Disruptive technologies are鈥夆斺墂ell, they鈥檙e disruptive.

They have the power to create and upset whole industries and change how we live and work. Think shopping before the internet, travel before planes and cars or even cooking before fire.

According to the DaVinci Institute鈥檚 Thomas Frey, one of Google鈥檚 top-rated futurists, more of these disruptive technologies may be on the rapidly approaching horizon. When he spoke in Louisville earlier this year, he outlined eight of them: sensors, flying drones, driverless cars, 3D printing, virtual and augmented reality, internet of things, artificial intelligence and cryptocurrencies/blockchain.

Here鈥檚 how trailblazing researchers, inventors and innovators at UofL are working to advance these technologies.

Sensors
Sensors can efficiently and automatically collect information, such as location, temperature and pressure. Cindy Harnett is using them to build better athletes. She鈥檚 invented stretchable, thin sensor technology that can be woven into fabric. The idea is to create smart-technology clothes or wraps you can wear as you bike, run or lift.

鈥淲e can track things that have always been happening but we didn鈥檛 have the data on,鈥 said Harnett, an associate professor of electrical and computer engineering. 鈥淎nd we can do it without invading people鈥檚 privacy.鈥

Harnett鈥檚 technology, patented through UofL鈥檚 Commercialization EPI-Center, can measure the strain on muscles during athletic activities鈥夆斺塼he 鈥減layer load鈥濃夆斺墂hich can tell us about physical limits, form and technique. That鈥檚 information we don鈥檛 necessarily get from current athletic performance measures.

Outside of athletics, Harnett said sensors have the potential to impact or completely disrupt many industries including manufacturing, public health, logistics and distribution.

Flying Drones
Flying drones can navigate and gather information where humans can鈥檛, such as over large territories or in dangerous, potentially life-threatening circumstances. That ability makes drones perfect for surveillance and monitoring, according to Adrian Lauf, assistant professor of computer engineering and computer science and director of UofL鈥檚 Aerial Robotics Lab.

鈥淚鈥檝e always thought 鈥榳hat could we do if we take multiple aircraft, attach sensors to them and allow them to be part of the picture?鈥 鈥 Lauf said.

Lauf believes drones could inventory what structures are still standing after a natural disaster and look for survivors. In agriculture, they could gauge the health of crops. For major public events, such as concerts or the Kentucky Derby, drones could map traffic patterns.

But for drones to be effective at surveillance, Lauf predicts we would need many, inexpensive bots working together. His lab is studying wireless sensor networks, which would allow groups of drones to work as a team, coordinating navigation and group decision-making, and reporting the information they gather back to a central location.

Driverless Cars
Autonomous vehicle technology is already being explored by everyone from BMW to Uber. Doctoral student Parag Siddique is trying to figure out where and how all of those self-driving cars would park.

He鈥檚 especially interested in urban areas, where there are lots of people and space is scarce. Self-driving cars might be an opportunity to use that space more efficiently through automation.

鈥淭his doesn鈥檛 require new parking lots. It鈥檚 a better use of existing ones,鈥 said Siddique, whose work is with the Logistics and Distribution Institute at the J.B. Speed School of Engineering. 鈥淎ll you need is an algorithm.鈥

Siddique proposes an 鈥渁utomated valet鈥 in smart parking lots that packs cars densely together. His idea was inspired by current warehousing research and a game called 鈥淩ush Hour,鈥 where a player tries to remove one car piece from a board of them packed tightly together.

With the automated valet, drivers鈥夆斺塭r, passengers鈥夆斺墂ould open an app and surrender control of their self-driving car to the lot. The lot would then automatically move the cars into available spots, packing them densely together to maximize space.

3D Printing
Your desktop printer can print words or pictures onto a sheet of paper. But 3D printers can print tangible things, like prototypes, machine parts and even jewelry.

Sundar Atre hopes to build that technology into Louisville鈥檚 economy through his newly launched Louisville Additive Manufacturing Business Alliance, or LAMBDA.

