CILLITEC UAV-DRONE

CILLITEC UAV-DRONE

mercoledì 6 agosto 2014

Cool Pixhawk-based VTOL aircraft - DIY Drones



Cool Pixhawk-based VTOL Aircraft





 


Excellent project from the University of Lueven, using Pixhawk in a VTOL design:

Meet VertiKUL, a student-designed prototype at the cutting edge of delivery drone technology
Students build drone for transporting packages
Unmanned aircraft may one day be used to deliver packages to your back patio, important documents to your lawyer or even vital organs to hospital for transplantation. Although the legal framework for ‘delivery drones’ is not yet in place, the technology – as three students of engineering science at KU Leuven show – nearly is.

Master’s students Cyriel Notteboom, Menno Hochstenbach and Maarten Verbandt were given an unusual assignment for their master’s thesis: build a fully functioning drone. A year of intensive work later, VertiKUL made its maiden flight. The unmanned aircraft can pick up a package and deliver it to a destination up to 30 kilometres away.





While VertiKUL is not the first delivery drone around, it does include some notable improvements compared to its older competitors.

“The first drones were designed like small helicopters. This allowed for exceptional precision but limited range and speed due to high energy needs,” says master’s student of engineering science and project member Cyriel Notteboom. “In our prototype, we combined the high speed of an airplane with the take-off and landing capacities of a helicopter.”

The drone’s four propellers provide the necessary carrying capacity during take-off and landing. To transition from vertical to horizontal motion, the drone rotates its nose 90° forward. In-air stability is ensured by the propellers, which adjust independently as needed. The wings increase energy efficiency during forward propulsion. The limited number of moving parts makes for a robust and dependable design.

The drone sets out for its destination with a charged battery and a 1-kilo package. With the help of GPS coordinates, its flies to its drop-off point – as far as 30 kilometres away. Once it has arrived at its location, it makes a careful precision landing.

Maarten: “We designed the landing system so that the drone can land very carefully and precisely. All of this happens automatically on a round landing platform. The platform is lit with LEDs to allow for nighttime landings.”

So how long before the university delivers diplomas using VertiKUL? Advisor and doctoral researcher Bart Theys: “It’s hard to say because there is still work to be done. For instance, we still need to teach the drone to adapt to changing weather conditions. In testing, we noticed that a strong wind can really play tricks on us. An automated landing in high winds is no easy task. That is the next challenge.”

“At present, delivery drones are not allowed for commercial use. Companies like Amazon are of course very interested in the technology, but there is currently no legal framework for the use of airspace. A good deal of legislation will have to be in place before your pizza can automatically delivered to your back patio. At the moment, we are focusing on the technical challenges. Thanks to the efforts of Cyriel, Menno and Maarten, we have made real progress on that front. They should be proud to call themselves Masters of Engineering.” 






FONTE:Cool Pixhawk-based VTOL aircraft - DIY Drones

martedì 29 luglio 2014

Take off & land anywhere: Russia unveils hybrid amphibious drone vehicle

Take off & land anywhere: Russia unveils hybrid amphibious drone vehicle

Chirok amphibious UAV

A drone hybridized with an amphibious hovercraft has been presented at the Innoprom-2014 technology exhibition in Russia’s Yekaterinburg. This unique UAV doesn’t need an airfield to launch, so the only alternative is a helicopter.

Russia’s Rostech state corporation presented the first-ever drone that can land on any terrain, whether hummocky land, loose snow, sand, water, or swampland – any relatively flat surface will do.

The aircraft dubbed Chirok (Teal) is both an unmanned aerial and amphibious vehicle; it was developed by Rotech’s branch, Integrated Instrument-making Corporation (IIC).

“There is only one alternative to this aircraft [Chirok] – a helicopter,” Aleksey Smirnov, the head of the unmanned aerial vehicles department at Radio-Technical Institute, told the OTV channel.

The 1:5 Chirok prototype presented at the exhibition has been specifically made to test its aero performance in a wind tunnel.

In 2015, the full-scale Chirok aircraft will start flight tests. It will have a wingspan of 10 meters and have a maximum takeoff mass of approximately 700 kilograms, of which 300kg would be its effective payload.

Photo from rostec.ru
With 6,000 meters of altitude ceiling, the UAV is expected to travel up to 2,500 kilometers on a single fuelling. Information about the Chirok’s propulsion is classified.

The ‘aircraft-hovercraft’ is made exclusively of composite materials, while the fabric of its air cushion was developed in Russia and is patented by the Rostech Corporation. The air cushion is fully retractable in flight mode.

Photo from rostec.ru
Though the drone will most likely be used for reconnaissance and wild fire monitoring missions, delivery of necessities to distant oil rigs etc., its construction also enables carrying assault military appliances.

