lunes, 11 de marzo de 2019

Future of Cities Part 2 - Visions of the Future

Peter Diamandis 

Founder & Executive Chairman of the XPRIZE Foundation | 



Tomorrow’s cities are reshaping almost every industry imaginable, and birthing those we’ve never heard of.
Riding an explosion of sensors, megacity AI ‘brains,’ high-speed networks, new materials and breakthrough green solutions, cities are quickly becoming versatile organisms, sustaining and responding to the livelihood patterns of millions.
Over the next decade, cities will revolutionize everything about the way we live, travel, eat, work, learn, stay healthy, and even hydrate.
And countless urban centers, companies, and visionaries are already building out decades-long visions of the future.
Setting its sights on self-sustaining green cities, the UAE has invested record sums in its Vision 2021 plan, while sub-initiatives like Smart Dubai 2021 charge ahead with AI-geared government services, driverless car networks and desalination plants.
A trailblazer of smart governance, Estonia has leveraged blockchain, AI and ultra-high connection speeds to build a new generation of technological statecraft. 
And city states like Singapore have used complex computational models to optimize everything from rainwater capture networks to urban planning, down to the routing of its ocean breeze.
Last week, I explored responsive urban networks, self-charging infrastructure and new materials for construction.
Today, I’d like to take a creative tour through some of the most whimsical visions of how we might live in 2050. We’ll discuss smart city services and responsive urban governance, as well as the implications of driverless vehicles for sprawling megacities.
Let’s dive in!

Automated Megacities and Networked Vehicles 

While not given nearly enough credit, the personal vehicle and urban transportation stand at the core of shaping our future cities.
Yet today, your car remains an unused asset about 95 percent of the time.
In highly dense cities like Los Angeles, parking gobbles up almost 15 percent of all urban land area. 
And with a whopping economic footprint, today’s global auto insurance market stands at over $200 billion. 
But the personal vehicle model is on the verge of sweeping disruptions, and tomorrow’s cities will transform right along with it.
Already, driverless cars pose game-changing second-order implications for the next decade. 
Take land use, for instance. By 2035, parking spaces are expected to decline by 5.7 million square meters, a boon for densely packed cities where real estate is worth its area in gold.
Beyond sheer land, a 90 percent driverless car penetration rate could result in $447 billion of projected savings and productivity gains.
But what do autonomous vehicles mean for city planning?
As I often like to do in brainstorming workshops, we can usually identify second-order implications of a technology by extrapolating from its immediate effects.
Source: PHD Ventures
Let’s imagine a 100 percent autonomous vehicle (AV) penetration rate. Cars have reached Level-5 automation, are 100 percent self-driving and can now communicate seamlessly with each other.
With a packing density 8X what it is today in most cities, commutes now take a fraction of the time. Some have even predicted aggregate time savings of over 2.7 billion unproductive hours.
But time savings aside, cars can now be entirely reimagined, serving a dual purpose for sleep, office work, morning calls, time with your kids, you name it.
With plummeting commute times and functional vehicles (think: a mobile office, bed, or social space), cities need no longer be geographically concentrated, allowing you to live well outside the bounds of a business district.
And as AVs give rise to an on-demand, Cars-as-a-Service (CaaS) business model, urban sprawl will enable the flourishing of megacities on an unprecedented scale.
