomb geometries, enabling structural efficiency, scalability, and distributed environmental control. The system combines solar energy collection, autonomous environmental regulation, integrated water systems, and self-cleaning surface technologies.</p> <p>The concept aims to demonstrate a framework for self-sustaining living environments capable of supporting human habitation while reducing dependency on centralized infrastructure. This document provides a high-level conceptual overview while intentionally omitting detailed engineering specifications.</p> <p>Potential applications include off-grid living environments, experimental sustainable architecture, remote habitats, and resilient autonomous living systems.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19039813
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Autonomous Modular Habitat with Integrated Environmental Systems and Resonant Structural Architecture
Vo, Thi Linh
Habitat
Resonanz
Nano
Autarkie
Module
<p>This preprint presents a conceptual architecture for an autonomous modular habitat designed to operate with minimal external infrastructure. The proposed system integrates renewable energy harvesting, atmospheric water generation, environmental stabilization, and self-maintaining material surfaces.</p> <p>The habitat architecture is based on a modular hexagonal structure inspired by natural honeycomb geometries, enabling structural efficiency, scalability, and distributed environmental control. The system combines solar energy collection, autonomous environmental regulation, integrated water systems, and self-cleaning surface technologies.</p> <p>The concept aims to demonstrate a framework for self-sustaining living environments capable of supporting human habitation while reducing dependency on centralized infrastructure. This document provides a high-level conceptual overview while intentionally omitting detailed engineering specifications.</p> <p>Potential applications include off-grid living environments, experimental sustainable architecture, remote habitats, and resilient autonomous living systems.</p>
title Autonomous Modular Habitat with Integrated Environmental Systems and Resonant Structural Architecture
topic Habitat
Resonanz
Nano
Autarkie
Module
url https://doi.org/10.5281/zenodo.19039813