Wednesday, November 19, 2025

Underwater exoskeleton powers kicks to increase dive time


Divers could quickly be capable to get a fine addition to their flutter kicks due to an exoskeleton developed by researchers at Peking College (PU). By shouldering a few of the burden of underwater swimming, the gadget may additionally make scuba tanks last more.

Watching a diver glide by means of the water underneath the ocean’s floor makes the exercise look fairly calm and mild, however the course of really engages the most important muscle teams within the physique – the legs. All of that muscle activation requires oxygen for gasoline, which is offered by a diver’s tank. A diver utilizing an 80-cubic-ft tank at a depth of 65.6 ft can anticipate that oxygen to final, on common, about 35-50 minutes.

In an effort to spice up how a lot time a swimmer may keep underneath on one scuba tank, as a substitute of specializing in respiratory equipment, the PU researchers took a novel strategy: reducing the power expended whereas swimming and subsequently oxygen wanted by the diver.

The exoskeleton they created consists of a number of components. There are two sealed motor items that mount to the diver’s again. These are related to versatile Bowden cables that run right down to light-weight cuffs on the diver’s thighs and shanks. A waist strap stabilizes the complete unit which mounts outdoors a diver’s wetsuit. The whole system weighs about 9 kg (20 lb), with many of the mass utilized to the again of the diver.

Researchers fastidiously measured the totally different phases of a diver’s flutter kick to find out when the exoskeleton may assist probably the most

Peking College

The actual magic of the exoskeleton comes from the sensors embedded within the system referred to as Inertial Measurement Items (IMUs), which transmit the place of the legs to the motor. This enables the motor to sense the place within the flutter kick the legs are because the diver swims and alter the pressure on the Bowden cables as wanted. In the course of the downstroke of the kick, due to a built-in clutch, the motor engages and assists the movement. For the upstroke, the motor is disengaged in order that the system does not combat the diver’s restoration movement.

To check the system, the researchers connected an exoskeleton to 6 licensed divers who used it in a 50-meter (164-ft) swimming pool at a depth of two meters (6.6 ft). Every diver accomplished three 100-meter (328-ft) underwater swims utilizing a flutter kick each with and with out the exoskeleton and with it powered on and off. The check revealed spectacular outcomes, lowering quadriceps and calf activation by simply over 20%, and reducing air consumption by 22.7%.

The researchers say extra testing is required to additional refine the exoskeleton. They plan to make use of computational fluid dynamics to map water resistance on divers; check in additional dynamic real-world circumstances past the swimming pool; alter swimming speeds and types; experiment with totally different lighter-weight supplies; and apply extra sensors that may monitor metrics like coronary heart price along with air consumption.

“Our analysis extends the appliance boundary of wearable robots and introduces a brand-new state of affairs for exoskeleton research,” write the researchers within the examine, which has been revealed within the journal, IEEE Transactions on Robotics. “Primarily, powered exoskeletons present an enhancement of human performance, and particular environments or working circumstances don’t totally diminish their utility.

“Our work supplies a reference for the design and evaluation of future underwater assistive gadgets, with the potential to strengthen the connection between people and the ocean and to broaden the horizons of exploration.”

Supply: Peking College



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