A Smart Nano Radio Telescope: Integrating Meta-Surface and IoT Technology

طوّر مهاراتك التقنية
اكتشف Electrospace
شارك فكرتك
طوّر مشروعك
استكشف عالم الاتصالات اللاسلكية
كن جزءًا من مجتمع التقنية

فكرة المشروع

من الــــفـــكــــرة إلـــى تـــجـــربـــة اتصال

This project presents a smart nano radio telescope designed to enhance the capabilities of traditional telescopes in capturing weak radio signals by integrating nanotechnology, Meta-Surface technology, and Internet of Things (IoT) connectivity. The compact system is designed to transmit and receive data wirelessly, while allowing multiple telescope units to connect to main observatories through LoRa or Wi-Fi, creating a distributed observation network that improves signal detection accuracy and reduces operating costs.

01

البداية

كيف بدأت الفكرة؟

The idea started from the observation that traditional telescopes can face difficulties when dealing with weak or variable radio signals, which may limit their observation efficiency. Therefore, the team developed a compact nano radio telescope that combines nanomaterials, Meta-Surface technology, and IoT connectivity to improve signal quality and observation accuracy while enabling telescope units to be distributed across multiple locations instead of relying on a single large telescope.

02

الفكرة

ماذا يقدم المشروع؟

The project provides a compact system for improving the detection of weak cosmic radio signals through a flat nano antenna and a programmable Meta-Surface designed to enhance signal quality. IoT connectivity allows the telescope units to wirelessly transmit data to a central observatory through LoRa or Wi-Fi and synchronize their observations. The units can also be attached to drones or artificial satellites to create a distributed observation network in space, improving observation accuracy and coverage while reducing operating costs.

03

التجربة

من المفهوم إلى النموذج

The concept developed from studying how radio telescopes operate, reviewing existing literature, and consulting experts in radio astronomy, followed by defining a 10×10×70 cm unit size and creating a 3D model using SolidWorks. Prototype models were then developed to study the structure and internal layout, with IoT connectivity used to process signal data and AI algorithms applied to improve observation accuracy. MATLAB was also used for simulation to demonstrate the feasibility of the proposed design.

فريق المشروع

Rahaf Alowayed
Reema Alshammary
Leen Almutairi
Reham Siraj
Danah Bin Jumayah
Njood Aljarfan
Aseel Alburaidi
Jana Alshehri
Moustafa Nasralla
Sohaib Khattak

مشرف المشروع

معرض صور المشروع

جولة مصورة توثق مراحل التصنيع، الاختبارات المعملية، وتجارب التتبع الحي في الميدان.

مشاريع الاصدارات الاخرى

استكشف المشاريع والتجارب التي تشكل تجربة Electrospace 2026.