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Propagation Modeling Inside the International Space Station for the Automatic Monitoring of Astronauts by Means of Epidermal UHF-RFID Sensors

ieeexplore.ieee.org

The monitoring of Astronaut's health is one of the most impacting aspects of long-duration Space missions, especially for the high involvement required to the crew members in the daily acquisition of body parameters. Automatic procedures based on wireless systems would grant undeniable benefits, especially if lightweight and battery-less devices could be adopted. The possibility and the reliability of a communication link inside the International Space Station (ISS) is here investigated when the UHF-RFID epidermal technology is adopted. A Ray Tracing asymptotic method is hence proposed to evaluate the coverage area and the read probability inside the Harmony module. The analysis is referred to up to two astronauts simultaneously present in the module and to the presence of multiple reader antennas, in case purely passive epidermal tags are adopted. Simulations revealed that it is possible to identify some simple operating conditions that allow to obtain a reliable RFID link, also thanks to the advantageous propagation characteristics of the module itself.

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國際太空站內用於透過表皮UHF-RFID感測器自動監測太空人的傳播模型

ieeexplore.ieee.org
17 天前

AI 生成摘要

本研究探討在國際太空站內,利用UHF-RFID表皮技術自動監測太空人健康的可行性與可靠性。提出一種射線追蹤方法,用於評估Harmony模組內的覆蓋範圍和讀取機率,考量最多兩名太空人及多個讀取器天線的存在,並揭示了實現可靠RFID連結的條件。

國際太空站內部的傳播建模,用於通過表皮UHF-RFID感測器自動監測太空人

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