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Altagamoa Al Khames, Main centre of town, end of 90th Street
New Cairo
Egypt
Faculty of Engineering & Technology
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Amira Khaled Hasan Mohamed Elkodama

Basic information

Name : Amira Khaled Hasan Mohamed Elkodama
Title: Assistant Lecturer
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Education

Certificate Major University Year
Masters 2023
Bachelor Mechanical Engineering 2018

Researches /Publications

Control Methods for Horizontal Axis Wind Turbines (HAWT): State-of-the-Art Review

Amira Khaled Hasan Mohamed Elkodama

04/09/2023

https://www.mdpi.com/1996-1073/16/17/6394

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Low-Cost, Low-Weight Test Rig Design for a Laboratory-Scale Twin Rotor Wind Turbine

Amira Khaled Hasan Mohamed Elkodama

30/11/2022

https://digitalcommons.aaru.edu.jo/fej/vol3/iss2/3/

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Solar Chimney Power Plants: A Mini Review

Amira Khaled Hasan Mohamed Elkodama

30/11/2022

https://digitalcommons.aaru.edu.jo/fej/vol3/iss2/4/

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Modelling and Simulation of an Asynchronous Generator for a 5 MW Wind Turbine

Amira Khaled Hasan Mohamed Elkodama

A. Abdellatif; S. Shaaban

30/09/2022

https://www.praiseworthyprize.org/jsm/index.php?journal=ireaco&page=article&op=view&path%5B%5D=27120

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Aerodynamic Performance of a 100 W Single-Rotor Wind Turbine in Comparison with Multi-Rotor Wind Turbines of the Same Capacity

Amira Khaled Hasan Mohamed Elkodama

30/09/2022

https://www.praiseworthyprize.org/jsm/index.php?journal=iree&page=article&op=view&path%5B%5D=26830

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Aerodynamic Performance and Structural Design of 5 MW Multi Rotor System (MRS) Wind Turbines

Amira Khaled Hasan Mohamed Elkodama

A. Abdellatif; S. Shaaban

24/09/2022

https://www.ijrer.org/ijrer/index.php/ijrer/article/view/13343

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A New Design Identification and Control Based on GA Optimization for An Autonomous Wheelchair

Amira Khaled Hasan Mohamed Elkodama

21/09/2022

https://www.mdpi.com/2218-6581/11/5/101

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Twin-Rotor Wind Turbine Power Performance Compared to a Single-Rotor of the Same Tip-to-Tip Spacing

Amira Khaled Hasan Mohamed Elkodama

01/05/2022

https://www.scopus.com/record/display.uri?eid=2-s2.0-85144670411&origin=resultslist&sort=plf-f

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Design, Manufacture, and Test a ROS Operated Smart Obstacle Avoidance Wheelchair

Amira Khaled Hasan Mohamed Elkodama

Samer Ayoub, Clark Potrous

01/07/2020

In this paper, the designing, manufacturing, and testing of a smart obstacle avoidance wheelchair will be discussed. The wheelchair is designed to be light weighted, maintainable, able to maneuver easily across obstacles along the user path with minimum commands from the user. The design payload for this smart wheelchair is 120 kg. In order to minimize the weight, the chassis is made of steel hollow pipes. The user can drive the wheelchair either using a joystick or voice commands. Ultra-Sonic sensors are used to detect obstacles along the wheelchair path. The motion and steering action of the wheelchair are controlled using the Robot Operating System (ROS). The testing of the wheelchair has shown that it is capable of avoiding obstacles and can easily reach the destination with minimum commands from the user.  Index Terms-smart wheelchair, obstacle avoidance, ROS, voice recognition, joystick

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