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Devices offers long-distance, low-power underwater communication

MIT researchers have demonstrated the first system for ultra-low-power underwater networking and communication, which can transmit signals across kilometer-scale…

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MIT researchers have demonstrated the first system for ultra-low-power underwater networking and communication, which can transmit signals across kilometer-scale distances.

Credit: Courtesy of Fadel Adib, et. al.

MIT researchers have demonstrated the first system for ultra-low-power underwater networking and communication, which can transmit signals across kilometer-scale distances.

This technique, which the researchers began developing several years ago, uses about one-millionth the power that existing underwater communication methods use. By expanding their battery-free system’s communication range, the researchers have made the technology more feasible for applications such as aquaculture, coastal hurricane prediction, and climate change modeling.

“What started as a very exciting intellectual idea a few years ago — underwater communication with a million times lower power — is now practical and realistic. There are still a few interesting technical challenges to address, but there is a clear path from where we are now to deployment,” says Fadel Adib, associate professor in the Department of Electrical Engineering and Computer Science and director of the Signal Kinetics group in the MIT Media Lab.

Underwater backscatter enables low-power communication by encoding data in sound waves that it reflects, or scatters, back toward a receiver. These innovations enable reflected signals to be more precisely directed at their source. 

Due to this “retrodirectivity,” less signal scatters in the wrong directions, allowing for more efficient and longer-range communication.

When tested in a river and an ocean, the retrodirective device exhibited a communication range that was more than 15 times farther than previous devices. However, the experiments were limited by the length of the docks available to the researchers.

To better understand the limits of underwater backscatter, the team also developed an analytical model to predict the technology’s maximum range. The model, which they validated using experimental data, showed that their retrodirective system could communicate across kilometer-scale distances.

The researchers shared these findings in two papers which will be presented at this year’s ACM SIGCOMM and MobiCom conferences. Adib, senior author on both papers, is joined on the SIGCOMM paper by co-lead authors Aline Eid, a former postdoc who is now an assistant professor at the University of Michigan, and Jack Rademacher, a research assistant; as well as research assistants Waleed Akbar and Purui Wang, and postdoc Ahmed Allam. The MobiCom paper is also written by co-lead authors Akbar and Allam.

Communicating with sound waves

Underwater backscatter communication devices utilize an array of nodes made from “piezoelectric” materials to receive and reflect sound waves. These materials produce an electric signal when mechanical force is applied to them. 

When sound waves strike the nodes, they vibrate and convert the mechanical energy to an electric charge. The nodes use that charge to scatter some of the acoustic energy back to the source, transmitting data that a receiver decodes based on the sequence of reflections.

But because the backscattered signal travels in all directions, only a small fraction reaches the source, reducing the signal strength and limiting the communication range.

To overcome this challenge, the researchers leveraged a 70-year-old radio device called a Van Atta array, in which symmetric pairs of antennas are connected in such a way that the array reflects energy back in the direction it came from. 

But connecting piezoelectric nodes to make a Van Atta array reduces their efficiency. The researchers avoided this problem by placing a transformer between pairs of connected nodes. The transformer, which transfers electric energy from one circuit to another, allows the nodes to reflect the maximum amount of energy back to the source. 

“Both nodes are receiving and both nodes are reflecting, so it is a very interesting system. As you increase the number of elements in that system, you build an array that allows you to achieve much longer communication ranges,” Eid explains.

In addition, they used a technique called cross-polarity switching to encode binary data in the reflected signal. Each node has a positive and a negative terminal (like a car battery), so when the positive terminals of two nodes are connected and the negative terminals of two nodes are connected, that reflected signal is a “bit one.” 

But if the researchers switch the polarity, and the negative and positive terminals are connected to each other instead, then the reflection is a “bit zero.”

“Just connecting the piezoelectric nodes together is not enough. By alternating the polarities between the two nodes, we are able to transmit data back to the remote receiver,” Rademacher explains.

When building the Van Atta array, the researchers found that if the connected nodes were too close, they would block each other’s signals. They devised a new design with staggered nodes that enables signals to reach the array from any direction. With this scalable design, the more nodes an array has, the greater its communication range. 

They tested the array in more than 1,500 experimental trials in the Charles River in Cambridge, Massachusetts, and in the Atlantic Ocean, off the coast of Falmouth, Massachusetts, in collaboration with the Woods Hole Oceanographic Institution. The device achieved communication ranges of 300 meters, more than 15 times longer than they previously demonstrated.

However, they had to cut the experiments short because they ran out of space on the dock.

Modeling the maximum

That inspired the researchers to build an analytical model to determine the theoretical and practical communication limits of this new underwater backscatter technology.

Building off their group’s work on RFIDs, the team carefully crafted a model that captured the impact of system parameters, like the size of the piezoelectric nodes and the input power of the signal, on the underwater operation range of the device.

