Wednesday, May 6, 2009

American UFO Spotted In Afghanistan


An unidentified, jet propelled UAV has been spotted operating from an American airbase in Afghanistan. It's a flying wing design, similar to the X-45s and X-47s built as development aircraft for the U.S. Air Force and Navy. These UCAVs (Unmanned Combat Aerial Vehicles) were built to carry weapons, and the one spotted in Afghanistan may have a bomb bay as well. The U.S. Air Forces X-45A combat UAV (UCAV) dropped its first smart bomb in 2004. There are also purely reconnaissance jet powered UAVs built as experimental vehicles.
Last year, the U.S. Navy rolled out its first combat UAV. This was part of a six year long, $636 million contract to build and test two X-47B aircraft. The test program calls for first flight this year and first carrier landing in two years. The 15 ton X-47B has a wingspan of 62 feet (whose outer 15 foot portions fold up to save space on the carrier). It carries a two ton payload and be able to stay in the air for twelve hours.

Six years ago, the X-47A UCAV made its first flight. Development of this aircraft began in 2001. The Air Force was also testing the X-45 UCAV, which also had a naval version (the X-46). The X-45 program began in 1999, and the eight ton (max takeoff weight, with two ton payload) aircraft was ready for operational tests in 2006. The X-46 has a different wing layout, and a range of 1,100 kilometers, carrying a payload of two tons. The X-47A also has a two ton payload and a range of 1,600 kilometers. Unlike the X-45, which was built to be stored for long periods, the X-47A was built for sustained use aboard a carrier. All of these aircraft are very stealthy and can operate completely on their own (including landing and takeoff, under software control). The UCAVs would be used for dangerous missions, like destroying enemy air defenses, and reconnaissance.

The X-45 was meant mainly for those really dangerous bombing missions, early on, when enemy air defenses have to be destroyed. But the Pentagon finally got hip to the fact that the UCAS developers were coming up with an aircraft that could replace all current fighter-bombers. This was partly because of the success of the X-45 in reaching its development goals, and the real-world success of the Predator (in finding, and attacking, targets) and Global Hawk (in finding stuff after flying half way around the world by itself.)

The X-45A passed tests with formation flying. An X-45C could carry eight SDB (250 pound small diameter bombs), or up to two tons of other JDAMs. The X-45A has already shown it can fly in formation. The planned X-45C would weigh in at about 19 tons, have a 2.2 ton payload and be 39 feet long (with a 49 foot wingspan.) The X-45A, built for development only, is 27 feet long, has a wingspan of 34 feet and has a payload of 1.2 tons. The X-45C was designed to hit targets 2,300 kilometers away and be used for bombing and reconnaissance missions. Each X-45C was to cost about $30 million, depending on how extensive, and expensive, its electronic equipment was. Believing they could do better, the U.S. Air Force cancelled its X-45 program three years ago, and is now looking into different UCAV designs.

Meanwhile, many UCAV designers want to equip the UCAVs with sensors (various types of video cams) to give the aircraft the same kind of "situational awareness" that piloted aircraft have. But for this to work, the UCAV would need software that would enable it to think like a fighter pilot. The techies say this can be done. But the fighter pilots that run the air force and naval aviation are not so sure. There also some worry about job security and pilots being replaced by robotic aircraft. All this is headed for some mock combat exercise between manned and unmanned fighters. Such tests will be a competition between pilots and programmers. But the programmer community contains fighter pilots as well, and the smart money is on the geeks to outsmart, or at least outfly, the human pilots. No one thinks it will be a lopsided battle, but the robotic aircraft are so much cheaper, that even a dead even finish favors the pilotless aircraft.

