Skip to main content

Hyped has hyperloop hopes

Student group says it made serious progress with asynchronous motors this year
By David Arminas May 20, 2020 Read time: 2 mins
Linear induction motors with multiple poles help achieve maximum thrust, says Hyped

Hyped, a student group at Scotland’s University of Edinburgh, claims to have pushed forward the technology that could make the hyperloop concept a reality.

Hyped says it has produced in the past several months a more efficient linear induction motor (LIM), a stronger and lighter chassis and an improved braking system.

Hyperloop - a proposed network of near-vacuum steel tubes for people and cargo in magnetically levitating pods - could cover the 650km between Edinburgh and London in around 45 minutes, according to advocates of the system. The fastest trains take just under four and half hours.

Hyped said it made serious progress with asynchronous motors this year, removing the need for a rotating rotor which had previously limited the maximum speed.

LIMs with multiple poles help achieve maximum thrust and efficiency while reducing the static end-effects.

A complex modular power system supplies these motors. By separating the power source from the series connection components, Hyped said it has ensured minimum risk for those working on the project.

Accommodating the powerful LIMs required an ultra-strong chassis without compromising on weight: Hyped produced a 1.5m-long chassis that weighed just 15kg and was comprised of material from last year’s chassis.

Implementing a sandwich structure of carbon-fibre reinforced polymer laminates around an aluminium honeycomb core had worked very well in the past.

However, due to the large forces of attraction created by the newly improved LIMs, additional stiffening was required and achieved with composite panels.

Epoxies and polyurethanes are typically used to attach the panels. But Hyped’s engineers used a methacrylate adhesive to achieve a 33.2% weight reduction - even with the composite panels added. This resulted in a strong and lightweight structure.

A reliable, strong and compact braking system was achieved this year with a primary system of symmetric, magnetic brakes.

Magnets attached to a moving hyperloop pod will generate a magnetic field that changes relative to the conductive aluminium I-beam. This induces a magnetic field in the rail that will oppose the pod’s motion and decelerate it.

This system doesn’t produce fine particulates during braking because it removes all direct contact, using magnetic forces instead, Hyped says. A secondary system of friction brakes is used for low speeds where magnetic breaking is less effective.

Related Content

  • Variable message signs continue to deliver travel information
    February 2, 2012
    Arguably the 'face' of ITS, variable message signs are far from being a passing solution
  • Use a scooter - wear a helmet!
    April 4, 2022
    UK parliamentary group recommends mandatory helmets and no riders under 16 years old
  • The sunshine subsidy for Colorado’s tollways
    January 10, 2014
    David Crawford reports on energy cost cutting on US highways. Just over a year after switch-on and with two global awards under its belt, the longest solar-powered toll road in the US is generating heightened interest in highway applications of alternative energy. The E-407, which loops around the eastern perimeter of the Denver metropolitan area in Colorado, won the International Bridge, Tunnel and Turnpike Association (IBTTA) President’s Overall Award for Excellence at its September 2013 Annual Meeting in
  • Remote remedies help US authorities identify bridge deficiencies
    September 6, 2017
    Every day 185 million vehicles – cars, trucks, school buses, emergency response units - cross one or more of America’s 55,710 'structurally compromised' steel and concrete road bridges, the highest concentration of which are in Iowa (nearly 5,000), Pennsylvania and Oklahoma. Nearly 2,000 of these crossings are located on interstate highways, according to the American Road and Transportation Builders Association's recent analysis of the US Department of Transportation's 2016 National Bridge Inventory.