While architects and civil engineers leap to the scene, others are already building out smart network precursors for a future of decentralized vehicles.
Using Narrowband-IoT (NB-IoT) for low power consumption, Huawei has recently launched a smart parking network in Shanghai that finds nearby parking spots for users on the go, allowing passengers to book and pay via smartphone in record time.
In the near future, however, vehicles — not drivers — will book vertically stacked parking spots and charge CaaS suppliers on their own (for storage).
This is where 5G networks come in, driving down latencies between driverless cars, as well as between AVs and their CaaS providers. Using sensor suites and advanced AI, vehicles will make smart transactions in real-time, charging consumers by the minute or mile, notifying manufacturers of wear-and-tear or suboptimal conditions, and even billing for insurance dollars in the now highly unlikely case of a fender-bender.
Source: Arrowstreet
With an eye to the future, Huawei is building out critical infrastructure for these and similar capabilities, embedding chip-sets under parking spaces across Shanghai, each collating and transmitting real-time data on occupancy rates, as the company ramps up its 5G networks. 
And Huawei is not alone.
Building out a similar solution is China Unicom, whose smart city projects span the gamut from smart rivers that communicate details of environmental pollution, to IoT and AI-geared drones in agriculture.
Already, China Unicom has established critical communications infrastructure with an NB-IoT network that spans over 300 Chinese cities, additionally deploying eMTC, a lower power wide area technology that leverages existing LTE base stations for IoT support.
Beyond its mobile carriers, however, China has brought together four key private sector players to drive the world’s largest coordinated smart city initiative yet. Announced just last August at China’s Smart City International Expo, the official partnership knights a true power team, composed of Ping An, Alibaba, Tencent, and Huawei (PATH).
With 500 cities under their purview, these tech giants are each tackling a piece of the puzzle.
On the heels of over ten years of research and 50 billion RMB (over US$7.4 billion), Chinese insurance giant Ping An released a white paper addressing smart city strategies across blockchain, biometrics, AI and cloud computing.
Meanwhile, Alibaba plans to embed seamless mobile payments (through AliPay) into the fabric of daily life, as Tencent takes charge of communications and Huawei works on hardware and 5G buildout (not to mention its signature smartphones). 
But it isn’t just driverless vehicles that are changing the game for smart cities.
One of the most advanced city states on the planet, Singapore joins Dubai in envisioning a future of flying vehicles and optimized airway traffic flow. 
As imagined by award-winning architect of Singapore’s first zero-carbon house, Jason Pomeroy, Singapore could in the not-too-distant future explore everything from air rights to flying car structures built above motorways and skyscrapers. 
“Fast-forward 50 years from now. You already see drone technology getting so advanced, [so] why are we not sticking people into those drones. All of a sudden, your sky courts, your sky gardens, even your private terraces to your condo [become] landing platform[s] for your own personalized drone.”
Source: Goodyear’s Concept Urban Aerial Mobility Ecosystem
Already, Singapore’s government is bolstering advanced programs to test drone capacity limits, with automated routing and private sector innovation. Most notably, Airbus’ ‘Skyways’ venture has begun building out its vision for urban air mobility in Singapore, where much of the company’s testing has taken place.
Yet, as megacities attract millions of new residents from across the planet, building out smart networks for autonomous and flying vehicles, one of our greatest priorities becomes smart city governance.

