Wednesday, August 19, 2015

Transport's innovation problem: why haven’t flying cars taken off?

Flying cars in The Jetsons and Back to the Future, or Star Trek's spaceships and teleportation, may have captured the imagination decades ago, but most current methods of transport have been around a long time. Railways were being rolled out rapidly from the 1830s, while the commercial breakthroughs in petrol and diesel engines date to 1876 and 1892 respectively. Even the jet engine that made mass aviation possible can be traced back to Frank Whittle's first patent in 1932.

Despite decades of futuristic predictions, modern transport wouldn't look all that different to someone from the 1950s – certainly not compared to communications or entertainment. So why has there been so little recent innovation in transport? And will the latest batch of proposed driverless cars, levitating trains and electric aircraft actually make a serious breakthrough?

In part, there hasn't been a revolution because existing technologies have been able to evolve. Engines have become more efficient, fuel is higher quality, we have lighter materials, more aerodynamic designs and better brakes that mean vehicles can operate safely closer together. However, eventually there will be a limit to these evolutions.

We're still waiting for the future of the 50s. James Vaughan, CC BY-NC-SA

In any event, transport is not just about technology. It is also about people – and people don't always like change. We may be locked in to current technology, partly due to habit but also due to economics.

We have an extensive transport refuelling system based on petrol and diesel. To convert to electricity or, more fancifully, to hydrogen, will involve substantial re-tooling that will be difficult to finance. In the UK, drivers are used to manual transmissions and may be reluctant to learn how to use more automated systems, just as we would be reluctant to retrain to use a different keyboard even if it were more efficient. We are stuck with what we have – the economics of QWERTY.

Human factors may lead to unintended consequences – one of the ironies of automation is that it can lead to less attention to related tasks. For example adaptive cruise control can make car drivers less aware of hazards.

Even with full automation, when we still have trouble making all trains driverless, one might suggest driverless cars are a flight of fancy. Innovative aeroplane designs, such as the blended wing, are stymied by the human requirements for a window seat (NASA has suggested windows could be replaced with real-time video).

The wing blends into the main body of the aircraft – but where are the windows? NASA / Boeing

Fancy new inventions have to be accompanied by a business model and the right infrastructure, or else they'll just languish as prototypes like the pneumatic transit system demonstrated in New York City in the early 1870s and a forerunner to Elon Musk's proposed Hyperloop. Take flying cars. Even supposing the technology works, where would they land?

Such a system would only succeed if infrastructure – air traffic control, landing space and so on – was set aside. While flying cars could technically operate from airport to airport, what's the point? Until there are sufficient numbers to set aside pieces of land or roads for takeoff we won't achieve any of the benefits. And there won't be sufficient demand until this land is set aside. Catch 22.

When looking at how technology interacts with wider society it's helpful to think in terms of three different levels: niches, regimes and landscapes.

In transport, there are plenty of niche innovations – battery electric vehicles, hydrogen fuel cells, car clubs – but few become mainstream. An exception might be hybrid electric vehicles such the Toyota Prius, but even here the underlying technology may be traced back to a patent registered in 1898 (by Ferdinand Porsche, no less).

The first Porsche – and the first hybrid. wiki

The problem isn't coming up with new ideas – it's changing the bigger picture. At regime level, new transport technologies have faced resistance from vested interests such as oil producers and car makers. And the wider landscape has not always favoured major innovations – especially low oil prices.

With lots of different individual suppliers, transport is also vulnerable to tragedy of the commons-type outcomes and clashes between rival designs and brands. Navigation technologies can only be sold commercially if they benefit the individual consumer. However, if we all have access to such technologies, we can be collectively worse off due to congestion – for the greater good, it would be beneficial if sometimes our SatNav sends us on a longer route, but who is knowingly going to buy something like that?

Electric battery technology might have more rapid adoption if the technology was standardised, permitting automated battery swaps. But standardised to whose technology? Magnetic levitation train adoption is limited by the fact they can't run on traditional rail lines and have only limited overlap with other maglevs.

