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Showing posts with label Aviation. Show all posts
Showing posts with label Aviation. Show all posts

Monday, October 23, 2023

Surprised By Flying Taxi From #Boeing #Wisk Aero #Aviation #AeroArduino



In the ever-evolving landscape of urban transportation, the emergence of electric vertical takeoff and landing (eVTOL) aircraft has sparked a revolution. One company at the forefront of this aerial transformation is Wisk Aero, a pioneering aerospace manufacturer headquartered in Mountain View, California. In this blog post, we'll take a deep dive into the world of Wisk Aero, exploring their innovative technologies and the promising future they hold for urban mobility.

The Genesis of Wisk Aero

Wisk Aero, established in 2019 as a joint venture between Boeing and Kitty Hawk, sets its sights on developing self-flying eVTOL aircraft designed for urban air mobility. With the vision of creating efficient, sustainable, and safe aerial transportation, the company's flagship model, the Wisk Cora, represents a leap forward in autonomous flight.




The Wisk Cora: Redefining Urban Mobility

At the heart of Wisk Aero's innovation lies the Wisk Cora, a sleek and futuristic two-passenger eVTOL aircraft. Fully electric and self-piloted, the Cora boasts an experimental airworthiness certificate from both the New Zealand Civil Aviation Authority (CAA) and the United States Federal Aviation Administration (FAA). This certification underscores the company's commitment to safety and regulatory compliance, paving the way for the future certification of autonomous passenger-carrying vehicles.

Partnerships and Collaborations

Wisk Aero's journey towards revolutionizing urban mobility is marked by strategic collaborations. In 2022, Boeing's substantial $450 million investment in Wisk Aero underscored their shared commitment to advancing autonomous flight technology. This significant infusion of capital propelled Wisk Aero's research and development efforts, bringing them closer to their goal of creating fully autonomous flying taxis.

Additionally, Wisk Aero has actively participated in initiatives such as NASA's Advanced Air Mobility Project, aiming to test and integrate new vehicles into existing airspace safely. These collaborations emphasize Wisk Aero's dedication to working alongside industry leaders and regulatory bodies, shaping the future of urban air mobility together.






Glimpse into the Future

With each passing day, Wisk Aero brings us closer to a future where urban transportation is no longer bound by traffic-choked roads. Imagine a world where commuters can seamlessly navigate cities, bypassing congestion and arriving at their destinations in a fraction of the time. Wisk Aero's advancements in autonomous flight technology pave the way for a transportation revolution that is not only efficient but also environmentally friendly.

As Wisk Aero continues to push boundaries and redefine what's possible in the realm of urban mobility, the sky's the limit. Their dedication to innovation, safety, and sustainability ensures that the future of transportation is not just a dream but a tangible reality, hovering on the horizon, waiting to usher us into a new era of mobility.

Wisk Aero's remarkable journey showcases the power of collaboration, innovation, and a shared vision for a better, more connected world. As they soar to new heights, we eagerly anticipate the day when Wisk Aero's autonomous eVTOL aircraft fill the skies, transforming the way we move and inspiring generations to come.

Monday, October 2, 2023

How to Build a Simple GPWS Using Arduino: A Step-by-Step Guide

Introduction


Welcome to a new project of the AeroArduino. In this project, we'll explore how to create a straightforward Ground Proximity Warning System (GPWS) simulator using Arduino technology. Unlike traditional GPWS systems, we'll be utilizing an ultrasonic sensor to detect obstacles and terrains, providing simple warnings through a buzzer.



Understanding GPWS and Its Components

GPWS Explained: Brief overview of how traditional GPWS works using data from radar altimeters and ADIRU.

Innovative Approach: Introducing the use of ultrasonic sensors to detect obstacles and terrains.


Components and Circuit Setup

Components Used:

Arduino Uno

Ultrasonic Sensor

Seven-Segment Display

Piezo Buzzer

Vibration Motor

Small Speaker

Circuit Connections:

Detailed explanation of how each component is connected to the Arduino Uno.

Explanation of pins used for power, ground, and signal connections.

Coding the GPWS Simulator

Using Code Blocks: Explanation of the code development process using Code Blocks based on MIT Code Blocks.

Code Explanation:

Breakdown of the code blocks used for setting up the LED display, configuring the ultrasonic sensor, and implementing conditional statements.

Detailed explanation of how the system determines valid detection ranges and triggers warnings.

Simulation and Testing on Tinkercad Simulation:

Step-by-step demonstration of the simulation setup in Tinkercad.

Highlighting scenarios where the system successfully detects obstacles within the valid range and triggers warnings.

Explore the Simulation: A link to the Tinkercad model for further exploration and testing.

Stay Updated: Encouragement to like, share, and subscribe for more exciting episodes from Aero Arduino.

Final Thoughts

Creating a GPWS simulator using Arduino technology opens up new possibilities in aviation education and training. By utilizing readily available components and innovative programming, enthusiasts and learners can delve into the world of aviation technology with hands-on experience. Happy tinkering!


Wednesday, December 16, 2015

Ram air turbine توربينة توليد الطاقة من الهواء للطائرات

الأربعاء 5 من ربيع الأول 1437 هـ                      16 ديسمبر 2015 م


بسم الله و الحمد لله و الصلاة و السلام على رسول الله سيدنا محمد صلى الله عليه و سلم

 توربينة توليد الطاقة من الهواء للطائرات

 عبارة عن توربينة هواء فى الطائرات تعمل على توليد الطاقة من مسار الهواء فى 

حالات الطوارئ القصوى فقط

 

 

https://en.wikipedia.org/wiki/Ram_air_turbine 


 

 

 

فى الطائرة إيرباص

A320

تعمل هذه التوربينة إدارة مضخة للسائل الهيدرولكى فى الطائرة و بالتالى توليد الطاقة 

الكهربية و بذلك تسهم فى توليد الطاقة الهيدروليكية و الطاقة الكهربية








و فى الطائرة إمبراير 

E170

فإن هذه التوربينة بها مولد كهرباء فى التربينة مباشرة يعمل على توليد الطاقة الكهربية 

و الطاقة المتولدة تعمل على تشغيل مضخات السائل الهيدروليكى التى تعمل بالكهرباء


و بالتالى تعمل أيضاً على توليد الطاقة الهيدروليكية و الطاقة الكهربية