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Game changer: The first Olympic games in the cloud

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Game changer: The first Olympic games in the cloud


Hosted at an unprecedented time due to the coronavirus pandemic, the 2020 Summer Olympics (branded as Tokyo 2020, held in 2021, and officially called Games of the XXXII Olympiad) will be remembered for not just the extraordinary performances of the athletes, but also for being one of the most technologically advanced Games ever hosted.

Cloud technology was used for the first time at the Olympics and, as a technologist, I’m thrilled to see cloud technologies playing an instrumental role in driving the digital transformation of the Games. The cloud infrastructure enabled innovative technology applications, so the Games could successfully overcome many of the hurdles put in place by the pandemic while creating a new foundation for how the Olympic Games—and other major sporting events—will be broadcast, organized, and engage with fans in the future. Needless to say, we are already excited about the opportunities that cloud technology will unlock in future Olympiads.

The biggest technological change since satellite transmission

By way of example of how cloud technology revolutionized Tokyo 2020, we should look at one of the most important components—the global broadcast community serving millions of viewers. The Olympic Broadcasting Services (OBS) produced more than 9,500 hours of content during the Games, 30% more than during Rio 2016, and with some of the content in 8K for the first time. This year in Tokyo, when no spectators were allowed on-site, the role of broadcasters became even more essential for the Games and global fans. 

By collaborating with OBS to support service delivery for rights-holding broadcasters (RHBs) for the very first time, a robust and secure cloud platform called OBS Cloud offered new models for content delivery to drive operational efficiency and greater agility. Operating entirely in the cloud and demonstrating the tremendous flexibility that the technology offers, OBS Cloud was designed to drive real transformation in the media industry and to prepare it for all the opportunities presented by the digital era.

With the pandemic preventing fans from attending the Games, it was imperative that broadcasters globally had access to high-quality content that could be distributed across multiple platforms to help share the drama and the emotion of the Games. To that end, during Tokyo 2020, up to 9,000 short-form content clips were produced by the OBS Content+ crew to help enhance RHB coverage. The clips could be accessed by the RHBs’ digital and social media teams from any location in the world to supplement their own Olympic coverage. This technology enabled broadcasters to cover the Games in a more cost-effective, secure, and flexible way, from any location in the world, ensuring a steady and consistent flow of broadcast content throughout the Games, much to the delight of millions of fans hungry for a slice of the action!

It is easy to understand why this broadcast development excited Yiannis Exarchos, the OBS chief executive officer. In his view, the partnership with Alibaba Cloud has transformed how the Olympic Games were broadcast to the widest possible audience. He reflected on it being “the biggest technological change in the broadcasting industry for more than half a century since the introduction of satellite transmission.” That’s a remarkable landmark, given that satellite transmission was introduced to Olympic broadcast coverage for the first time as far back as 1964.

Also used as part of post-production workflow, the OBS had used the Content+ platform for remote editing and standards conversion, a feature that will be extended as a service to the RHBs for future Olympics.

Protected by the cloud—ensuring staff are safe

Of course,event organizers and working staff are central to the delivery of the Games, and Tokyo 2020 provided its own challenges for them due to the extreme summer heat. To illustrate the risks that Games workers faced, more than 8,000 people in Japan were taken to hospitals suffering from heatstroke symptoms between July 19 and 25 this year, while Tokyo 2020 officially kickstarted on July 23.  

I believe technology can help respond effectively to critical situations like this. That’s why we introduced a cloud-based solution to help reduce the risk of getting heatstroke for the onsite working staff exposed to the weather. Through an intelligent in-ear device, the technology helped keep track of staffers’ body temperature and heart rate. Based on this information and the surrounding heat index (including temperature, humidity, and direct or radiant sunlight), a cloud-based system identified the level of heatstroke risk in real time. Alerts were then sent to staff exposed to a high level of risk, along with recommended precautionary measures—such as drinking more water—to reduce the chances of getting heatstroke.

The innovation that was well-received by Hidemasa Nakamura, chief of the Main Operations Centre of the Tokyo Organizing Committee for the Olympic and Paralympic Games (TOCOG). Perhaps even more importantly, it was well-received by Games workers; as it turned out, Tokyo 2020 was reported to be one of the hottest Olympic Games in history.