In short, despite the fuss over disruptive technologies such as Uber, it is unlikely that transport will have a technology paradigm shift until there is a major landscape change. Of course, with volatile oil prices, limited reserves and sensitive geopolitics, such a change could be just round the corner. But for the moment the technology push does not seem to be complemented by a societal pull – people might like to watch sci-fi, but they aren't yet ready to live it.

The Conversation

John Preston is Head of the Transportation Research Group at University of Southampton and Ben Waterson is Lecturer in Transportation at University of Southampton

This article was originally published on The Conversation. Read the original article.


Source: Transport's innovation problem: why haven't flying cars taken off?

Tuesday, August 18, 2015

Watch Video: The flying car from AeroMobil

As a car, it fits into any standard parking space, consumes regular gasoline. It can be used in road traffic just like any other car. As a plane, it can land at any airport in the world and take off using grass strip or paved surface of few hundred meters long.

As a car, it can attain top speed of 160 km/h. As an airplane, it can get at a speed of 200 km/h. In one full tank, you can travel a distance of 875 kms on road and 700 kms by flying.   

Watch Video here:

Courtsey: Aeromobil official website (www.aeromobil.com)

Latest News  from Business News Desk


Source: Watch Video: The flying car from AeroMobil

Friday, August 14, 2015

Transport’s innovation problem: why haven’t flying cars taken off?

Flying cars in The Jetsons and Back to the Future, or Star Trek's spaceships and teleportation, may have captured the imagination decades ago, but most current methods of transport have been around a long time. Railways were being rolled out rapidly from the 1830s, while the commercial breakthroughs in petrol and diesel engines date to 1876 and 1892 respectively. Even the jet engine that made mass aviation possible can be traced back to Frank Whittle's first patent in 1932.

Despite decades of futuristic predictions, modern transport wouldn't look all that different to someone from the 1950s – certainly not compared to communications or entertainment. So why has there been so little recent innovation in transport? And will the latest batch of proposed driverless cars, levitating trains and electric aircraft actually make a serious breakthrough?

In part, there hasn't been a revolution because existing technologies have been able to evolve. Engines have become more efficient, fuel is higher quality, we have lighter materials, more aerodynamic designs and better brakes that mean vehicles can operate safely closer together. However, eventually there will be a limit to these evolutions.

We're still waiting for the future of the 50s. James Vaughan, CC BY-NC-SA

In any event, transport is not just about technology. It is also about people – and people don't always like change. We may be locked in to current technology, partly due to habit but also due to economics.

We have an extensive transport refuelling system based on petrol and diesel. To convert to electricity or, more fancifully, to hydrogen, will involve substantial re-tooling that will be difficult to finance. In the UK, drivers are used to manual transmissions and may be reluctant to learn how to use more automated systems, just as we would be reluctant to retrain to use a different keyboard even if it were more efficient. We are stuck with what we have – the economics of QWERTY.

Human factors may lead to unintended consequences – one of the ironies of automation is that it can lead to less attention to related tasks. For example adaptive cruise control can make car drivers less aware of hazards.

Even with full automation, when we still have trouble making all trains driverless, one might suggest driverless cars are a flight of fancy. Innovative aeroplane designs, such as the blended wing, are stymied by the human requirements for a window seat (NASA has suggested windows could be replaced with real-time video).

The wing blends into the main body of the aircraft – but where are the windows? NASA / Boeing

Fancy new inventions have to be accompanied by a business model and the right infrastructure, or else they'll just languish as prototypes like the pneumatic transit system demonstrated in New York City in the early 1870s and a forerunner to Elon Musk's proposed Hyperloop. Take flying cars. Even supposing the technology works, where would they land?