Smart Public Services & Optimized Urban Planning 

With the rise of urbanization, I’m led to the conclusion that megacities will become the primary nodes of data acquisition, data integration and thereby the primary mechanism of governance.
In just over 10 years, the UN forecasts that around 43 cities will house over 10 million residents each. Autonomous and flying cars, delocalized work and education, and growing urban populations are all beginning to transform cities into interconnected, automated ecosystems, sprawled over vast swaths of geography. 
Now more than ever, smart public services and automated security will be needed to serve as the glue that holds these megacities together. Public sector infrastructure and services will soon be hosted on servers, detached from land and physical form. And municipal governments will face the scale of city states, propelled by an upwards trend in sovereign urban hubs that run almost entirely on their own.
Take e-Estonia.
Perhaps the least expected on a list of innovative nations, this former Soviet Republic-turned digital society is ushering in an age of technological statecraft.
Hosting every digitizable government function on the cloud, Estonia could run its government almost entirely on a server.
Starting in the 1990s, Estonia’s government has covered the nation with ultra-high-speed data connectivity, laying down tremendous amounts of fiber-optic cable. By 2007, citizens could vote from their living rooms.
With digitized law, Estonia signs policies into effect using cryptographically secure digital signatures, and every stage of the legislative process is available to citizens online, including plans for civil engineering projects. 
But it doesn’t stop there.
Citizens’ healthcare registry is run on the blockchain, allowing patients to own and access their own health data from anywhere in the world — X-rays, digital prescriptions, medical case notes — all the while tracking who has access.
And i-Voting, civil courts, land registries, banking, taxes, and countless e-facilities allow citizens to access almost any government service with an electronic ID and personal PIN online. 
But perhaps Estonia’s most revolutionary breakthrough is its recently introduced e-citizenship. 
With over 50,000 e-residents from across 157 countries, Estonia issues electronic IDs to remote ‘inhabitants’ anywhere in the world, changing the nature of city borders themselves. While e-residency doesn’t grant territorial rights, over 6,000 e-residents have already established companies within Estonia’s jurisdiction.
From start to finish, the process takes roughly three hours, and 98 percent of businesses are all established online, offering data security, offshore benefits, and some of the most efficient taxes on the planet. 
After companies are registered online, taxes are near-entirely automated — calculated in minutes and transmitted to the Estonian government with unprecedented ease.
The implications of e-residency and digital governance are huge. As with any software, open-source code for digital governance could be copied perfectly at almost zero cost, lowering the barrier to entry for any megacity or village alike seeking its own urban e-services.
As my good friend David Li often advocates, we’ve seen thriving village startup ecosystems and e-commerce hotbeds take off throughout China’s countryside, resulting in the mass movement and meteoric rise of ‘Taobao Villages.’
As smart city governance becomes democratized, what’s to stop these or any other town from building out or even duplicating e-services?
But Estonia is not the only one pioneering rapid-fire government uses of blockchain technology. 
Within the next year, Dubai aims to become the first city powered entirely by the Blockchain, a long-standing goal of H.H. Sheikh Mohammed bin Rashid Al Maktoum.
Posing massive savings, government adoption of blockchain not only stands to save Dubai over 5.5 billion dirham (or nearly US$1.5 billion), but is intended to roll out everything from a citywide cryptocurrency emCash, to an RTA-announced blockchain-based vehicle monitoring system.
Possibly a major future smart city staple, systems similar to this latter blockchain-based network could one day underpin AVs, flying taxis and on-demand Fly-as-a-Service personal drones.
With a similar mind to Dubai, multiple Chinese smart city pilots are quickly following suit.
Almost two years ago, China’s central government and President Xi Jinping designated a new megalopolis spanning three counties and rivaling almost every other Chinese special economic zone: Xiong’an New Area.
Deemed a “crucial [strategy] for the millennium to come,” Xiong’an is slated to bring in over 2.4 trillion RMB (a little over US$357 billion) in investment over the next decade, redirecting up to 6.7 million people and concentrating supercharged private sector innovation.
And forging a new partnership, Xiong’an plans to work in direct consultation with ConsenSys on ethereum-based platforms for infrastructure and any number of smart city use cases. Beyond blockchain, Xiong’an will rely heavily on AI and has even posited plans for citywide cognitive computing.
But any discussion of smart government services would be remiss without mention of Singapore.
One of the most resourceful, visionary megacities on the planet, Singapore has embedded advanced computational models and high-tech solutions in everything from urban planning to construction of its housing units.
Responsible for creating living spaces for nearly 80 percent of its residents (through government-provided housing), the nation’s Housing and Development Board (HBD) stands as an exemplar of disruptive government.
Singapore uses sophisticated computer models, enabling architects across the board to build environmentally optimized living and city spaces. Take Singapore’s simulated ocean breeze for optimized urban construction patterns. 
As explained by HBD’s CEO Dr. Cheong Koon Hean, “Singapore is in the tropics, so we want to encourage the breezes to come through. Through computer simulation, you can actually position the blocks[,] public spaces [and] parks in such a way that help[s] you achieve this.”
Source: National Geographic
And beyond its buildings, Singapore uses intricate, precision-layered infrastructure for essential services, down to water and electrical tunnels, commercial spaces underground, and complex transportation networks all beneath the city surface. 
Even in the realm of feeding its citizens, Singapore is fast becoming a champion of vertical farming. It opened the world’s first commercial vertical farm over 6 years ago, aiming to feed the entire island nation with a fraction of the land use. 
Whether giving citizens a vote on urban planning with the click of a button, or optimizing environmental conditions through public housing and commercial skyscrapers, smart city governance is a key pillar of the future.

Visions of the Future

Bringing together mega-economies, green city infrastructure and e-services that decimate inefficiency, future transportation and web-based urban services will shape howand where we live, on unthinkable dimensions.
Networked drones, whether personal or parcel deliveries, will circle layered airways, all operated using AI city brains and blockchain-based data infrastructures. Far below, driverless vehicles will give rise to on-demand Cars-as-a-Service, sprawling cities and newly unlocked real estate.
And as growing megacities across the world begin grappling with next-gen technologies, who knows how many whimsical city visions and architectural plans will populate the Earth — and one day, even space.

