Mayflower 400…First Smart Boat to Sail without Captain

The Mayflower 400 autonomous trimaran during sea trials in Plymouth this week BEN STANSALL AFP
The Mayflower 400 autonomous trimaran during sea trials in Plymouth this week BEN STANSALL AFP
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Mayflower 400…First Smart Boat to Sail without Captain

The Mayflower 400 autonomous trimaran during sea trials in Plymouth this week BEN STANSALL AFP
The Mayflower 400 autonomous trimaran during sea trials in Plymouth this week BEN STANSALL AFP

The "Mayflower 400" - the world's first intelligent ship - bobs gently in a light swell as it stops its engines in Plymouth Sound, off England's south-west coast, before self-activating a hydrophone designed to listen to whales.

The 15 m-long trimarans, which weighs nine tons and navigates with complete autonomy, is preparing for a transatlantic voyage. On its journey, the vessel - covered in solar panels - will study marine pollution and analyze plastic in the water, as well as track aquatic mammals.

Brett Phaneuf, co-founder of the charity ProMare and the mastermind behind the Mayflower project, told AFP that the ocean exerts "the most powerful force" on the global climate. Eighty percent of the underwater world remains unexplored.

Rosie Lickorish, a specialist in emerging technologies at IBM, one of the partners on the project born four years ago, said the unmanned craft provided an advantage in the "unforgiving environment." "Having a ship without people on board allows scientists to expand the area they can observe," she added.

A variety of technology and service providers have contributed to the project, with hundreds of individuals involved from nations including India, Switzerland and the United States, said Phaneuf.

The project would have cost 10 times the roughly $1 million invested by ProMare without the "global effort." The non-profit venture will offer the data gathered by the project free of charge.

The autonomous ship is scheduled to set sail on May 15 if weather is favorable and permission is granted by British authorities.

The journey to Plymouth, Massachusetts - the same voyage made by pilgrims on the original Mayflower in 1620 as they sought a new life in America - will take three weeks.

While the Mayflower 400 voyage had been delayed because of the pandemic, Phaneuf said at least no one will fall ill on the trip. "So it can take as long as it likes to do science," he said from the British port.

Sitting alongside him were three computer technicians checking the equipment remotely. Meirwen Jenking-Rees, a 21-year-old student engineer, checked the ship's engines before it headed out for a sea trial.

Construction of the trimaran, which is automated from the robotic rudder that steers it to the diesel generator that supplements its solar power, took a year.

Developing its "smart captain", the onboard artificial intelligence, took even longer as the computer has had to learn how to identify maritime obstacles by analyzing thousands of photographs.

The "Mayflower 400" also had to be taught how to avoid collisions.

It first went to sea for "supervised learning." Robotics and software engineer Ollie Thompson said that by running a "number of scenarios", the ship can learn "what are good actions, bad actions, so safe and unsafe."

In the coming phase, the boat will be able to correct itself "and then learn itself" like a human, he added.

The automated vessel uses its "eyes" and "ears" - a sophisticated system of six cameras and radar - to continue learning on its own.

Because of a lack of regulations around unmanned sailing, the Mayflower 400 is yet to be tested in rough seas or storms, a situation Jenking-Rees described as a "worst case scenario."

In simulated settings, however, the robotic craft has faced 50m waves.

Lickorish explained that the boat's artificial intelligence will be pivotal in conducting scientific experiments.

"It was trained with hundreds of hours of audio data to detect the presence of marine mammals, recognize the marine mammals, and actually tell us something about population distributions out in the open ocean," she added.

Analyzing the chemical composition of the water, measuring sea levels and collecting samples of microplastics are the ship's other missions. Similar robotic data collection has been ongoing in space for decades.
While the ship is totally autonomous, the team will monitor the ship 24 hours a day from England, ready to intervene remotely in case of danger.



Researchers: Surfboards with Bright Lights Could Deter Shark Attacks

This picture taken on October 16, 2024, shows surfers riding the waves on Maroubra Beach after authorities closed down two adjacent beaches in Sydney. (Photo by Saeed KHAN / AFP)
This picture taken on October 16, 2024, shows surfers riding the waves on Maroubra Beach after authorities closed down two adjacent beaches in Sydney. (Photo by Saeed KHAN / AFP)
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Researchers: Surfboards with Bright Lights Could Deter Shark Attacks

This picture taken on October 16, 2024, shows surfers riding the waves on Maroubra Beach after authorities closed down two adjacent beaches in Sydney. (Photo by Saeed KHAN / AFP)
This picture taken on October 16, 2024, shows surfers riding the waves on Maroubra Beach after authorities closed down two adjacent beaches in Sydney. (Photo by Saeed KHAN / AFP)

Covering your surfboard in bright lights sounds like an open invitation to great white sharks, but research released Tuesday by Australian scientists found it might actually stave off attacks.

Biologist Laura Ryan said the predator often attacked its prey from underneath, occasionally mistaking a surfer's silhouette for the outline of a seal.

Ryan and her fellow researchers showed that seal-shaped boards decked with bright horizontal lights were less likely to be attacked by great white sharks.

This appeared to be because the lights distorted the silhouette on the ocean's surface, making it appear less appetizing, AFP reported.

TRENDI "There is this longstanding fear of white sharks and part of that fear is that we don't understand them that well," said Ryan, from Australia's Macquarie University.

The study, published in the journal Current Biology, was conducted in the waters of South Africa's Mossel Bay, a popular great white feeding ground.

Seal-shaped decoys were strung with different configurations of LED lights and towed behind a boat to see which attracted the most attention.

Brighter lights were better at deterring sharks, the research found, while vertical lights were less effective than horizontal.

Ryan said the results were better than expected and is now in the process of building prototypes for use on the underside of kayaks and surfboards.

Australia has some of the world's most comprehensive shark management measures, including monitoring drones, shark nets and a tagging system that alerts authorities when a shark is near a crowded beach.

Ryan said her research could allow less invasive mitigation methods to be used.

More research was needed to see if bull and tiger sharks -- which have different predatory behavior -- responded to the lights in a similar way, the authors said.

There have been more than 1,200 shark incidents in Australia since 1791, of which 255 resulted in death, official data shows.

Great white sharks were responsible for 94 of those deaths.

NG