Such a system would only succeed if infrastructure – air traffic control, landing space and so on – was set aside. While flying cars could technically operate from airport to airport, what's the point? Until there are sufficient numbers to set aside pieces of land or roads for takeoff we won't achieve any of the benefits. And there won't be sufficient demand until this land is set aside. Catch 22.

When looking at how technology interacts with wider society it's helpful to think in terms of three different levels: niches, regimes and landscapes.

In transport, there are plenty of niche innovations – battery electric vehicles, hydrogen fuel cells, car clubs – but few become mainstream. An exception might be hybrid electric vehicles such the Toyota Prius, but even here the underlying technology may be traced back to a patent registered in 1898 (by Ferdinand Porsche, no less).

The first Porsche – and the first hybrid. wiki

The problem isn't coming up with new ideas – it's changing the bigger picture. At regime level, new transport technologies have faced resistance from vested interests such as oil producers and car makers. And the wider landscape has not always favoured major innovations – especially low oil prices.

With lots of different individual suppliers, transport is also vulnerable to tragedy of the commons-type outcomes and clashes between rival designs and brands. Navigation technologies can only be sold commercially if they benefit the individual consumer. However, if we all have access to such technologies, we can be collectively worse off due to congestion – for the greater good, it would be beneficial if sometimes our SatNav sends us on a longer route, but who is knowingly going to buy something like that?

Electric battery technology might have more rapid adoption if the technology was standardised, permitting automated battery swaps. But standardised to whose technology? Magnetic levitation train adoption is limited by the fact they can't run on traditional rail lines and have only limited overlap with other maglevs.

In short, despite the fuss over disruptive technologies such as Uber, it is unlikely that transport will have a technology paradigm shift until there is a major landscape change. Of course, with volatile oil prices, limited reserves and sensitive geopolitics, such a change could be just round the corner. But for the moment the technology push does not seem to be complemented by a societal pull – people might like to watch sci-fi, but they aren't yet ready to live it.


Source: Transport's innovation problem: why haven't flying cars taken off?

Thursday, August 13, 2015

Flying Cars On the Horizon Now Fact Not Fiction

With flying cars really coming true in contemporary life, Freddie and Sebbie creates an auto accessory they assert to be 100% future-proof.

(Newswire.net -- August 11, 2015) Las Vegas, LAS VEGAS -- Since the dawn of science fiction, the image of the future has been centered around 3 things: hover boards, flying cars and self-lacing sneakers. The Marty McFly self-lacing Nike trainers will be released later on this year, only two scientific breakthroughs remain until we can officially declare that we are in the future, however they may well be coming earlier than formerly believed.

Fortune Magazine launched a story at the end of July this year explaining the realities of flying cars and hover-boards, and surprisingly enough, we already have the technology to make them happen. "There are really lots of car variants out there that will get you from point A to point B without touching the ground", Robert Hackett of Fortune states: "But the issue is, they function only on an extremely small scale. High costs, policies, and physics have actually prevented anyone from making more than a few vehicles, or going very far on them."

With a whole new dimension added to travel, however, comes a whole new dimension for travel devices. Nevada-based accessory business Freddie and Sebbie asserts to have developed a completely future-proof range of accessories, for both today and tomorrow. Freddie and Sebbie official spokesman Neil Speight, said in a recent press meeting: "Our luxury automobile organizer for instance, has not only been developed to hold items of any si ze, ranging from small chocolate bars all the way up to 11 inch tablets, but also to hold them safely and securely, thanks to the item's special elastic pockets."

While offering all passengers comfort, even on the bumpiest of roads, it has actually been produced to be as light-weight and super-strong as possible, weighing in at a measly 11 ounces, and made from the highest quality products available on the market. According to the company spokesman, it's been produced with maximum use in mind, by using its secure wraparound system that stays securely in place, either facing forward for the driver, or backwards for the car passengers. He added: "Whether it's a flying car, or a driving car, things are bound to slide around and fall to the floor, but with this organization system in place, the car of today can be as sleek and neat as the car of tomorrow."