Join Me

(1) A360 Executive Mastermind: This is one of the key conversations I’ll be exploring at my Executive Mastermind group called Abundance 360. The program is highly selective, for 360 abundance- and exponentially minded CEOs (running $10M to $50B companies). If you’d like to be considered, apply here.
Share this with your friends, especially if they are interested in any of the areas outlined above. 
(2) A360 Dubai: Join me in Dubai, the City of the Future, for the inaugural Abundance 360 Dubai Summit on March 26 - 27, 2019. Hosted by the Dubai Future Foundation and the Crown Prince of Dubai, this two-day experience offers exponential leaders an immersive look into how technology will transform every industry. Read more about the program and apply here to join.
(3) Abundance-Digital Online Community: I’ve also created a Digital/Online community of bold, abundance-minded entrepreneurs called Abundance-Digital. Abundance-Digital is my ‘onramp’ for exponential entrepreneurs – those who want to get involved and play at a higher level. Click here to learn more.

Future of Smart Cities - Part 1

Por Peter Diamandis 

Each week alone, an estimated 1.3 million people move into cities, driving urbanization on an unstoppable scale.
By 2040, about two-thirds of the world’s population will be concentrated in urban centers. Over the decades ahead, 90 percent of this urban population growth is predicted to flourish across Asia and Africa.
Already, 1,000 smart city pilots are under construction or in their final urban planning stages across the globe, driving forward countless visions of the future.
As data becomes the gold of the 21st century, centralized databases and hyper-connected infrastructures will enable everything from sentient cities that respond to data inputs in real time, to smart public services that revolutionize modern governance.
Connecting countless industries — real estate, energy, sensors and networks, transportation, among others — tomorrow’s cities pose no end of creative possibilities and stand to completely transform the human experience.
In this blog, we’ll be taking a high-level tour of today’s cutting-edge urban enterprises involved in these three areas:
  1. Hyperconnected urban ecosystems that respond to your data
  2. Smart infrastructure and construction
  3. Self-charging green cities
Let’s dive in!

Smart Cities that Interact with Your Data

Any discussion of smart cities must also involve today’s most indispensable asset: data.
As 5G connection speeds, IoT-linked devices and sophisticated city AIs give birth to trillion-sensor economies, low latencies will soon allow vehicles to talk to each other and infrastructure systems to self-correct.
Even public transit may soon validate your identity with a mere glance in any direction, using facial recognition to charge you for individualized travel packages and distances.
As explained by Deloitte Public Sector Leader Clare Ma, “real-time information serves as the ‘eye’ for urban administration.”
In most cities today, data is fragmented across corporations, SMEs, public institutions, nonprofits, and personal databases, with little standardization.
Yet to identify and respond to urban trends, we need a way of aggregating multiple layers of data, spanning traffic flows, human movement, individual transactions, shifts in energy usage, security activity, and almost any major component of contemporary economies.
Only through real-time analysis of information flows can we leverage exponential technologies to automate public services, streamlined transit, smarter security, optimized urban planning and responsive infrastructure.
And already, cutting-edge cities across the globe are building centralized data platforms to combine different standards and extract actionable insights, from smart parking to waste management. 
Take China’s Nanjing, for instance. 
With sensors installed in 10,000 taxis, 7,000 buses and over 1 million private vehicles, the city aggregates daily data across both physical and virtual networks. After transmitting it to the Nanjing Information Center, experts can then analyze traffic data, send smartphone updates to commuters and ultimately create new traffic routes.
Replacing the need for capital-intensive road and public transit reconstruction, real-time data from physical transit networks allow governments to maximize value of preexisting assets, saving time and increasing productivity across millions of citizens.
But beyond traffic routing, proliferating sensors and urban IoT are giving rise to real-time monitoring of any infrastructural system.
Italy’s major rail operator Trenitalia has now installed sensors on all its trains, deriving real-time status updates on each train’s mechanical condition. Now capable of calculating maintenance predictions in advance of system failure, transit disruptions are becoming a thing of the past. 
Los Angeles has embedded sensors in 4,500 miles worth of new LEDs (replacing previous streetlights). The minute one street bulb malfunctions or runs low, it can be fixed near-immediately, forming part of a proactive city model that detects glitches before they occur.
And Hangzhou, home to e-commerce giant Alibaba, has now launched a “City Brain” project, aiming to build out one of the most data-responsive cities on the planet.
With cameras and other sensors installed across the entire city, a centralized AI hub processes data on everything from road conditions to weather data to vehicular collisions and citizen health emergencies.
Overseeing a population of nearly 8 million residents, Hangzhou’s City Brain then manages traffic signals at 128 intersections (coordinating over 1,000 road signals simultaneously), tracks ambulances en-route and clears their paths to hospitals without risk of collision, directs traffic police to accidents at record rates, and even assists city officials in expedited decision-making. No more wasting time at a red light when there is obviously no cross traffic or pedestrians.
Already, the City Brain has cut ambulance and commuter traveling times by half. And as reported by China’s first AI-partnered traffic policeman Zheng Yijiong, “the City Brain can detect accidents within a second” allowing police to “arrive at [any] site [within] 5 minutes” across an urban area of over 3,000 square miles.
But beyond oversight of roads, traffic flows, collisions and the like, converging sensors and AI are now being used to monitor crowds and analyze human movement.
Companies like SenseTime now offer software to police bureaus that can not only identify live faces, individual gaits and car license plates, but even monitor crowd movement and detect unsafe pedestrian concentrations.
Some researchers have even posited the use of machine learning to predict population-level disease spread through crowd surveillance data, building actionable analyses from social media data, mass geolocation and urban sensors.
Yet aside from self-monitoring cities and urban AI ‘brains,’ what if infrastructure could heal itself on-demand. Forget sensors, connectivity and AI — enter materials science.