The Chirok could be equipped with high precision weapons, such as small-size guided missiles. Unlike most existing UAVs, the Chirok has enough inner space to fit the weapons internally, so that under-wing missiles won’t interfere with aerodynamics and landing. Because the aircraft is of moderate size and made of composites, it also has excellent stealth characteristics.

It is expected that at Moscow-hosted MAKS-2015 air show UAV Chirok will be presented as an operable prototype. Production of the aircraft could be started as early as 2016.

Photo from rostec.ru


FONTE:Take off & land anywhere: Russia unveils hybrid amphibious drone vehicle | sUAS News

lunedì 28 luglio 2014

seL4 Secure Micro kernel





seL4 Secure Micro kernel











"A nippy microkernel mathematically proven to be bug free*, and used to protect drones from hacking, will be released as open source tomorrow."



Has anyone heard about or seen this? How applicable is this to the Pixhawk, Pi or BeagleBone flight controller efforts? The best bit is that it seems to assure that all user mode code execution is isolated from the Kernel in such a way as to prevent crashing the kernel. I don't think this actually prevents bad FC code but it sounds like it could be a step in the right direction surely.



Without reading too much into this I did note that in the video they seem to say that the software "detects" malicious groundstations by monitoring for those that attempt to authenticate with the wrong password too many times. They also said that the GCS link was encrypted. I think what they actually mean is that their software overlays encryption to MAV connections and the FC detects attempts to communicate over unencrypted links. I'd hate for this to be another WEP style weak cipher that encrypts with a shared key or worse still some kind of authenticated SSL style link using a password based challenge response in each conversation



More details here




fonte:seL4 Secure Micro kernel - DIY Drones

mercoledì 23 luglio 2014

DroneLogbook on iPad

iPad version of DroneLogbook is available today.

https://itunes.apple.com/gb/app/drone-logbook/id896271911?mt=8&...

You can now manage all your data : flights, drones, equipments and maintenance, offline on your iPad and sync easily with the server to backup and review data on the website (http://www.drone-logbook.com).

Have great flights!

DroneLogBook team.



fonte:DroneLogbook on iPad - DIY Drones

ObliX: multirotor-blimp-drone



I am very excited to present ObliX to you! ObliX is my multirotor-blimp-drone idea, which will hopefully combine the flight time endurance of a blimp with the agile dynamics of a quadcopter.



The largest dimension of this hybrid-blimp would measure about 3 m and the lifting force of the helium volume would be close to 3 kg.

Starting to build ObliX, I decided to make a development blog about it. To be able to present and discuss the progress in just the way I like, I thought it might be a good idea to make my own website for it. So here it goes:



http://danielwibbing.wix.com/oblix



It would be awesome if you would have a look at my website and support the develop ObliX with your comments. Maybe you would even like to become a member of the development team? Go ahead and contact me!








 fonte:ObliX: multirotor-blimp-drone - DIY Drones

RPAS Logger Lite for Android – Another logbook for your UAV’s

RPAS Logger Lite for Android – Another logbook for your UAV’s



In the interests of sharing .... RPAS Logger Lite for Android – Another logbook for your UAV’s

RPAS Logger Lite is built to support all companies and pilots flying a Remotely Piloted Aircraft (RPA) as a hobby or for commercial activities to establish a safety culture and also record the information required to maintain government compliance.

  RPAS Logger






 fonte:RPAS Logger Lite for Android – Another logbook for your UAV’s - DIY Drones

The issues with current multirotors and how we want to fix them

The issues with current multirotors and how we want to fix them



Hi everyone! My name is Jonathan Parrott, and I’m with Stephen Dade and James Pattison. We are all members of the CanberraUAV non for profit organisation from Australia and between us have been involved with “drones” for over 13 years between us.
We love multirotors, and have bought and/or built A LOT of them between us, only to be let down by one thing or another. Lazy and unsafe design compromises, poor build quality, substandard gimbals, and poor/illegal video transmitters are just the start of the issues we keep coming across.  We saw a need to fix these problems, so we created the UASys (Uninhabited Aircraft Systems) team. We are focused on designing and creating safe and innovative multirotors with particular emphasis on safety, practicality, aesthetics, and high quality video feeds.

It helps that James is an aerospace engineer (and a bit crazy). Stephen is a communications engineer (and assists with the APM:Planner 2 Linux port, MAVProxy development AND runs the occasional quadcopter workshop). Lastly I (just call me Jono) work as an aviation traffic management officer (yeah it’s kinda complicated to explain).  So all in all a pretty good set of skills to attack this kind of project with.

We are all massive fans of open source software, and think that not only the final product, but the journey, should be open to all. We're really excited to get started on some concepts and an initial prototype and will keep everyone updated with how we are going!



We've got a few more concept pictures on our Flickr page so check it out :)



fonte:The issues with current multirotors and how we want to fix them - DIY Drones