Asked if the Freddie and Sebbie vehicle organizer could really be put up to test, primary spokesperson Neil Speight res ponded: "Put to the test? Of course it can! Freddie and Sebbie is built on value and quality. Even if cars of the future don't arrive for another 100 years, you can be ensured that this vehicle organizer will stand the test of time. And what if it doesn't? Well, simply get it replaced with the free no-quibble life-time Freddie and Sebbie guarantee, which is bundled with each among our products!" Freddie and Sebbie's luxury vehicle organizer is available to purchase solely from their Amazon storefront, with more information about this and the rest of their future-proof range of accessories to be found on their site, freddieandsebbie.com.

The full specifications for their luxury car orgainzer can be seen here: http://www.amazon.com/Car-Organizer-Freddie-Sebbie-Accessories/dp/B00OQPRPK8/

------------

Since the dawn of science fiction, the image of the future has been centered around 3 things: hover boards, flying cars and self-lacing sneakers. The Marty McFly self-lacing Nike trainers will be released later on this year, only two scientific breakthroughs remain until we can officially declare that we are in the future, however they may well be coming earlier than formerly believed.

Fortune Magazine launched a story at the end of July this year explaining the realities of flying cars and hover-boards, and surprisingly enough, we already have the technology to make them happen. "There are really lots of car variants out there that will get you from point A to point B without touching the ground", Robert Hackett of Fortune states: "But the issue is, they function only on an extremely small scale. High costs, policies, and physics have actually prevented anyone from making more than a few vehicles, or going very far on them."

With a whole new dimension added to travel, however, comes a whole new dimension for travel devices. Nevada-based accessory business Freddie and Sebbie asserts to have developed a completely future-proof range of accessories, for both today and tomorrow. Freddie and Sebbie official spokesman Neil Speight, said in a recent press meeting: "Our luxury automobile organizer for instance, has not only been developed to hold items of any size, ranging from small chocolate bars all the way up to 11 inch tablets, but also to hold them safely and securely, thanks to the item's special elastic pockets."

While offering all passengers comfort, even on the bumpiest of roads, it has actually been produced to be as light-weight and super-strong as possible, weighing in at a measly 11 ounces, and made from the highest quality products available on the market. According to the company spokesman, it's been produced with maximum use in mind, by using its secure wraparound system that stays securely in place, either facing forward for the driver, or backwards for the car passengers. He added: "Whether it's a flying car, or a driving car, things are bound to slide around and fall to the floor, but with this organization system in place, the car of today can be as sleek and neat as the car of tomorrow."

Asked if the Freddie and Sebbie vehicle organizer could really be put up to test, primary spokesperson Neil Speight responded: "Put to the test? Of course it can! Freddie and Sebbie is built on value and quality. Even if cars of the future don't arrive for another 100 years, you can be ensured that this vehicle organizer will stand the test of time. And what if it doesn't? Well, simply get it replaced with the free no-quibble life-time Freddie and Sebbie guarantee, which is bundled with each among our products!" Freddie and Sebbie's luxury vehicle organizer is available to purchase solely from their Amazon storefront, with more information about this and the rest of their future-proof range of accessories to be found on their site, freddieandsebbie.com.

About Freddie and Sebbie™

Freddie and Sebbie Kids Line products are made to the highest standards in quality, safety, value for money and reliability. We believe in giving the very best to both parent and child, by providing helpful accessories exclusively available on Amazon.