The U.S. Navy has invested several billion dollars, so far, in developing combat UAVs (Unmanned Aerial Vehicles) that can operate from aircraft carriers, and replace some of the manned aircraft on carriers. There are other problems with the combat UAVs, and these concern just how they will be used. Currently, the thinking is that they will be sort of like cruise missiles that return, and will be most useful for reconnaissance and dangerous missions like taking out enemy air defenses. But many UAV engineers, and some fighter pilots, believe that combat UAVs could revolutionize air warfare. Combat UAVs can perform maneuvers that a manned aircraft cannot (because there are limits to the g-forces a human body can tolerate.) In theory, software and sensors would make a combat UAV much quicker to sort out a combat situation, and make the right move. For the moment, this aspect of UAV development is officially off the table. But once combat UAVs start operating, and that will be by the end of the decade, there will be much pressure to let combat UAVs rule the skies, in addition to scouting and bombing.

Meanwhile, no one is saying what a combat UAV design is doing in Afghanistan. But there it is, operating as a UFO (unidentified flying object).

Tuesday, May 5, 2009

Australia's Entecho has UAVs and Hoverpod



The Hoverpod is Entecho's personal flight Compact Air Vehicle (CAV) and employs their patented radial drum fan lifting system. With its small footprint and vertical take-off and landing (VTOL) ability, it is easily transported, can be launched from anywhere and fly over any surface; be it snow, water, sand or wetland.





The Hoverpod is the ultimate recreational vehicle, combining the freedom of the hovercraft and All-Terrain-Vehicles (ATV) with the performance of Personal-Watercraft (PWC) and Snowmobiles. The Hoverpod flies at a greater altitude than a conventional hovercraft, allowing it to pass over any terrain. The Hoverpod also enjoys the freedom to tilt and develop translational g-forces in any direction. This omni-directional ability makes the Hoverpod further unique compared to conventional recreational vehicles.


Top speed should be around 120kmh (75 mph), and an initial range of 3km (2 miles) will improve through development.

Entecho are building two models using the enclosed rotor technology. The first is the small, 11 pounds (5kg) unmanned Mupod, which can be used for a variety of UAV applications and measures 3 feet (60cm) in diameter. Entecho have already demonstrated a flying prototype of the Mupod.

The larger Hoverpod is a manned version with up to 3 seats. It's 5 feet (2.7m) in diameter and limited to fly 5 feet (1.5m) above ground - this doesn't make it the flying car everyone's holding out for, but it's a significant improvement on, for example, the standard hovercraft - and opens up a much wider range of passable terrains.
















Monday, May 4, 2009

Unmanned planes ready to begin test flights

by Kathrine Schmidt

Published: Sunday, May 3, 2009 at 6:01 a.m. 
Last Modified: Saturday, May 2, 2009 at 9:30 p.m.

THIBODAUX - Its wingspan is only five feet. But officials and researchers hope this tiny unmanned plane, dubbed the CyberBug, can help enhance research on coastal issues as well as bring a new industry and jobs to the area.

After more than two years of working to bring Unmanned Aerial Systems technology to the Houma-Thibodaux area, researchers are preparing for its first test flights for the cutting-edge data collection system this summer, pending approval from the Federal Aviation Administration.

"We feel it is very important for this region," said Balaji Ramachandran, assistant professor of geomatics at Nicholls State University and lead researcher on the project. "It can bring in a lot of growth in the southern part of the state."

Originally used for military surveillance and monitoring, unmanned planes have expanded in their use to include scientific research, search- and-rescue missions, fisheries, traffic or damage to power lines. A host of local groups, including Nicholls, the Houma-Terrebonne Airport, Fletcher Technical Community College, the South Central Planning and Development Commission and the Terrebonne Economic Development Authority have all been working on the project, a natural fit for the Houma-Thibodaux area because of its proximity to the Gulf of Mexico, supporters say.

The system is made up of a "bird," or unmanned aircraft, that is controlled by instruments on the ground. Cameras and other monitoring systems collect images and other data and transmit them back to on-land systems.

Houma's first plane, a hand-launched model, will be set off from barrier islands to help map coastal data and monitor bird habitats. Researchers believe it will be the first civilian UAS flight in Louisiana.