鈥淚 see the pathway to a multibillion 3D printing economy in Louisville,鈥 said Atre, a professor of mechanical engineering and endowed chair of manufacturing and materials. 鈥淚t鈥檚 not unrealistic.鈥

3D printing, also called additive manufacturing, can help businesses quickly innovate and lower costs for prototyping and manufacturing. The technology has applications across many industries, including dentistry, automotive manufacturing, defense, health care and construction.

With LAMBDA, launched last year with a U.S. Department of Commerce grant, Atre hopes to make this technology accessible to everyone. The alliance is working to open a business incubator and workforce training center in West Louisville, with the goal of helping minority-owned small businesses innovate and grow.

鈥淭he goal is to create a pathway for inclusive innovation,鈥 Atre said. 鈥淚t鈥檚 not where we are now鈥夆斺塱t鈥檚 how far can we go? And how fast are we hurtling toward that potential?鈥

Virtual Reality and Augmented Reality (VR/AR)

Virtual reality (VR) technology creates immersive simulations that allow you to explore new worlds or try new things. Augmented reality (AR) overlays those simulations on our real world 鈥 similar to Snapchat filters or 鈥淧ok茅mon Go. 鈥

Hui Zhang is using this technology to untangle virtual knots on a touchscreen computer. It鈥檚 a method of teaching mathematics in which computer-generated knots are dynamic, difficult math problems.

鈥淰R allows them to interact with the concept virtually, while learning the mathematical properties,鈥 said Zhang, an assistant professor of computer engineering and computer science.

He鈥檚 also using this technology to study human behavior. By pairing a person with a virtual conversational partner, his team monitors eye movements to see when both are paying attention.

鈥淲e use this virtual twin to study how we interact with a conversational partner,鈥 Zhang said. 鈥淲e want to understand the statistical, reliable pattern of
how we reach joint attention.鈥

Zhang predicts this work could have applications for children with autism, who often have a delay in their ability to reach joint attention. It also could be useful for training in negotiation or customer service.

Internet of Things (IoT)
You may already be familiar with the internet of things (IoT) concept through smart assistants like Amazon鈥檚 Alexa or Google Home. When connected with smart devices, they allow users to control other electronics with a simple voice command.

鈥淲e want to make everything smart,鈥 said Huacheng Zeng, an assistant professor of electrical and computer engineering.

But to unlock IoT鈥檚 full potential, there are still challenges to overcome. For example, there鈥檚 only so much radio spectrum available鈥夆斺塶ot enough for all the things we want to connect to the world wide web.

鈥淗ow can we provide internet access to those devices?鈥 Zeng asks.

Zeng has a career grant from the National Science Foundation to find solutions to that problem. He鈥檚 also invented a technology鈥夆斺塸atent-pending through the Commercialization EPI-Center鈥夆斺塼hat makes the existing spectrum more efficient by allowing devices to share. His invention also tackles security issues by jamming signals that would allow hackers to steal information.

Artifical Intelligence (AI)
Most jobs require a certain degree of intelligence. Whether that intelligence is human or artificial鈥夆斺墂ell, that鈥檚 a question for Dan Popa.

Popa is developing artificially intelligent robots that could work in manufacturing or nursing. The latter would serve as a nursing assistant, collecting information and retrieving cups of water so human nurses can focus on more important things.

鈥淭he robot that observes the person can document and log data,鈥 said Popa, a professor of electrical and computer engineering. 鈥滲ut it will not replace human care.鈥

The nursing assistant robot is patent-pending through the Commercialization EPI-Center. It鈥檚 currently being tested at the School of Nursing.

Popa understands people have concerns about artificial intelligence. If this has you worried that robots will come for jobs, don鈥檛. Most robots aren鈥檛 reliable enough yet and still need 鈥渃haperones鈥 to show them where to go, what to do and keep them out of trouble. And even if robots take over some jobs, Popa thinks they鈥檒l create new ones.