Source: Flying Cars On the Horizon Now Fact Not Fiction

Wednesday, August 12, 2015

Dutch engineer develops autonomous quadcopter vehicle

Personal flight vehicles are still a long way from reality But a Dutch software engineer says he's a step closer with a quadcopter capable of carrying a passenger. Thorstin Crijn's Quadro is designed to transport passengers without manual control. A kind of flying taxi. (SOUNDBITE) (English), SOFTWARE ENGINEER, THORSTIN CRIJNS, SAYING: "What I envision is that governments could use this transportation system, and a person could use a smart phone, call the drone, get in there and go to their desired location" The quadcopter's twenty engines are powered by lithium battery and the structure made from an aluminium alloy. It's controlled by the MultiWii Autopilot system, which is able to stabilise the vehicle. So far, the Quadro has accomplished 10 seconds in the air while carrying a passenger. And Crijns is negotiating with Dutch aviation authorities for a flight permit. And he's determined to prove his vehicle's safe. (SOUNDBITE) (English), SOFTWARE ENGINEER, THORSTIN CRIJNS, SAYING "It's not only about technological challenges, but also about awareness, people should trust this device, that's also really important, and I think for all that to happen it will take 15 years or something." The Quadro joins other attempts to achieve Jetsons-style flying cars. Britain-based Malloy Aeronautics showcased a small scale "Hoverbike" quadcopter - complete with a humanoid passenger - at this year's Paris Air Show. Their full-size version is now being developed in collaboration the U.S. Defense Department.


Source: Dutch engineer develops autonomous quadcopter vehicle

Monday, August 10, 2015

Flying Cars Are Not Going to Become a Reality Soon

By: Arthur St. Antoine | Illustration by Tim Marrs

Flying cars are in the air again. That is, if you believe the mainstream media's latest round of breathless headlines ("Flying Car Companies Aim for Takeoff in 2017," gushed CNN recently) and the silly notion that a machine can be both aircraft and automobile at the same time.

Not that I don't wish it were true. I want a flying car. I also want a jet pack as user-friendly as a Honda Civic, a personal submarine that folds into a briefcase, and a world-class pepperoni pizza that reverses graying hair. And by now, damn it, I should have a flying car. I mean, ever since I was a kid, inventors, visionaries, and charlatans have been promising that "very soon" I'd be zipping around the sky in a fabulous gravity-defying pod that lifts me off from my driveway, whisks me straight to my destination, and lands me softly on a barstool. Instead, in 2015, I have a phone that talks on its own and orbiting space satellites that keep trying to beam "Duck Dynasty" into my family room.

Part of the problem is simple semantics. When most dreamers talk of "flying cars," what they really mean is "driving planes." Almost every flying car ever built—from Robert Fulton's 1946 Airphibian (an aluminum car with detachable fabric wings) to the sleek, folding-wing prototypes now being developed by Slovakian maker AeroMobil and Massachusetts-based Terrafugia—is actually a plane with a modicum of roadworthiness. You still need a runway to take off and land (not very helpful when you're trying to hop over to Madison Square Garden for the big game). Nor can you really drive your "car" once on the ground: In a crash test, a vehicle light enough to be airworthy would fare about as well as a Ming vase. Even if flying cars are able to meet government regulations, anything that flies will always be exceptionally vulnerable. In a car, a fender bender is annoying. In an aircraft, with its fragile control surfaces and mission-critical shapes, well, you're grounded .

Besides, what a flying-car hopeful really wants is something more akin to a helicopter. Vertical takeoffs and landings with no massive supporting infrastructure needed. Something along the lines of inventor Paul Moller's M400 Skycar, a four-rotor machine designed to take off straight up and then, by tilting its rotors, thrust forward like an airplane. Trouble is, after some 40 years of work and roughly $200 million of investor cash burned, the Skycar has yet to climb out of ground effect (that's a scientific term for "not even as high as Portland's Paul Bunyan statue"). Still, one can't help but admire a man who so brilliantly combines the tenacity of a carpenter ant with the chutzpah of P.T. Barnum.