Self-Healing Infrastructure 

The U.S. Department of Transportation estimates a $542.6 billion backlog needed for U.S. infrastructure repairs alone.
And as I’ve often said, the world’s most expensive problems are the world’s most profitable opportunities.
Enter self-healing construction materials.
First up, concrete.
In an effort to multiply the longevity of bridges, roads, and any number of infrastructural fortifications, engineers at Delft University have developed a prototype of bio-concrete that can repair its own cracks.
Mixed in with calcium lactate, the key ingredients of this novel ‘bio-concrete’ are minute capsules of limestone-producing bacteria distributed throughout any concrete structure. Only when the concrete cracks, letting in air and moisture, does the bacteria awaken.
Like clockwork, the bacteria begins feeding on surrounding calcium lactate as it produces a natural limestone sealant that can fill cracks in a mere three weeks — long before small crevices can even threaten structural integrity.
As head researcher Henk Jonkers explains, “What makes this limestone-producing bacteria so special is that they are able to survive in concrete for more than 200 years and come into play when the concrete is damaged. […] If cracks appear as a result of pressure on the concrete, the concrete will heal these cracks itself.”
Yet other researchers have sought to crack the code (no pun intended) of living concrete, testing everything from hydrogels that expand 10X or even 100X their original size when in contact with moisture, to fungal spores that grow and precipitate calcium carbonate the minute micro-cracks appear.
But bio-concrete is only the beginning of self-healing technologies. 
As futurist architecture firms start printing plastic and carbon-fiber houses, engineers are tackling self-healing plastic that could change the game with economies of scale. 
Plastic not only holds promise in real estate on Earth; it will also serve as a handy material in space. NASA engineers have pioneered a self-healing plastic that may prove vital in space missions, preventing habitat and ship ruptures in record speed. 
The implications of self-healing materials are staggering, offering us resilient structures both on earth and in space.
One additional breakthrough worth noting involves the magic of graphene.
Perhaps among the greatest physics discoveries of the century, graphene is composed of a 2D honeycomb lattice over 200X stronger than steel, yet remains an ultra-thin one atom thick. 
While yet to come down in cost, graphene unlocks an unprecedented host of possibilities, from weather-resistant and ultra-strong coatings for existing infrastructure, to multiplied infrastructural lifespans. Some have even posited graphene’s use in the construction of 30 km tall buildings.
And it doesn’t end there.
As biomaterials and novel polymers will soon allow future infrastructure to heal on its own, nano- and micro-materials are ushering in a new era of smart, super-strong and self-charging buildings.
Revolutionizing structural flexibility, carbon nanotubes are already dramatically increasing the strength-to-weight ratio of skyscrapers. 
But imagine if we could engineer buildings that could charge themselves… or better yet, produce energy for entire cities, seamlessly feeding energy to the grid.

