Tag Archives: The Jetsons

Making Life Easy With Easier Parking

With driverless cars already on the streets, will there be similar AI breakthroughs in the future of parking?

In the ’60s, The Jetsons, a cartoon about a family living in the future, featured a flying car that folded down into a briefcase when not in use. It is unlikely that we will ever see that solution to parking become a reality, but many other sci-fi books and films have predicted self-driving vehicles, and we know they are coming because they kind of exist today.

future of parking
Parking facilities in the future must make allowances for electric vehicles. (Photo by guteksk7/Shutterstock)

While brands like Tesla have pushed the boundaries of driver assistance to become a version of self-driving, including parking the vehicle automatically, currently the parking infrastructure has not really kept up. 

But we know that cannot continue, and the reality is that as transport technology evolves, parking solutions will have to evolve as well. But what does that mean long term? Will we be able to arrive at a parking center, get out and leave the car to it, then call it back to us when we want to leave? That seems like the dream approach to parking, but what does it need to make it happen? 

Parking tech

There are two parts to that kind of service, the technology in the car park itself, and the technology within the car. For such a seamless experience, the two will need to work together, in that the vehicle must be able to drive autonomously, but also receive information about parking locations and when it should return to the entrance, from the car park itself. Both sets of technology actually exist today, not as refined as required for a reliable autonomous parking experience, but that is only a matter of time and development. But is it the right answer? 

Right now, parking systems know which cars are parked where within the car park, this data is used to establish remaining capacities and so on, and while not universal, there are cars that can go off and park themselves when needed. So that future service is nearer than we think, but in the meantime what does car parking look like? Some may say that the future is already here without needing self-driving cars.

In Japan and some cities in the US, lift-based parking solutions offer a similar experience today. You arrive at a parking garage; your vehicle is pulled into a cubicle which is then lifted away. When you want to return to your car, the system finds the right cubicle garage and then returns it to the entrance, so you can drive away. 

There are advantages to this approach, without the need for ramps to drive up and down to reach the parking, more cars can be parked in a given space. Because no one actually enters the building where vehicles are stored, it is also incredibly secure too. These systems are being constantly refined, and in the future, it is likely such a garage could be completely automated. With the advantages of space and security, is that more likely to be the future of high-density parking? If we look at other factors, it may well be. 

Cities are increasingly looking to decrease car numbers, opening up spaces instead for social areas, encouraging cycling and other more environmentally friendly approaches to transportation. This is unlikely to change even with the widespread adoption of electric cars, so parking will naturally require large hubs with high-density parking that allows easy access to walks, bikes or public transport to central areas. To get an idea for the future of parking, we can look at what technology best fits this scenario. 

Robotic Solutions

It is likely that these robotic lift-type solutions that pack more vehicles into each parking area fit the needs of city designers better than any more traditional multi-story or underground system that requires ramps and so on, whether the cars are operated by drivers or park themselves. There are other things that are in favor of this approach too. 

Architects are under pressure to soften the appearance of buildings in cities across the world, to create spaces that have more light and elegance. A more compact multi-story space, or an underground alternative with only one small entrance space is easier to disguise with cladding, color and other design tricks that much larger car parks that have ramps and so on. 

There is also the matter of technology. While there are cars that can drive themselves in a limited way now, and numbers are only going to increase, they are not all cars, and may never be. Holden stopped making cars in 2020, but in 20 years’ time, there will still be Holden cars driving on the roads. Those cars can never use autonomous parking systems, but they can use the robotic systems that take your car away and bring it back via a crane lift. They can use them today, and they can use them in the future. 

Machine learning to park

So, the dream of a car swooshing away into its own spot automatically could well be the future. However, it is more likely to be carried there by a machine rather than drive itself. But not all parking is in cities with integrated parking solutions ran by the local authorities. For parking elsewhere, things will develop alongside vehicle technology, and there is one area that must advance for the future of the automotive industry itself, never mind parking. That is electric car charging

Right now, charging is a bit of a mess: different speeds depending on the charger installation, there is no real cohesive system and owners often have to wrestle with a number of different apps to access charging networks on the go. Then there are the mechanics of charging, a heavy cable that has to be plugged in, account information and payment input before the car can be charged. As with phones, wireless charging is the solution, it removes much of the hassle and fail points for a better experience. But what would that look like in cars? 