Ongoing engagement with fans

Regretfully, the pandemic prevented global fans from being present at the Games. But technology can always play a positive role in addressing challenges. Last year, we spent significant time working with TOCOG on a digital remote fan engagement program called “Share the Passion.” Leveraging the cloud and digital editing technology, this fantastic project encouraged sports fans globally to support their favorite teams and athletes on a more personal level, wherever the fan or the team is based. It took advantage of AI-powered technology to aggregate real-time videos uploaded by fans on social media platforms, and broadcast them in venues to deliver cheers, support, and motivation for the athletes. You can imagine the excitement that this innovative solution provided, while projecting high-energy, positive vibes among fans and athletes alike with the audience’s cheers filling the arena.

Connection is irreplaceable, and Olympic Games are one of the best examples of connectivity between fans and athletes, different generations, and sports communities across borders. Holding true to this value, we created our first Cloud Pin, a cloud-based digital pin designed for broadcast and media professionals working relentlessly to cover the Games for all of us. The wearable digital device enables the contact-free exchange of information, and was designed to help media professionals working at the International Broadcasting Centre and Main Press Centre to connect with each other and exchange social media handles in a safe and interactive manner. Worn either as a badge or attached to a lanyard, it marries the convention of swapping contact details with real-time, cloud-based convenience.

Other exciting initiatives further encouraged fan and audience participation. For instance, the IOC launched The Olympic Store on Alibaba’s e-commerce platform Tmall. In addition to being a global store for fans seeking official Olympic-branded merchandise, it also acts as an information portal to help keep fans up to date with all the latest Olympic news and information. It’s a place where retail and commerce merge to further delight sports fans, while taking the Games into a new era of fan participation.

Unleashing athletes’ full potential

Other beneficiaries of cloud technology—and many would say the most important—were the athletes themselves, through a technology called 3D Athlete Tracking (3DAT).

In collaboration with Intel, 3DAT gives audiences professional insights into athletes’ performance as it happens. Without the need for motion-tracking sensors, 3DAT leverages standard video, AI, and computer vision to extract over 20 points in 3D on the athlete’s body, transforming those data into rich visualizations to enhance broadcasters’ storytelling for key events.

Looking ahead to even more exciting sporting experiences

During our first Summer Olympics, we are pleased to have taken our sponsorship role to a new level that goes beyond the traditional commercial package. As an exclusive worldwide partner for cloud services, we are honored to provide a new cloud-based foundation for how the Games were broadcast and operated in many ways. Similarly, we believe that the cloud will play an important role in reshaping the experience of how major sporting events would be broadcast, organized, and shared with fans in the future. We are proud of the role we played in helping Tokyo 2020 to reshape the sports and broadcast industry in an unprecedented way. And we are not stopping there; Tokyo 2020 was just the start of the digitalization journey of the Olympic Games.

This content was produced by Alibaba Cloud. It was not written by MIT Technology Review’s editorial staff.

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Why I became a TechTrekker

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group jumps into the air with snowy mountains in the background


My senior spring in high school, I decided to defer my MIT enrollment by a year. I had always planned to take a gap year, but after receiving the silver tube in the mail and seeing all my college-bound friends plan out their classes and dorm decor, I got cold feet. Every time I mentioned my plans, I was met with questions like “But what about school?” and “MIT is cool with this?”

Yeah. MIT totally is. Postponing your MIT start date is as simple as clicking a checkbox. 

Sofia Pronina (right) was among those who hiked to the Katla Glacier during this year’s TechTrek to Iceland.

COURTESY PHOTO

Now, having finished my first year of classes, I’m really grateful that I stuck with my decision to delay MIT, as I realized that having a full year of unstructured time is a gift. I could let my creative juices run. Pick up hobbies for fun. Do cool things like work at an AI startup and teach myself how to create latte art. My favorite part of the year, however, was backpacking across Europe. I traveled through Austria, Slovakia, Russia, Spain, France, the UK, Greece, Italy, Germany, Poland, Romania, and Hungary. 

Moreover, despite my fear that I’d be losing a valuable year, traveling turned out to be the most productive thing I could have done with my time. I got to explore different cultures, meet new people from all over the world, and gain unique perspectives that I couldn’t have gotten otherwise. My travels throughout Europe allowed me to leave my comfort zone and expand my understanding of the greater human experience. 

“In Iceland there’s less focus on hustle culture, and this relaxed approach to work-life balance ends up fostering creativity. This was a wild revelation to a bunch of MIT students.”