“It is not a traditional communication technology, so you need to understand how you can quantify the reflection. What are the roles of the different components in that process?” Akbar says.

For instance, the researchers needed to derive a function that captures the amount of signal reflected out of an underwater piezoelectric node with a specific size, which was among the biggest challenges of developing the model, he adds.

They used these insights to create a plug-and-play model into a which a user could enter information like input power and piezoelectric node dimensions and receive an output that shows the expected range of the system.

They evaluated the model on data from their experimental trials and found that it could accurately predict the range of retrodirected acoustic signals with an average error of less than one decibel. 

Using this model, they showed that an underwater backscatter array can potentially achieve kilometer-long communication ranges.

“We are creating a new ocean technology and propelling it into the realm of the things we have been doing for 6G cellular networks. For us, it is very rewarding because we are starting to see this now very close to reality,” Adib says.

The researchers plan to continue studying underwater backscatter Van Atta arrays, perhaps using boats so they could evaluate longer communication ranges. Along the way, they intend to release tools and datasets so other researchers can build on their work. At the same time, they are beginning to move toward commercialization of this technology. 

This research was funded, in part, by the Office of Naval Research, the Sloan Research Fellowship, the National Science Foundation, the MIT Media Lab, and the Doherty Chair in Ocean Utilization.

###

Written by Adam Zewe, MIT News

Paper: “Enabling Long-Range Underwater Backscatter via Van Atta Acoustic Networks”

http://www.mit.edu/~fadel/papers/VAB-paper.pdf

Paper: “The Underwater Backscatter Channel: Theory, Link Budget, and Experimental Validation”

http://www.mit.edu/~fadel/papers/PAB-theory-paper.pdf


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One more airline cracks down on lounge crowding in a way you won’t like

Qantas Airways is increasing the price of accessing its network of lounges by as much as 17%.

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Over the last two years, multiple airlines have dealt with crowding in their lounges. While they are designed as a luxury experience for a small subset of travelers, high numbers of people taking a trip post-pandemic as well as the different ways they are able to gain access through status or certain credit cards made it difficult for some airlines to keep up with keeping foods stocked, common areas clean and having enough staff to serve bar drinks at the rate that customers expect them.

In the fall of 2023, Delta Air Lines  (DAL)  caught serious traveler outcry after announcing that it was cracking down on crowding by raising how much one needs to spend for lounge access and limiting the number of times one can enter those lounges.

Related: Competitors pushed Delta to backtrack on its lounge and loyalty program changes

Some airlines saw the outcry with Delta as their chance to reassure customers that they would not raise their fees while others waited for the storm to pass to quietly implement their own increases.

A photograph captures a Qantas Airways lounge in Sydney, Australia.

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This is how much more you'll have to pay for Qantas lounge access

Australia's flagship carrier Qantas Airways  (QUBSF)  is the latest airline to announce that it would raise the cost accessing the 24 lounges across the country as well as the 600 international lounges available at airports across the world through partner airlines.

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Unlike other airlines which grant access primarily after reaching frequent flyer status, Qantas also sells it through a membership — starting from April 18, 2024, prices will rise from $600 Australian dollars ($392 USD)  to $699 AUD ($456 USD) for one year, $1,100 ($718 USD) to $1,299 ($848 USD) for two years and $2,000 AUD ($1,304) to lock in the rate for four years.

Those signing up for lounge access for the first time also currently pay a joining fee of $99 AUD ($65 USD) that will rise to $129 AUD ($85 USD).

The airline also allows customers to purchase their membership with Qantas Points they collect through frequent travel; the membership fees are also being raised by the equivalent amount in points in what adds up to as much as 17% — from 308,000 to 399,900 to lock in access for four years.

Airline says hikes will 'cover cost increases passed on from suppliers'

"This is the first time the Qantas Club membership fees have increased in seven years and will help cover cost increases passed on from a range of suppliers over that time," a Qantas spokesperson confirmed to Simple Flying. "This follows a reduction in the membership fees for several years during the pandemic."

The spokesperson said the gains from the increases will go both towards making up for inflation-related costs and keeping existing lounges looking modern by updating features like furniture and décor.

While the price increases also do not apply for those who earned lounge access through frequent flyer status or change what it takes to earn that status, Qantas is also introducing even steeper increases for those renewing a membership or adding additional features such as spouse and partner memberships.

In some cases, the cost of these features will nearly double from what members are paying now.

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Star Wars icon gives his support to Disney, Bob Iger

Disney shareholders have a huge decision to make on April 3.

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Disney's  (DIS)  been facing some headwinds up top, but its leadership just got backing from one of the company's more prominent investors.

Star Wars creator George Lucas put out of statement in support of the company's current leadership team, led by CEO Bob Iger, ahead of the April 3 shareholders meeting which will see investors vote on the company's 12-member board.