"The demonstration is just to get the public's interest," Ramachandran said. "The reason we picked the barrier islands is because our biological scientists are already working on restoration projects. That's very important."

The plan is to continue with at least one flight per month to contribute to the research throughout the first year of its operation, Ramachandran said.

The pilots for the project, Houma-Terrebonne airport director Earl Hicks and local aviator Darryl Christen, will attend training in Utah for the project this week.

But it took some major investments and effort to get the project to this stage.

First, the team needed a network upgrade to transmit the signals from the plane to a station on the ground, and then in turn share it with other universities in the state.

In 2007, a $73,000 grant from the U.S. Department of Homeland Security built up the wireless connection between Nicholls and Fletcher Technical Community College. This February, a connection was finished to the high-powered LONI network at Tulane University from Nicholls, thanks to a grant from the Delta Regional Authority with the help of South Central Planning and Development Commission.

They also bought the CyberBug bird, made possible with a $40,000 grant, a hand-launched craft that can stay in the air for just over an hour.

If the initial flights are successful, the scientists hope to progress to larger birds launched from boats, eventually moving to large-scale models that would take off from a runway at the airport. The airport set aside 150 acres off Moffet <0x000a>Road several years ago to be available for UAS projects and potential businesses.

Their aim: Make Houma an attractive and competitive spot for larger government contracts and private-sector UAS development, according to George Rey, a consultant on the project with COTS Technology in New Orleans, who reported on the topic to the Houma-Terrebonne Airport Commission in April.

Some of those opportunities, he suggested, could include hurricane research done by the National Aeronautics and Space Administration or flights that could inexpensively monitor power lines for damage for power companies.

Terrebonne Parish's economic-development group is already working to pursue some of these chances. Hicks, along with Michelle Edwards, who handles business recruitment for the Terrebonne Economic Development Authority, attended a UAS trade show near Albuquerque last December.

Since the airport began pursuing the project a few years ago, TEDA has been working to search out business prospects for research, development and manufacturing in that sector, Edwards said.

"I think it offers an opportunity to diversify into emerging technologies of the future," Edwards said. "It offers us an opportunity to get into research and development areas for specialized technologies that are not in the oil and gas industry.

Sunday, April 26, 2009

Longwave infrared imager uses less than 0.6 W of power


APRIL 23, 2009--The shutterless 384 x 288-pixel, 25-µm-pitch MICROCAM thermal imaging camera module weighs 26 g (1 oz) and features a 4 x 4-cm (1.57 x 1.57-in.) board size, along with <0.6 W power consumption. The XTi shutterless technology combined with the MICROCAM provide a solid-state IR imager with no mechanical moving parts or interruption to vision.
Thermoteknix
Cambridge, UK
www.thermoteknix.com

UAS Toolbox

The UAS Toolbox™ is a suite of functions and scripts for the Matlab® environment that are tailored to the everyday analysis and simulation tasks of the Unmanned Aircraft System (UAS) researcher, manufacturer or operator. The UAS Toolbox™ originates from AISC’s many years of using Matlab® and Simulink® for UAS design, flight test and simulation tasks. So, whether it is building a high fidelity flight simulator or generating data for a post-flight report or briefing, we are convinced the UAS Toolbox™ will be the best set of tools you can purchase.

Attachments: Download this file (UAS Toolbox Datasheet.pdf)UAS Toolbox Datasheet [ ] 207 Kb
Download this file (UAS Toolbox Tech Ref 2.pdf)UAS Toolbox Technical Reference [ ] 870 Kb
Read more...