When I became a full-time student last fall, I realized that StartLabs, the premier undergraduate entrepreneurship club on campus, gives MIT undergrads a similar opportunity to expand their horizons and experience new things. I immediately signed up. At StartLabs, we host fireside chats and ideathons throughout the year. But our flagship event is our annual TechTrek over spring break. In previous years, StartLabs has gone on TechTrek trips to Germany, Switzerland, and Israel. On these fully funded trips, StartLabs members have visited and collaborated with industry leaders, incubators, startups, and academic institutions. They take these treks both to connect with the global startup sphere and to build closer relationships within the club itself.

Most important, however, the process of organizing the TechTrek is itself an expedited introduction to entrepreneurship. The trip is entirely planned by StartLabs members; we figure out travel logistics, find sponsors, and then discover ways to optimize our funding. 

two students soaking in a hot spring in Iceland

COURTESY PHOTO

In organizing this year’s trip to Iceland, we had to learn how to delegate roles to all the planners and how to maintain morale when making this trip a reality seemed to be an impossible task. We woke up extra early to take 6 a.m. calls with Icelandic founders and sponsors. We came up with options for different levels of sponsorship, used pattern recognition to deduce the email addresses of hundreds of potential contacts at organizations we wanted to visit, and all got scrappy with utilizing our LinkedIn connections.

And as any good entrepreneur must, we had to learn how to be lean and maximize our resources. To stretch our food budget, we planned all our incubator and company visits around lunchtime in hopes of getting fed, played human Tetris as we fit 16 people into a six-person Airbnb, and emailed grocery stores to get their nearly expired foods for a discount. We even made a deal with the local bus company to give us free tickets in exchange for a story post on our Instagram account. 

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The Download: spying keyboard software, and why boring AI is best

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🧠


This is today’s edition of The Download, our weekday newsletter that provides a daily dose of what’s going on in the world of technology.

How ubiquitous keyboard software puts hundreds of millions of Chinese users at risk

For millions of Chinese people, the first software they download onto devices is always the same: a keyboard app. Yet few of them are aware that it may make everything they type vulnerable to spying eyes. 

QWERTY keyboards are inefficient as many Chinese characters share the same latinized spelling. As a result, many switch to smart, localized keyboard apps to save time and frustration. Today, over 800 million Chinese people use third-party keyboard apps on their PCs, laptops, and mobile phones. 

But a recent report by the Citizen Lab, a University of Toronto–affiliated research group, revealed that Sogou, one of the most popular Chinese keyboard apps, had a massive security loophole. Read the full story. 

—Zeyi Yang

Why we should all be rooting for boring AI

Earlier this month, the US Department of Defense announced it is setting up a Generative AI Task Force, aimed at “analyzing and integrating” AI tools such as large language models across the department. It hopes they could improve intelligence and operational planning. 

But those might not be the right use cases, writes our senior AI reporter Melissa Heikkila. Generative AI tools, such as language models, are glitchy and unpredictable, and they make things up. They also have massive security vulnerabilities, privacy problems, and deeply ingrained biases. 

Applying these technologies in high-stakes settings could lead to deadly accidents where it’s unclear who or what should be held responsible, or even why the problem occurred. The DoD’s best bet is to apply generative AI to more mundane things like Excel, email, or word processing. Read the full story. 

This story is from The Algorithm, Melissa’s weekly newsletter giving you the inside track on all things AI. Sign up to receive it in your inbox every Monday.

The ice cores that will let us look 1.5 million years into the past

To better understand the role atmospheric carbon dioxide plays in Earth’s climate cycles, scientists have long turned to ice cores drilled in Antarctica, where snow layers accumulate and compact over hundreds of thousands of years, trapping samples of ancient air in a lattice of bubbles that serve as tiny time capsules. 

By analyzing those cores, scientists can connect greenhouse-gas concentrations with temperatures going back 800,000 years. Now, a new European-led initiative hopes to eventually retrieve the oldest core yet, dating back 1.5 million years. But that impressive feat is still only the first step. Once they’ve done that, they’ll have to figure out how they’re going to extract the air from the ice. Read the full story.

—Christian Elliott

This story is from the latest edition of our print magazine, set to go live tomorrow. Subscribe today for as low as $8/month to ensure you receive full access to the new Ethics issue and in-depth stories on experimental drugs, AI assisted warfare, microfinance, and more.