The obvious answer is charging areas embedded into the road or parking space, with a vehicle stopping on top of it automatically charging. There are hurdles to this, it would mean an end to the various account systems currently used to access charge networks, and instead have something tied to the vehicle itself. However, this kind of solution offers easy and efficient charging without the hassle we have today. 

This would also require new technology for parking. For instance, our robotic car parks could have a charge loop in each container or cubicle, so electric vehicles charge automatically once they are taken away for storage. Likewise, on-road parking at parking meters could include chargers under each space.

This makes the charging process so much less hassle but allows for electric car charging without having to install endless charge stations in streets, and avoiding all the cables that the current system will need. Given the sheer number of electric cars that will be in operation in just a decade or so, and one cable per car, you can see how much an alternative is required. 

But while technology will continue to drive the parking experience, and in cities and communities the need for clean, open spaces will change where we park and what that parking looks like, there will still be areas where parking sits outside of these grand designs. At its heart, a parking space is somewhere to store a vehicle while you go off and do something, and that need is not going to change. Large robotic parking systems in cities may appear in numbers, but they are not going to be the norm in areas with a smaller traffic flow or specific needs. 

What we may see, and it is happening now, is that entrepreneurs and visionaries can find ways to provide a more selective parking solution on a smaller scale, that caters to a very specific need in a specific location. Not only are these services essential and in high demand, but they can be a source of income for anyone who has access to suitable parking space. With more cars than ever on the roads, and with a shift to electric not changing that, the future of parking looks to be heading in multiple directions.

The centralized systems operated in cities and other large communities will follow an approach that minimizes the space required and seek to integrate such facilities into an overall plan for the area. However, in some areas where there is no overall control of parking operations, the idea that you can rent a parking spot from a single person makes sense. Some people have space, others need that space, and as more cars are used, that space is in ever higher demand. This article is an excerpt from the complete e-book Parking Made Easy by Daniel Battaglia.

Ontario Set to be First Province to test Auto-driving Vehicles and Technology

Ontario First to Test Automated Vehicles on Roads in Canada

Province Supports Innovation in Transportation Technology

 

You should take auto-driving cars seriously- every major Auto manufacturer is venturing forward with concepts like this one- GM's EN-V
You should take auto-driving cars seriously- every major Auto manufacturer is venturing forward with concepts such as this one from General Motors- the GM EN-V

 

Ontario is launching a new pilot to allow for the testing of automated vehicles on Ontario roads.

 

Automated vehicles are driverless or self-driving vehicles that are capable of detecting the surrounding environment using artificial intelligence, sensors and global positioning system coordinates. Automated and connected vehicle technologies have the potential to help improve fuel efficiency as well as reduce traffic congestion, greenhouse gas emissions and driver distraction.

 

Beginning on January 1, 2016, Ontario will lead Canada as the first province to test automated vehicles and related technology on-road. Currently there are nearly 100 companies and institutions involved in the connected vehicle and automated vehicle industry in the province. The pilot will enable those companies to conduct research and development in Ontario rather than in competing jurisdictions, as well as support opportunities to bring automated vehicles to market.

 

The province is also pledging an additional $500,000 in funding to the Ontario Centres of Excellence Connected Vehicle/Automated Vehicle Program, in addition to the $2.45 million in funding recently provided. The program brings academic institutions and business together to promote and encourage innovative transportation technology.

 

Ensuring Ontario’s place as a world leader in the auto, transportation, information and communications technology sectors are part of the government’s plan to build Ontario up. The four-part plan includes investing in people’s talents and skills, making the largest investment in public infrastructure in Ontario’s history, creating a dynamic, innovative environment where business thrives, and building a secure retirement savings plan.

Not all concepts are futuristic looking such as Google's modded Prius. We're betting Ontario will test more conservatively styled auto-drivers such as this one. CP
Not all concepts are futuristic looking such as Google’s modded Prius. We’re betting Ontario will test more conservatively styled auto-drivers such as this one. CP image: New York Times

QUOTE

 

“In the world of transportation, Ontario has the opportunity to show leadership on automated technology. Today, Ontario is making its claim in the global marketplace by taking the next steps in automated vehicle innovation. The automated vehicle pilot will ensure that the province’s roads remain safe without creating burdens that stifle investment and innovation in Ontario’s dynamic business environment.”

— Steven Del Duca, Minister of Transportation

 

“Ontario is a global leader in developing and manufacturing the next generation of vehicles.