Self-Powering Cities

As exponential technologies across energy and water burst onto the scene, self-charging cities are becoming today’s testing ground for a slew of green infrastructure pilots, promising a future of self-sufficient societies.
In line with new materials, one hot pursuit surrounds the creation of commercializable solar power-generating windows. 
In the past several years, several research teams have pioneered silicon nanoparticles to capture everyday light flowing through our windows. Little solar cells at the edges of windows then harvest this energy for ready use. 
Scientists at Michigan State, for instance, have developed novel “solar concentrators.” Capable of being layered over any window, these solar concentrators leverage non-visible wavelengths of light — near infrared and ultraviolet — pushing them to those solar cells embedded at the edge of each window panel.
Rendered entirely invisible, such solar cells could generate energy on almost any sun-facing screen, from electronic gadgets to glass patio doors to reflective skyscrapers. 
And beyond self-charging windows, countless future city pilots have staked ambitious goals for solar panel farms and renewable energy targets.
Take Dubai’s “Strategic Plan 2021,” for instance.
Touting a multi-decade Dubai Clean Energy Strategy 2050, launched by UAE Prime Minister Sheikh Mohammed bin Rashid Al Maktoum in 2015, Dubai aims to gradually derive 75 percent of its energy from clean sources by 2050.
With plans to launch the largest single-site solar project on the planet by 2030, boasting a projected capacity of 5,000 megawatts, Dubai further aims to derive 25 percent of its energy needs from solar power in the next decade.
And in the city’s “Strategic Plan 2021,” Dubai aims to soon:
  • 3D-print 25 percent of its buildings;
  • Make 25 percent of transit automated and driverless;
  • Install hundreds of artificial “trees,” all leveraging solar power and providing the city with free WiFi, info-mapping screens, and charging ports;
  • Integrate passenger drones capable of carrying individuals to public transit systems;
  • And drive forward countless designs of everything from underwater bio-desalination plants to smart meters and grids.
A global leader in green technologies and renewable energy, Dubai stands as a gleaming example that any environmental context can give rise to thriving and self-sufficient eco-powerhouses. 
This is one of the reasons on March 26 & 27th, 2019 I’m holding a 2-day Abundance360 program with the leadership and CEOs of Dubai and the region. Find info here if you’re interested.
But Dubai is not alone, and others are quickly following suit.
Leading the pack of China’s 500 smart city pilots, Xiong’an New Area (near Beijing) aims to become a thriving economic zone powered by 100 percent clean electricity. 
And just as of this December, 100 U.S. cities are committed and on their way to the same goal.

Cities as Living Organisms

As new materials forge ahead to create pliable and self-healing structures, green infrastructure technologies are exploding into a competitive marketplace.
Aided by plummeting costs, future cities will soon surround us with self-charging buildings, green city ecosystems, and urban residences that generate far more than they consume.
And as 5G communications networks, proliferating sensors and centralized AI hubs monitor and analyze every aspect of our urban environments, cities are fast becoming intelligent organisms, capable of seeing and responding to our data in real time.
In our next installation on the future of cities, I’ll be exploring smart services and responsive urban governance, a new digital layer enabled by the Spatial Web, and the rise of mega- and micro-cities alike.

Join Me
(1) A360 Executive Mastermind: This is one of the key conversations I’ll be exploring at my Executive Mastermind group called Abundance 360. The program is highly selective, for 360 abundance- and exponentially minded CEOs (running $10M to $50B companies). If you’d like to be considered, apply here.
Share this with your friends, especially if they are interested in any of the areas outlined above. 
(2) A360 Dubai: Join me in Dubai, the City of the Future, for the inaugural Abundance 360 Dubai Summit on March 26 - 27, 2019. Hosted by the Dubai Future Foundation and the Crown Prince of Dubai, this two-day experience offers exponential leaders an immersive look into how technology will transform every industry. Read more about the program and apply here to join.
(3) Abundance-Digital Online Community: I’ve also created a Digital/Online community of bold, abundance-minded entrepreneurs called Abundance-Digital. Abundance-Digital is my ‘onramp’ for exponential entrepreneurs – those who want to get involved and play at a higher level.