The must-reads

I’ve combed the internet to find you today’s most fun/important/scary/fascinating stories about technology.

1 How AI got dragged into the culture wars
Fears about ‘woke’ AI fundamentally misunderstand how it works. Yet they’re gaining traction. (The Guardian
+ Why it’s impossible to build an unbiased AI language model. (MIT Technology Review)
 
2 Researchers are racing to understand a new coronavirus variant 
It’s unlikely to be cause for concern, but it shows this virus still has plenty of tricks up its sleeve. (Nature)
Covid hasn’t entirely gone away—here’s where we stand. (MIT Technology Review)
+ Why we can’t afford to stop monitoring it. (Ars Technica)
 
3 How Hilary became such a monster storm
Much of it is down to unusually hot sea surface temperatures. (Wired $)
+ The era of simultaneous climate disasters is here to stay. (Axios)
People are donning cooling vests so they can work through the heat. (Wired $)
 
4 Brain privacy is set to become important 
Scientists are getting better at decoding our brain data. It’s surely only a matter of time before others want a peek. (The Atlantic $)
How your brain data could be used against you. (MIT Technology Review)
 
5 How Nvidia built such a big competitive advantage in AI chips
Today it accounts for 70% of all AI chip sales—and an even greater share for training generative models. (NYT $)
The chips it’s selling to China are less effective due to US export controls. (Ars Technica)
+ These simple design rules could turn the chip industry on its head. (MIT Technology Review)
 
6 Inside the complex world of dissociative identity disorder on TikTok 
Reducing stigma is great, but doctors fear people are self-diagnosing or even imitating the disorder. (The Verge)
 
7 What TikTok might have to give up to keep operating in the US
This shows just how hollow the authorities’ purported data-collection concerns really are. (Forbes)
 
8 Soldiers in Ukraine are playing World of Tanks on their phones
It’s eerily similar to the war they are themselves fighting, but they say it helps them to dissociate from the horror. (NYT $)
 
9 Conspiracy theorists are sharing mad ideas on what causes wildfires
But it’s all just a convoluted way to try to avoid having to tackle climate change. (Slate $)
 
10 Christie’s accidentally leaked the location of tons of valuable art 🖼📍
Seemingly thanks to the metadata that often automatically attaches to smartphone photos. (WP $)

Quote of the day

“Is it going to take people dying for something to move forward?”

—An anonymous air traffic controller warns that staffing shortages in their industry, plus other factors, are starting to threaten passenger safety, the New York Times reports.

The big story

Inside effective altruism, where the far future counts a lot more than the present

" "

VICTOR KERLOW

October 2022

Since its birth in the late 2000s, effective altruism has aimed to answer the question “How can those with means have the most impact on the world in a quantifiable way?”—and supplied methods for calculating the answer.

It’s no surprise that effective altruisms’ ideas have long faced criticism for reflecting white Western saviorism, alongside an avoidance of structural problems in favor of abstract math. And as believers pour even greater amounts of money into the movement’s increasingly sci-fi ideals, such charges are only intensifying. Read the full story.

—Rebecca Ackermann

We can still have nice things

A place for comfort, fun and distraction in these weird times. (Got any ideas? Drop me a line or tweet ’em at me.)

+ Watch Andrew Scott’s electrifying reading of the 1965 commencement address ‘Choose One of Five’ by Edith Sampson.
+ Here’s how Metallica makes sure its live performances ROCK. ($)
+ Cannot deal with this utterly ludicrous wooden vehicle
+ Learn about a weird and wonderful new instrument called a harpejji.



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Why we should all be rooting for boring AI

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Why we should all be rooting for boring AI


This story originally appeared in The Algorithm, our weekly newsletter on AI. To get stories like this in your inbox first, sign up here.

I’m back from a wholesome week off picking blueberries in a forest. So this story we published last week about the messy ethics of AI in warfare is just the antidote, bringing my blood pressure right back up again. 

Arthur Holland Michel does a great job looking at the complicated and nuanced ethical questions around warfare and the military’s increasing use of artificial-intelligence tools. There are myriad ways AI could fail catastrophically or be abused in conflict situations, and there don’t seem to be any real rules constraining it yet. Holland Michel’s story illustrates how little there is to hold people accountable when things go wrong.  