鈥淚 don鈥檛 believe the predictions that robots will replace everyone,鈥 Popa said.

Cryptocurrencies/Blockchain
You鈥檝e probably heard of bitcoin, one of many currently available cryptocurrencies. These cyber monies are increasingly popular in today鈥檚 digital economy as an alternative to tangible money, and they come in all different flavors.

鈥淪ome come with interest, some invest for you,鈥 said Roman Yampolskiy, an associate professor of computer science and computer engineering and director of the Cybersecurity Lab. 鈥淓ach comes with its own perk.鈥

Cryptocurrencies are built on blockchain technology, which is best described as a ledger spread across the thousands of systems all over the world. It鈥檚 an open, distributed and unchangeable log of transactions that encrypts and timestamps when the currency changes hands. That 鈥渦nchangeable鈥 nature gives the technologies potential uses across industries including banking, health care, media, retail and government.

Yampolskiy is looking at how we can use these transactions to send text and media messages.

鈥淭he decentralized nature of the blockchain allows power to be taken from the governments and corporations and returned to the people,鈥 Yampolskiy said. 鈥淚t is a powerful tool for fighting censorship, privacy violations and asset seizers.鈥

Preparing for a Social Hurricane
UofL鈥檚 own futurist, Nat Irvin, assistant dean for thought leadership and civic engagement in the College of Business, thinks technology will disrupt more than the economy alone. Here, he shares the double-sided storm he sees coming society鈥檚 way.

Two powerful forces of the future 鈥 an ever-expanding surge in technology and a dramatically different human population 鈥 are converging right before our eyes.

In the summer of 2016, I joined a couple of my baby-boomer friends to travel to a small town in Ohio ostensibly to view the remnants of a 2,000-year-old American Indian mound.

It was nearing dusk when we arrived and thus we were quite surprised to see so many young people who had also gathered to observe this part of our American history. But as we began our tour, we quickly discovered the young crowds were not there to see the ancient burial grounds. They were 鈥淧ok茅mon Go鈥 seekers, searching for futuristic augmented reality creatures like Pikachus, Squirtles and Rattatas. While we boomers were looking for the past, this next-gen crowd was searching for invisible creatures of the future that had nested themselves right where we stood.

We could not see the Pikachus, but the teens could. Using the lenses of their smartphone cameras, embedded with smart sensors and GPS coordinates, the mobile game players literally transformed the ancient American Indian burial grounds into a physical-world mirror image filled with virtual creatures. The fervor around 鈥淧ok茅mon Go,鈥 which swept the globe in 2016, has somewhat faded but the underlying convergence of the real world colliding with the virtual world was only the beginning.

As artifical intelligence (AI) becomes cheaper, we can expect our existing physical structures will be impacted by some aspect of augmented reality. Our computers will start to disappear, replaced by smart sensors embedded not only in our physical structures such as buildings, roads, cars, homes or centers of faith, but also in the clothing we wear, our shoes, the food we consume, diapers for our newborns, latrines that collect our waste, trees that we plant, pets that keep us company. Even our physical bodies will be transformed with some variations of smart sensors.

But that鈥檚 not all. The crowd of teens we witnessed that summer of 2016 also reflects a change in the human faces who might seek the Pikachus of the future, virtual or real. By 2020, the entire population of those under the age of 18 will be majority non-white, the entire age 30 and under population will also be majority non-white. Within 10 years, all of our existing structures鈥夆斺塧nd their supporting institutions led by humans鈥夆斺墂ill undergo dramatic changes, both virtual and real. We will experience a social hurricane.

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Baylee Pulliam leads research marketing and communications at UofL, building on her experience as an award-winning business, technology, health care and startups reporter. She is a proud product of the UofL College of Arts and Sciences, where she earned her undergraduate degree in English. She also holds an MBA, a Master of Arts in Organizational Leadership and is pursuing a Ph.D. in the latter with a focus on corporate innovation.