"Creating magic is not for amateurs," Lucas said in a statement. "When I sold Lucasfilm just over a decade ago, I was delighted to become a Disney shareholder because of my long-time admiration for its iconic brand and Bob Iger’s leadership. When Bob recently returned to the company during a difficult time, I was relieved. No one knows Disney better. I remain a significant shareholder because I have full faith and confidence in the power of Disney and Bob’s track record of driving long-term value. I have voted all of my shares for Disney’s 12 directors and urge other shareholders to do the same."

Related: Disney stands against Nelson Peltz as leadership succession plan heats up

Lucasfilm was acquired by Disney for $4 billion in 2012 — notably under the first term of Iger. He received over 37 million in shares of Disney during the acquisition.

Lucas' statement seems to be an attempt to push investors away from the criticism coming from The Trian Partners investment group, led by Nelson Peltz. The group, owns about $3 million in shares of the media giant, is pushing two candidates for positions on the board, which are Peltz and former Disney CFO Jay Rasulo.

HOLLYWOOD, CALIFORNIA - JUNE 14: George Lucas attends the Los Angeles Premiere of LucasFilms' "Indiana Jones and the Dial of Destiny" at Dolby Theatre on June 14, 2023 in Hollywood, California. (Photo by Axelle/Bauer-Griffin/FilmMagic)

Axelle/Bauer-Griffin/Getty Images

Peltz and Co. have called out a pair of Disney directors — Michael Froman and Maria Elena Lagomasino — for their lack of experience in the media space.

Related: Women's basketball is gaining ground, but is March Madness ready to rival the men's game?

Blackwells Capital is also pushing three of its candidates to take seats during the early April shareholder meeting, though Reuters has reported that the firm has been supportive of the company's current direction.

Disney has struggled in recent years amid the changes in media and the effects of the pandemic — which triggered the return of Iger at the helm in late 2022. After going through mass layoffs in the spring of 2023 and focusing on key growth brands, the company has seen a steady recovery with its stock up over 25% year-to-date and around 40% for the last six months.

Related: Veteran fund manager picks favorite stocks for 2024

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Another airline is making lounge fees more expensive

Qantas Airways is increasing the price of accessing its network of lounges by as much as 17%.

Published

on

Over the last two years, multiple airlines have dealt with crowding in their lounges. While they are designed as a luxury experience for a small subset of travelers, high numbers of people taking a trip post-pandemic as well as the different ways they are able to gain access through status or certain credit cards made it difficult for some airlines to keep up with keeping foods stocked, common areas clean and having enough staff to serve bar drinks at the rate that customers expect them.

In the fall of 2023, Delta Air Lines  (DAL)  caught serious traveler outcry after announcing that it was cracking down on crowding by raising how much one needs to spend for lounge access and limiting the number of times one can enter those lounges.

Related: Competitors pushed Delta to backtrack on its lounge and loyalty program changes

Some airlines saw the outcry with Delta as their chance to reassure customers that they would not raise their fees while others waited for the storm to pass to quietly implement their own increases.

A photograph captures a Qantas Airways lounge in Sydney, Australia.

Shutterstock

This is how much more you'll have to pay for Qantas lounge access

Australia's flagship carrier Qantas Airways  (QUBSF)  is the latest airline to announce that it would raise the cost accessing the 24 lounges across the country as well as the 600 international lounges available at airports across the world through partner airlines.

More Travel:

Unlike other airlines which grant access primarily after reaching frequent flyer status, Qantas also sells it through a membership — starting from April 18, 2024, prices will rise from $600 Australian dollars ($392 USD)  to $699 AUD ($456 USD) for one year, $1,100 ($718 USD) to $1,299 ($848 USD) for two years and $2,000 AUD ($1,304) to lock in the rate for four years.

Those signing up for lounge access for the first time also currently pay a joining fee of $99 AUD ($65 USD) that will rise to $129 AUD ($85 USD).

The airline also allows customers to purchase their membership with Qantas Points they collect through frequent travel; the membership fees are also being raised by the equivalent amount in points in what adds up to as much as 17% — from 308,000 to 399,900 to lock in access for four years.

Airline says hikes will 'cover cost increases passed on from suppliers'

"This is the first time the Qantas Club membership fees have increased in seven years and will help cover cost increases passed on from a range of suppliers over that time," a Qantas spokesperson confirmed to Simple Flying. "This follows a reduction in the membership fees for several years during the pandemic."

The spokesperson said the gains from the increases will go both towards making up for inflation-related costs and keeping existing lounges looking modern by updating features like furniture and décor.

While the price increases also do not apply for those who earned lounge access through frequent flyer status or change what it takes to earn that status, Qantas is also introducing even steeper increases for those renewing a membership or adding additional features such as spouse and partner memberships.

In some cases, the cost of these features will nearly double from what members are paying now.

Read More

Continue Reading

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