Last year I wrote about how the war in Ukraine kick-started a new boom in business for defense AI startups. The latest hype cycle has only added to that, as companies—and now the military too—race to embed generative AI in products and services. 

Earlier this month, the US Department of Defense announced it is setting up a Generative AI Task Force, aimed at “analyzing and integrating” AI tools such as large language models across the department. 

The department sees tons of potential to “improve intelligence, operational planning, and administrative and business processes.” 

But Holland Michel’s story highlights why the first two use cases might be a bad idea. Generative AI tools, such as language models, are glitchy and unpredictable, and they make things up. They also have massive security vulnerabilities, privacy problems, and deeply ingrained biases.  

Applying these technologies in high-stakes settings could lead to deadly accidents where it’s unclear who or what should be held responsible, or even why the problem occurred. Everyone agrees that humans should make the final call, but that is made harder by technology that acts unpredictably, especially in fast-moving conflict situations. 

Some worry that the people lowest on the hierarchy will pay the highest price when things go wrong: “In the event of an accident—regardless of whether the human was wrong, the computer was wrong, or they were wrong together—the person who made the ‘decision’ will absorb the blame and protect everyone else along the chain of command from the full impact of accountability,” Holland Michel writes. 

The only ones who seem likely to face no consequences when AI fails in war are the companies supplying the technology.

It helps companies when the rules the US has set to govern AI in warfare are mere recommendations, not laws. That makes it really hard to hold anyone accountable. Even the AI Act, the EU’s sweeping upcoming regulation for high-risk AI systems, exempts military uses, which arguably are the highest-risk applications of them all. 

While everyone is looking for exciting new uses for generative AI, I personally can’t wait for it to become boring. 

Amid early signs that people are starting to lose interest in the technology, companies might find that these sorts of tools are better suited for mundane, low-risk applications than solving humanity’s biggest problems.

Applying AI in, for example, productivity software such as Excel, email, or word processing might not be the sexiest idea, but compared to warfare it’s a relatively low-stakes application, and simple enough to have the potential to actually work as advertised. It could help us do the tedious bits of our jobs faster and better.

Boring AI is unlikely to break as easily and, most important, won’t kill anyone. Hopefully, soon we’ll forget we’re interacting with AI at all. (It wasn’t that long ago when machine translation was an exciting new thing in AI. Now most people don’t even think about its role in powering Google Translate.) 

That’s why I’m more confident that organizations like the DoD will find success applying generative AI in administrative and business processes. 

Boring AI is not morally complex. It’s not magic. But it works. 

Deeper Learning

AI isn’t great at decoding human emotions. So why are regulators targeting the tech?

Amid all the chatter about ChatGPT, artificial general intelligence, and the prospect of robots taking people’s jobs, regulators in the EU and the US have been ramping up warnings against AI and emotion recognition. Emotion recognition is the attempt to identify a person’s feelings or state of mind using AI analysis of video, facial images, or audio recordings. 

But why is this a top concern? Western regulators are particularly concerned about China’s use of the technology, and its potential to enable social control. And there’s also evidence that it simply does not work properly. Tate Ryan-Mosley dissected the thorny questions around the technology in last week’s edition of The Technocrat, our weekly newsletter on tech policy.

Bits and Bytes

Meta is preparing to launch free code-generating software
A version of its new LLaMA 2 language model that is able to generate programming code will pose a stiff challenge to similar proprietary code-generating programs from rivals such as OpenAI, Microsoft, and Google. The open-source program is called Code Llama, and its launch is imminent, according to The Information. (The Information

OpenAI is testing GPT-4 for content moderation
Using the language model to moderate online content could really help alleviate the mental toll content moderation takes on humans. OpenAI says it’s seen some promising first results, although the tech does not outperform highly trained humans. A lot of big, open questions remain, such as whether the tool can be attuned to different cultures and pick up context and nuance. (OpenAI)

Google is working on an AI assistant that offers life advice
The generative AI tools could function as a life coach, offering up ideas, planning instructions, and tutoring tips. (The New York Times)

Two tech luminaries have quit their jobs to build AI systems inspired by bees
Sakana, a new AI research lab, draws inspiration from the animal kingdom. Founded by two prominent industry researchers and former Googlers, the company plans to make multiple smaller AI models that work together, the idea being that a “swarm” of programs could be as powerful as a single large AI model. (Bloomberg)

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