This new pilot program will build on our success, and help Ontario lead the development of automated and connected car technologies. In this highly competitive global economy, investing in people’s talents and skills to create the next generation of innovative technologies is good for business, and can help lead to the easier movement of goods and services across the province.”

— Brad Duguid, Minister of Economic Development, Employment and Infrastructure

 

QUICK FACTS

 

  • Information about applying for the pilot will be available online from the Ministry of Transportation in late November.
  • The Institute of Electrical and Electronics Engineers forecast that by 2040, autonomous vehicles will account for 75 per cent of all vehicles on the road.

 

LEARN MORE

 

Ontario Investing in the Next Generation of Connected Vehicles

Connected Vehicle/Automated Vehicle (CVAV) Research Program

 

Who wouldn't want to ride/drive Chevrolet's FNR concept car?
Who wouldn’t want to ride/drive Chevrolet’s FNR concept car?

 

Disponible en français:
L’Ontario est la première province à mettre à l’essai les véhicules automatisés La province encourage l’innovation dans les technologies des transports 
L’Ontario lance un projet pilote en vue de la mise à l’essai de véhicules automatisés sur ses routes.
Les véhicules automatisés sont des véhicules sans chauffeur ou autoconduits qui peuvent détecter l’environnement avoisinant grâce à l’intelligence artificielle, aux capteurs et aux coordonnées fournies par le système de positionnement global. Les technologies relatives aux véhicules automatisés et connectés ont le potentiel d’améliorer le rendement du carburant et de réduire la congestion routière, les émissions de gaz à effet de serre et la distraction au volant.
Dès le 1er janvier 2016, l’Ontario sera le premier lieu au Canada à mettre à l’essai les véhicules automatisés et les technologies connexes sur la route. Près d’une centaine d’entreprises et d’établissements œuvrent actuellement dans le secteur des véhicules connectés et automatisés dans la province. Le projet pilote permettra à ces entreprises de mener des activités de recherche et de développement en Ontario plutôt que dans les territoires concurrents, en plus de créer des possibilités qui favoriseront l’introduction des véhicules automatisés sur le marché.
La province s’engage aussi à injecter 500 000 $ de plus dans le Programme de recherche sur les véhicules connectés et autonomes par l’intermédiaire des Centres d’excellence de l’Ontario, outre le financement de 2,45 millions de dollars récemment alloué. Ce programme réunit des établissements universitaires et des entreprises en vue de promouvoir les technologies de transport novatrices et d’encourager leur utilisation.
S’assurer de faire de l’Ontario un chef de file mondial dans les secteurs de l’automobile, du transport et des technologies de l’information et des communications s’inscrit dans le plan du gouvernement visant à renforcer la province. Ce plan comprend quatre volets : investir dans les talents et les compétences de la population, faire le plus important investissement dans l’infrastructure publique de l’histoire de l’Ontario, créer un environnement dynamique et novateur où les entreprises prospèrent, et établir un régime d’épargne-retraite sûr.
CITATIONS
« L’Ontario a l’occasion de montrer l’exemple par le recours à la technologie automatisée dans le domaine des transports. L’Ontario marque aujourd’hui le marché mondial de son empreinte en franchissant une nouvelle étape pour stimuler l’innovation dans l’automatisation des véhicules. Le projet pilote sur les véhicules automatisés sera mis en œuvre de façon à s’assurer que les routes de la province restent sûres sans créer des fardeaux qui étoufferaient l’investissement et l’innovation dans le dynamique environnement commercial de l’Ontario. »— Steven Del Duca, ministre des Transports
« L’Ontario est un chef de file mondial dans la conception et la fabrication de la prochaine génération de véhicules. Ce nouveau projet pilote misera sur notre succès et aidera la province à prendre les devants dans le développement des technologies des véhicules automatisés et connectés. Dans cette économie mondiale hautement concurrentielle, le fait d’investir dans les talents et les compétences de la population afin de créer la prochaine génération de technologies innovatrices est bon pour les affaires et peut faciliter un mouvement plus fluide des biens et des services dans l’ensemble de la province. »— Brad Duguid, ministre du Développement économique, de l’Emploi et de l’Infrastructure
FAITS EN BREF

  • Le ministère des Transports offrira de l’information en ligne sur la présentation de demandes dans le cadre du projet pilote à la fin novembre.
  • L’Institut des ingénieurs électriciens et électroniciens prévoit que les véhicules autonomes compteront pour 75 p. 100 de tous les véhicules sur la route d’ici 2040.

