Skip to main content

Fast moving walkways could move 7,000 people per hour

Researchers at the Swiss Federal Institute of Technology in Lausanne (EPFL) researchers have been studying futuristic transport solutions for car-free urban centres and have come up with an optimal design for a network of accelerating moving walkways. This is not a new concept – the first moving walkways were seen in Chicago in 1893 and seven years later they were used at the world’s fair in Paris. They are also regularly used the world over in airports and transport terminals. As part of the PostCarW
November 28, 2016 Read time: 3 mins
Researchers at the Swiss Federal Institute of Technology in Lausanne (EPFL) researchers have been studying futuristic transport solutions for car-free urban centres and have come up with an optimal design for a network of accelerating moving walkways.

This is not a new concept – the first moving walkways were seen in Chicago in 1893 and seven years later they were used at the world’s fair in Paris. They are also regularly used the world over in airports and transport terminals.

As part of the PostCarWorld initiative, which aims to explore the future of mobility both through the role of the car and without cars, EPFL researchers have analysed the feasibility of fast moving walkways in an urban setting, with encouraging results.

The team’s task consisted of imagining a world or a city without private cars in which space designed for automobile use could be repurposed. Individual transport needs would be met by a combination of conventional methods such as buses, metros, trams, taxis, bikes, etc., or by more innovative methods like bike- or car-sharing or urban cable cars. The EPFL’s Transport and Mobility Laboratory studied accelerating moving walkways, which can travel up to 15 km/h, the average speed at which people travel through most large cities during rush hour, to see if they could compete with other means of transport.

The researchers used real data from Geneva in developing their mathematical model, exploring various configurations of speed, acceleration, length and width, as well as intersections and entry and exit points.

They focused on the feasibility of a network of moving walkways and attempted to come up with the optimal design, taking into account the road network, demand, the speed required to make the system competitive, energy consumption and operational and budgetary constraints.

Their ideal network begins with a small ring around a car-free urban centre and extends out along primary roads on 47 different links equipped with 10 gates for a total length of 32 kilometres. There are 37 intersections where expressways would be set up using bridges or underpasses. A walkway can handle 7,000 passengers per hour, while a roadway can accommodate between 750 and 1,800 vehicles.

According to the report authors, electric moving walkways represent a sustainable and eco-friendly transport system and their operating cost is similar to that of buses. “The main downside is the cost of construction. It will cost about as much to install one line as to build a new tram line,” says lead author Riccardo Scarinci. “But the cost could drop if the system were installed on a large scale. That’s why a network of walkways only makes sense in dense and highly congested cities.”

Michel Bierlaire, the director of the Transport and Mobility Laboratory, commented, “This study proves that the concept is credible and that a car-less, pedestrian-centric city is conceivable. This is a useful starting point for urban planners to evaluate the feasibility of accelerating moving walkways.”

Related Content

  • Opinion: Have we missed our moment to reinvent mass transport?
    September 16, 2020
    We need to focus on providing better mass transportation services during the COVID-19 pandemic - and work out how to help travellers to rapidly regain confidence in using them as lockdowns end
  • Jeddah juggles transport needs of residents, pilgrims and tourists
    December 22, 2015
    Mass pilgrimages, new tourists and a growing population lead Jeddah to seek some smart transport solutions as David Crawford finds out. Rationalising traffic movement and public transport in a major Middle Eastern business and tourist centre that is also a gateway for millions of religious pilgrims every year is the challenge for the 20-year Jeddah Strategic Plan and the Jeddah Public Transport Programme (JPTP) it spawned. The latter is costed at US$8bn.
  • UITP highlights mass transit changes
    October 25, 2022
    Increasingly, public transport passengers will no longer need to carry a dedicated smartcard ticket to travel, as technology enables virtually any type of contactless payment system to take over the role.
  • Transport technology transforming bus stops in Los Angeles
    January 20, 2012
    David Crawford reports on a pioneering blend of transport technology and aesthetic By gaining a design award before installation has even started, the US$6.9 million City of Santa Monica (California)'s Big Blue Bus Shelter and Branding Package has ensured early interest among what it expects to be a new wave of transit riders. The American Institute of Architects' Los Angeles chapter's recently conferred 'Next LA Citation Award for Architecture', given for design excellence in projects as yet unbuilt, comm