Design of resilient communication tower with retractable antenna mast

Dexter M. Toyado
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Abstract

Effective communication infrastructure is crucial for disaster response and management, particularly in typhoon-prone regions like the province of Catanduanes, Philippines. This study aims to design a resilient communication tower with a retractable antenna mast to enhance the communication capabilities of the Municipal Disaster Risk Reduction and Management Office (MDRRMO) in the island of Catanduanes during typhoon and disaster. The study adopts a capstone project design method. It includes qualitative analysis with an extensive review of literature and guidelines related to resilient communication infrastructure, typhoon preparedness, and disaster response strategies specific to the island of Catanduanes. Factors such as wind loads, structural stability, and mechanisms for deploying the retractable antenna mast pole are considered during the design process. Advanced tools such as computer-aided design software and structural analysis and design software application simulations are employed to model and assess the tower's structural integrity under extreme weather conditions. The outcomes study includes a detailed design plan for a resilient communication tower with a retractable antenna mast pole, specifically tailored for the typhoon-prone environment in Catanduanes.
带可伸缩天线杆的弹性通信塔设计
有效的通信基础设施对于灾害响应和管理至关重要,尤其是在菲律宾卡坦端内斯省等台风多发地区。本研究旨在设计一座带有可伸缩天线杆的弹性通信塔,以提高卡坦端内斯岛市减灾与管理办公室(MDRRMO)在台风和灾害期间的通信能力。本研究采用了顶点项目设计方法。研究包括定性分析,并广泛查阅了与卡坦端内斯岛抗灾通信基础设施、台风防备和灾害应对策略相关的文献和指南。设计过程中考虑了风荷载、结构稳定性和可伸缩天线桅杆的部署机制等因素。计算机辅助设计软件、结构分析和设计软件应用模拟等先进工具被用于建模和评估塔在极端天气条件下的结构完整性。研究成果包括针对卡坦端内斯台风多发环境而专门设计的带有可伸缩天线桅杆的弹性通信塔的详细设计计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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