 POUR EN SAVOIR DAVANTAGE
Soutenir l’innovation dans les technologies de transportProgramme de recherche sur les véhicules connectés et autonomes

Brampton’s Skylink offers home app for mobile- allows phones to control home devices

Ahhh Jane Jetson- you really know how to take advantage of technology.
Ahhh Jane Jetson- you really know how to take advantage of technology.

 

We know they let you watch TV on the go, surf online, send emails and, oh yeah, make phone calls. But an innovative new tool now also gives you the power to use your mobile device to switch on any light in your home, open your garage door or turn on any other piece of electronic equipment, no matter where you’re located.

Ontario Technology firm: The Skylink Group – which previously introduced Skylink HomeControl, an affordable and easy-to-use system to wirelessly control your entire house – recently launched a mobile application, Skylink HomeControl App, that effectively turns your smartphone, tablet or PC into a remote control.

The handy app allows users to control just about anything in their home with the touch of a couple buttons on a virtual keypad, which can be customized to the specific devices they want to be able to access remotely.

 

 

 

You might be surprised to learn that home automation has been around for a long time and since the earliest days of electricity in the home, inventors and entrepreneurs have scrambled to find a useful and profitable way of harvesting radio waves and electricity.   Tesla was one such visionary and among his many accomplishments is perhaps the first use of control by remote- considered at the time, an important form of automation. In 1898 he constructed and demonstrated this remote control model boat in New York. image: kerryr.net
You might be surprised to learn that home automation has been around for a long time and since the earliest days of electricity in the home, inventors and entrepreneurs have scrambled to find a useful and profitable way of harvesting radio waves and electricity.
Tesla was one such visionary and among his many accomplishments is perhaps the first use of control by remote- considered at the time, an important form of automation. In 1898 he constructed and demonstrated this remote control model boat in New York. image: kerryr.net

 

 

 

Anyone who already understands how to use a mobile device or a computer tablet will be able to use this app easily. That’s the key to getting the
greatest benefit from new technologies – making them easy to understand and user friendly,” says Philip Tsui, CEO and the Chairman of Skylink Group.

The Skylink HomeControl System is designed for do-it-yourselfers and uses control modules which can be wired out of sight and wireless receivers plugged into wall outlets or lamp sockets, even wall switches and dimmers which replace your existing wall switches. For professionals, the Skylinkhome Wireless Control System has modules with three wires that can be installed almost anywhere.

The Wireless Control System can be used to control anything electronic, including:

.         Lamps

.         Coffee makers

.         Fans

.         Stereos

.         Fire places

.         Ceiling fans

.         Indoor and outdoor lighting

.         Garage doors

.         Security systems

.         Countless other electronic devices and appliances

Often cited as the "McDonald's of Home Automation" X-10 modules were considered a major breakthrough when they entered the consumer market in the 1970's. A central control unit (here seen in lovely 70's woodgrain) controlled separate modules that were plugged directly into a home power outlet. An appliance requiring automation such as a lamp, was plugged into the module and controlled via wired or wireless control from the X-10 'brain'. CP
Often cited as the “McDonald’s of Home Automation” X-10 modules were considered a major breakthrough when they entered the consumer market in the 1970’s. A central control unit (here seen in lovely 70’s woodgrain) controlled separate modules that were plugged directly into a home power outlet. An appliance requiring automation such as a lamp, was plugged into the module and controlled via wired or wireless control from the X-10 ‘brain’. CP

 

For those who may not have a smartphone or computer tablet, Skylink also has a remote control – the credit card-sized SkylinkPad – which can be used to wirelessly control devices in your house.

 

In addition to convenience, the Skylink HomeControl System helps users realize significant energy savings. With the touch of a button, you can shut off all of your lights or set up motion sensors to work with the system. The wireless system also uses timers to ensure that lights and electronic equipment can be shut off when they’re not needed. Dimmers also reduce energy usage, contributing to a greener environment and lower electricity bills.

 

About Skylink Group:

The Skylink Group understands the needs and concerns of the homeowner in providing a safe and comfortable environment for their family whether they are at home or away. Established in 1990, Skylink Group operates out of Brampton, Ontario. On
Twitter at @skylinkhome.

Supplemental– The Genius of Nikola Tesla http://www.teslasociety.com/radio.htm

The History of Home Automation http://www.eddriscoll.com/timeline.html