UAS Toolbox Roadmap
Tuesday, 10 February 2009 15:56

AISC publicly released today the development roadmap for its ground breaking UAS Toolbox for Matlab/Simulink. The roadmap outlines development plans for the next two versions due out in the second and fourth quarters of 2009 respectively

These updates will added powerful functionality to the already jammed packed toolbox. Included in Version 2 are functions for visulaization of data in Google Earth, mass properties build up, generalized flight performance, and propulsion performance for electric, piston and turbine engines. Version 3 will include an interface with AISC's Aircraft Matcom (a soon to be release port of Aircraft DATCOM to Matlab) and two tools commonly used in stability and control analysis and flight simulation.

If you have not purchased the UAS Toolbox, don't wait! These updates are inlcuded in your software maintenance which is included in the purchase price for the first year.

Friday, April 24, 2009

Legally Profit From the Pirates

This pirate thing is getting even further out of hand. The aggression and the disruption of business off the Horn of Africa must not stand. Er, float.

Pirate depredation has forced commercial shippers like Maersk and DryShips (Nasdaq: DRYS) to cope with ransom requests costing into the millions of dollars. Because the sea lanes that the pirates prowl are key to the international Gulf Oil trade, major oil shippers such as Frontline (NYSE: FRO) have had to reroute their vessels to avoid the bandits, lengthening voyages and increasing costs. Insurance rates for everyone involved are going through the proverbial roof.

Equipping ships with water cannons and licensing private groups to hunt down pirates might be innovative, low-cost measures, but as long as the area remains lawless and next to vital shipping lanes, the U.S. and other nations will have to improve their ability to patrol the area.

But who's going to stop it?
Last week, I argued that the most logical solution is to arm the merchant vessels. In a fight between a rowboat manned by four AK-toting thugs and a 20-story-tall commercial liner with a crew of 20 similarly armed, there should be no contest. Or, alternatively, that Raytheon (NYSE: RTN) could find a market for its Active Denial System to zap attackers until they flee the unbearable sensation of heat.

Fools replied with suggestions that ranged from installing electrified guardrails on-deck to equipping tankers with the Phalanx weapons system (which would be more like smashing a gnat with a sledgehammer). But given shipowner intransigence about arming their crews and national security concerns, the more firearms-intensive options seem to have fallen into disfavor.

But if we cannot arm the merchant mariners, what is the answer? Former presidential contender Ron Paul suggests we adopt a 19th-century solution to the piracy problem: issuing letters of marque to vessels interested in playing privateer, thus creating government-approved pirate hunters.

The Wall Street Journal opinion page suggests a 20th-century idea -- forcing vessels sailing the Gulf of Aden to travel in convoys. NPR recently ran a story suggesting such low-tech deterrents as high-powered water cannons and slippery foam applied to ship surfaces.

All fine ideas, worthy of consideration. But as an investor, I have to admit that I'm still having trouble finding one that I can invest in. There are ideas, however, that do offer investment opportunities.

The ocean is a big place. (In other breaking news, it's also wet.) The three dozen or so military vessels currently operating off Somalia and tasked with ending the pirate threat have a big job ahead of them. How big? Roughly speaking, there are over a million miles of ocean off the East African coast. (To put that in perspective, it's like tasking a handful of police cruisers with maintaining order in a territory stretching from Dallas north to Minneapolis, east to Philadelphia and south to Orlando.)

Sure, adding ships to the constabulary flotilla is one solution, and I suspect it's contributing to Defense Secretary Robert Gates' enthusiasm for the Littoral Combat Ships being developed by General Dynamics (NYSE: GD) and Lockheed Martin (NYSE: LMT). But let's face it -- mass production of these vessels is still a ways off. The companies that can provide solutions today are the ones that will profit.

Unmanned Aerial Vehicles
Northrop Grumman (NYSE: NOC) offers one technology that seems admirably suited to expanding search capabilities at sea. In contrast to most defense contractors' unmanned aerial vehicle (UAV) offerings, which resemble model airplanes, Northrop's new Fire Scout UAV is more like a mini-helicopter -- a much better concept for take-off from a small warship's flight deck.