Here's the saddest reality of all: Building a working flying car is the easy part. Many flying-car prototypes—from the vintage Airphibian to Terrafugia's new Transition—have indeed flown. But thus far, they've only been in the air with experienced test pilots at the controls. I spent more than eight months of intensive training and study before earning my private pilot's license, and even that only allowed me to fly relatively simple fixed-wing aircraft in good visual conditions. That's because operating a machine in three dimensions—along with potentially tens or hundreds of other machines occupying roughly the same space—is a complex affair. You're controlling not just speed and direction but altitude, too. You're in frequent radio contact with various ground controllers (and sometimes other aircraft) to maintain separation and proper position. You're constantly vigilant of the weather. And you're always monitoring a slew of systems—from navigation to fu el to engine performance—that in case of a problem can't be fixed simply by pulling to the side of the road. These are not the sort of challenges a teenager masters after a week at Ned's Thrifty Flying Car Driving School.

I'm not saying the dream is impossible. After all, mankind advanced from the first powered airplane flight to landing on the moon in just 66 years. But flying cars are not going to become a reality in 2017, or probably in 2027, for that matter. Massive advances in powerplants, flight controls, automated systems, and computer guidance will be required. Only when the world is safe from Biff and Buffy dreamily text-messaging in the cockpits of their Air Camrys will cars ever really fly. Meanwhile, I'm betting pigs get there first.


Source: Flying Cars Are Not Going to Become a Reality Soon

Sunday, August 9, 2015

A Step Closer To The Flying Car - Terrafugia TF-X Ready In 2022 With Vertical Take-Off

4 photos

The flying car has been, and it is, one of modern humanity's technological dreams since the early 1900s, when the great visionaries of the automotive world put the first car on wheels. Technological progress is relatively slow, until 2000 at least, and the legal problems that such an invention would have had stopped in the bud the few attempts.

But 2009 brought to the forefront a company that promised to produce a series flying car. Obviously there is no clear deadline for the launch, but the Americans from Terrafugia, a company formed by engineers and scientists gathered around the Massachussets Institute of Technology (MIT), presented the Transition concept, as a variant closer in terms of technology of what could become a flying car.

Currently, there are only two companies seriously involved with launching a flying car - Aeromobil and Terrafugia.This car could transport passengers to their destination via air when this is reasonably possible. The Transition concept made en ough waves in the press, especially because the technology boom started to become a serious one, thanks to the explosion of the Internet and personal gadgets.

Well, Terrafugia continues to research and develop the idea of flying car, and in 2015 their new product has a different name: TF-X. The new concept is an evolved one and company representatives say it is very close to a possible series production, if this will be legalized in the near future.

But powertrain solutions and performance of the new Terrafugia TF-X are the ones that impress: the flying car has a hybrid propulsion system, which spins the wheels on the asphalt and the rotors with which it flies when airborn. The air autonomy of the Terrafugia TF-X is 800 kilometers (500 miles) and takeoff is done vertically (like helicopters do today), which means that TF-X does not need a runway.

Although Terrafugia has not provided data about the maximum air speed, it is likely that we are talking about figures better than those of the Transition, the first concept of the company, which announced three years ago a speed of 160 kilometers per hour – 100 mph (it had been rumored to be at about 322 km/h – 200 mph).

If the first thing you think when you hear of such a car is linked in any way to how it can be piloted when in the air, everything is solved simply by the producing company: Terrafugia TF-X has fully autonomous flight, which means that it avoids the p roblems of potential traffic, recognizes areas where the weather is not favorable for flight, knows restricted air zones and it does an automatic landing instead of the driver-pilot. If unforeseen circumstances arise that could endanger the lives of passengers, the Terrafugia TF-X also has a complete parachute system which solves the problem of forced landing without damage.Most likely future owners of these cars will not need a pilot's license, which is necessary for the flying car from Aeromobil.

Even if Terrafugia claims that the TF-X's design it is ready for production, the actual development of the car will take at least eight years, which means that flying cars could be seen on the roads and possibly in the air no earlier than 2022.

There is no official price, but first information from the company revolves around a sum that rivals that of a luxury car, so around or above 300,000 euros.


Source: A Step Closer To The Flying Car - Terrafugia TF-X Ready In 2022 With Vertical Take-Off