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活動分享網址 https://activity.ncku.edu.tw/index.php?c=apply&no=17546
活動名稱 三校(KAUST、KU 與 NCKU)學術交流研討會-第二場次:航太系統與控制

活動地點 自強校區 航太系 繼昌講堂
活動開始 2026/05/26 10:30
活動結束 2026/05/26 12:30
入場時間 2026/05/26 10:00
承辦人聯絡資訊 李約亨
承辦人電話 2345291
承辦人信箱 11306025@gs.ncku.edu.tw
線上講座相關網站 網站連結
報名開始 2026/05/15 09:00
報名結束 2026/05/22 17:00
主辦單位 工學院 、 化工系、航太系、工科系
主要語言別 English only
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參加限制 [編制內教職員]:全部
[非正式人員]:全部
[學生]:全部
[附屬單位]:附設醫院/附設高工,
共27種身分類別

通識教育講座領域:自然與工程科學

(1)主講者:Eng. Fatima AlHammadi

職稱:Research Assistant

服務單位:Department of Aerospace Engineering, Khalifa University

演講者學經歷:

Education:
M.S. (2025~present) Master of Science in Engineering Management, Abu Dhabi University, UAE.
B.S. (2017~2022) Bachelor of science in Aerospace Engineering, Khalifa University, UAE.
Experience:
(2024–Present) Research Assistant (CubeSat Propulsion Systems), Khalifa University Space
Technology & Innovation Lab, Abu Dhabi, UAE.
(2023–2024) Research Volunteer (Micro-Propulsion Systems), YahSat Space Lab, Abu Dhabi,
UAE.
Research Areas:
CubeSat Propulsion Systems, Green Monopropellants, Small Satellite Engineering, Space Systems
Design, Spacecraft Testing & Validation.

大綱:

Innovative Propulsion Solutions for Small Satellites: R&D at KUSTIL

ABSTRACT

Khalifa University Space Technology and Innovation Laboratory contribute to the development of space propulsion systems for small satellites, precisely CubeSats. KUSTIL’s research focuses on the advancement of green propulsion development, Resistojets, as well as Plasma Based propulsion systems to enhance both the efficiency and the sustainability of the CubeSat missions. The lab has effectively a thruster to be integrated into CubeSats along with an in-house built test rig for the purpose of enhancement and evaluation of the catalytic materials to improve the performance and provide environmental sustainability in the green propulsion area. KUSTIL is currently developing a 2U multidirectional Resistojet propulsion system with total of five degrees of freedom, deliberate to perform for propellants with high-density multiphase for precise and efficient attitude control designed for small satellites. The laboratory is actively exploring plasma-based propulsion systems for CubeSat precisely, by assessing its capability to deliver high-efficiency thrust for elongated space exploration missions. These combined initiatives are crucial for the advancement and development of space propulsion technologies fitted to the detailed requirements for small satellite applications, thus evolving the field of sustainable propulsion solutions as well as scalable within the aerospace sector, both locally and globally.