← 論文一覧に戻る

Cable Driven Parallel Robots for Rapid Post Disaster Housing Construction in Displaced Communities

避難民コミュニティにおける災害後住宅の迅速建設のためのケーブル駆動パラレルロボット (AI 翻訳)

Kavitha Vipulananda

2026: Transforming Construction with Off-Site Methods and Technologies (TCOT)📚 査読済 / ジャーナル2026-08-12#その他対象セクター: construction
DOI: 10.19164/tcot.2026.1932
原典: https://journals.northumbria.ac.uk/index.php/tcot/article/download/1932/2046
📄 PDF

🤖 gxceed AI 要約

日本語

自然災害や強制移住により住宅を失う人々のために、ケーブル駆動パラレルロボット(CDPR)を用いた迅速な住宅建設を提案する。既存のCDPRシステムをレビューし、災害後の展開に適した特性を特定。気候・地形・文化に適応可能な住宅建設のための研究課題を提示する。

English

This paper proposes cable-driven parallel robots (CDPRs) for rapid post-disaster housing construction, addressing the limitations of conventional methods. It reviews existing CDPR systems and identifies their suitability for disaster contexts, proposing a research agenda for localization, end-effector design, and field durability.

Unofficial AI-generated summary based on the public title and abstract. Not an official translation.

📝 gxceed 編集解説 — Why this matters

日本のGX文脈において

日本の災害復興や仮設住宅建設において、ロボット技術の活用は関心が高いが、本論文はGX(温室効果ガス削減)やESG開示との直接的な関連は薄い。ただし、建設分野の省人化・効率化という観点で、日本の建設業界の労働力不足対策に示唆を与える可能性がある。

In the global GX context

While the paper focuses on disaster response, it touches on reducing carbon intensity of construction, which aligns with global sustainability goals. However, it lacks direct linkage to climate disclosure frameworks or transition finance, making it peripheral to mainstream GX discourse.

👥 読者別の含意

🔬研究者:Robotics researchers may find the CDPR application for construction novel, but GX researchers will find limited direct relevance.

🏢実務担当者:Humanitarian organizations could explore CDPR for shelter construction, but corporate sustainability teams will find little actionable insight.

🏛政策担当者:Disaster management agencies might consider robotic construction for rapid response, but climate policy implications are minimal.

📄 Abstract(原文)

Each year natural disasters and forced displacement leave tens of millions of people without adequate shelter. Conventional humanitarian construction responses are slow, carbon intensive and poorly matched to the terrain, climate and cultural context of affected communities. Robotic and automated approaches, including concrete 3D printing, serial robotic arms and prefabricated modular units, have each been proposed as faster alternatives, but each carries fundamental limitations in post-disaster deployment contexts. This paper proposes that cable-driven parallel robots (CDPRs), a class of robotic system already demonstrated in architectural and construction contexts, offer a solution to this problem that has not previously been examined. Through a structured review of existing CDPR systems developed for construction, including SPIDERobot, CU-Brick and the IPAnema family, the paper identifies the core properties that make CDPRs well suited to post-disaster deployment: large workspace from lightweight portable infrastructure, reconfigurability without heavy plant, adaptability to irregular terrain and the ability to anchor to existing structural elements. A cross analysis of humanitarian shelter requirements against CDPR capabilities reveals a strong alignment, alongside specific gaps in weatherproofing, localisation in environments where Global Positioning System (GPS) signals are degraded and rapid operator training that current systems do not address. The paper proposes a six-priority research agenda, covering localisation, end effector design, operator interfaces, field durability and material adaptability, and identifies that deployment requirements differ meaningfully across seismic, flood and conflict-driven displacement contexts. The research agenda draws on the demonstrated capabilities of existing systems rather than speculative design.

🔗 Provenance — このレコードを発見したソース

🔔 こうした論文の新着を逃したくない方は キーワードアラート に登録(無料・3キーワードまで)。

gxceed は公開メタデータに基づく研究支援データセットです。要約・翻訳・解説は AI 支援で生成されています。 最終的な解釈・検証は利用者が原典資料に基づいて行うことを前提とします。