The U.S. Navy has already given Northrop the green light to begin low-rate initial production, and is busy testing the system. Seems to me, the African coast would be a dandy place to put the Fire Scout through its paces.

Another UAV maker who could benefit from this aquatic testing ground is our very own Motley Fool Rule Breakers recommendation AeroVironment. As recently as last year, the company was lamenting the dearth of a market for its Aqua Puma UAV -- a "model airplane" variant, but unlike most other UAVs, it's capable of landing on water. Ring any bells?

Manned aerial vehicles
Flying robots probably offer the cheapest way to observe vast stretches of the sea. But manned aircraft can do the job, as well. Enter Boeing (NYSE: BA) and its new P-8 Poseidon sub hunter, which despite its namesake is also an effective shipping interdiction tool for the Navy. Last I heard, the aircraft was slated to begin testing this year. Thanks to the Somali pirates, now we've got just the place to do it.

And if the current order isn't enough to do the job, the Navy can always fill the gap with a few of the planes the P-8 is supposed to replace, Lockheed's P-3 Orion.

Come to think of it, a head-to-head competition might be just the thing to catch us some pirates, and put to rest some criticisms of the Pentagon acquisition process at the same time.

Looking for other high-tech defense prospects for your portfolio? Check out Motley Fool Rule Breakers, where we're looking into options in everything from unmanned airplanes to bombproof trucks to bulletproof soldiers. Thirty-day free trials are available on demand.

Canada contracts for small UAVs

BINGEN, Wash., April 23 (UPI) -- The Canadian Department of National Defense has contracted Insitu to deliver its small unmanned aerial vehicle technologies.

U.S. company Insitu was contracted to provide its ScanEagle small UAV technology for use by the Canadian armed forces in Afghanistan. Under the $30 million contract, Insitu will deliver its ScanEagles as part of an effort by the Canadian Department of National Defense to strengthen intelligence, surveillance and reconnaissance operations.

Insitu said that as part of the deal, its technicians will provide training for Canadian forces along with maintenance and other engineering support services.

"We are proud to continue our excellent working relationship with the Canadian forces and to help further develop their expertise in unmanned aircraft systems," Greg Davis, Insitu small UAV program manager, said in a statement.

"The collaborative plan we've put together includes several evolutionary steps in technology that will mitigate government expense for improved system capability."

MQ-9 Reaper Hunter/Killer UAV

Developer & Producer: General Atomics Aeronautical Systems (GA-ASI)

Recent news / Predator users

A reaper loaded with missiles and laser guided bombs flown on a test flight. Photo: General Atomics Aeronautical Systems.
Reaper, (also known as Predator B) an outgrowth of the combat proven Predator A UAS, became operational in 2007 and as it began flying combat missions over Afghanistan. This Medium Altitude Long Endurance UAV overcomes most of the difficulties encountered with previous UAVs that commonly must compromise between conflicting demands for payload, speed, altitude, speed and persistence. With an operational ceiling of 50,000ft, and higher cruising speed, Reaper can cover a larger area, under all weather conditions carrying payloads of more than 1.5 tons. The aircraft is powered by a single Honeywell TP331-10 engine, producing 950 shp, provides a maximum airspeed of 260 kts and a cruise speed for maximum endurance of 150-170 kts.

Future Weapons 新時代武器 ELBIT Systems Viper Portable Combat Robot

UAV Technology

The Skylark I has also been selected by France's Special Forces in March 2008.
Skylark I is a miniature unmanned aerial vehicle. It is designed as a manpacked system for tactical surveillance and reconnaissance. Skylark is launched by hand. The payload consists of daylight CCD or optional FLIR for night operations. During operation, it sends real-time video to a portable ground station. Recovery involves a deep stall maneuver, landing on a small inflatable cushion. It has a range of 10 km.

Skylark is in operation with the militaries of Israel, Croatia, Hungary, Macedonia, Poland, Australia, Netherlands and Canada. It has been deployed in Afghanistan and Iraq.



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