Reference articles on history, science, culture and more
Encyclopedia

SCMaglev

Japanese maglev system

Image credit is listed at the end of this article.

The SCMaglev (superconducting maglev, formerly called the MLU) is a magnetic levitation (maglev) railway system developed by Central Japan Railway Company (JR Central) and the Railway Technical Research Institute.

The SCMaglev uses an electrodynamic suspension (EDS) system for levitation, guidance, and propulsion.

In development since the 1960s, the SCMaglev system will be used in the Chūō Shinkansen rail line between Tokyo and Nagoya, Japan. The line, currently under construction, is scheduled to open in 2034 (after delays pushing back its original opening date of 2027.) JR Central is also seeking to sell or license the technology to foreign rail companies. The L0 Series, a prototype vehicle based on SCMaglev technology, holds the record for fastest crewed rail vehicle with a record speed of 603 km/h (375 mph).

01Technology

The SCMaglev system uses an electrodynamic suspension (EDS) system. The train's bogies have superconducting magnets installed, and the guideways contain two sets of metal coils. The current levitation system uses a series of coils wound into a "figure 8" along both walls of the guideway. These coils are cross-connected underneath the track.

As the train accelerates, the magnetic fields of its superconducting magnets induce a current into these coils due to the magnetic field induction effect. If the train were centered with the coils, the electrical potential would be balanced and no currents would be induced. However, as the train runs on rubber wheels at relatively low speeds, the magnetic fields are positioned below the center of the coils, causing the electrical potential to no longer be balanced. This creates a reactive magnetic field opposing the superconducting magnet's pole (in accordance with Lenz's law), and a pole above that attracts it. Once the train reaches 150 km/h (93 mph), there is sufficient current flowing to lift the train 100 mm (4 in) above the guideway.

These coils also generate guiding and stabilizing forces. Because they are cross-connected underneath the guideway, if the train moves off-center, currents are induced into the connections that correct its positioning. SCMaglev also uses a linear synchronous motor (LSM) propulsion system, which powers a second set of coils in the guideway.

MLX01 maglev train superconducting magnet bogie
MLX01 maglev train superconducting magnet bogie
Levitation and guidance coils
Levitation and guidance coils

02History

Japanese National Railways (JNR) began research on a linear propulsion railway system in 1962 with the goal of developing a train that could travel between Tokyo and Osaka in one hour. Shortly after Brookhaven National Laboratory patented superconducting magnetic levitation technology in the United States in 1969, JNR announced development of its own superconducting maglev (SCMaglev) system. The railway made its first successful SCMaglev run on a short track at its Railway Technical Research Institute in 1972. JR Central plans on exporting the technology, pitching it to potential buyers.

Miyazaki test track

In 1977, SCMaglev testing moved to a new 7 km test track in Hyūga, Miyazaki. By 1980, the track was modified from a "┴" shape to the "U" shape used today. In April 1987, JNR was privatized, and Central Japan Railway Company (JR Central) took over SCMaglev development.

In 1989, JR Central decided to build a better testing facility with tunnels, steeper gradients, and curves. After the company moved maglev tests to the new facility, the company's Railway Technical Research Institute began to allow testing of ground effect trains, an alternate technology based on aerodynamic interaction between the train and the ground, at the Miyazaki Test Track in 1999.

Yamanashi maglev test line

Construction of the Yamanashi Maglev Test Line began in 1990. The initial 18.4 km (11.4 mi) “priority section” in Tsuru, Yamanashi, opened in 1997, with MLX01 trains undergoing testing until the fall of 2011. At that point, the facility was closed to extend the line to 42.8 km (26.6 mi) and upgrade it to commercial specifications.

Since 1997, the Chuo Shinkansen has amassed over 2,044,000 miles of test runs, averaging roughly 2,000 kilometers per day. In one record-setting day, the SCMaglev traveled approximately 2,525 miles (4,062 km), far exceeding the expected daily mileage during routine operation.

ML100 at RTRI, October 2015
ML100 at RTRI, October 2015

03Commercial use

Japan

In 2009, Japan's Ministry of Land, Infrastructure, Transport and Tourism decided that the SCMaglev system was ready for commercial operation. In 2011, the ministry gave JR Central permission to operate the SCMaglev system on their planned Chūō Shinkansen linking Tokyo and Nagoya by 2034, and to Osaka by 2037. Construction is currently underway.

United States

Since 2010, JR Central has promoted the SCMaglev system in international markets, particularly the Northeast Corridor of the United States, as the Northeast Maglev. In 2013, Prime Minister Shinzō Abe met with U.S. President Barack Obama and offered to provide the first portion of the SC Maglev track free, a distance of about 40 miles (64 km). In 2016, the Federal Railroad Administration awarded $27.8 million to the Maryland Department of Transportation to prepare preliminary engineering and NEPA analysis for an SCMaglev train between Baltimore, Maryland, and Washington, D.C.

Australia

In late 2015, JR Central, Mitsui, and General Electric in Australia formed a joint venture named Consolidated Land and Rail Australia to provide a commercial funding model using private investors that could build the SC Maglev (linking Sydney, Canberra, and Melbourne), create eight new self-sustaining inland cities linked to the high-speed connection, and contribute to the community.

ML500 at RTRI, October 2015. This train type held the 1979 world speed record holder of 517 km/h (321 mph).
ML500 at RTRI, October 2015. This train type held the 1979 world speed record holder of 517 km/h (321 mph).
MLU001's superconducting magnet and a liquid helium tank on top of it
MLU001's superconducting magnet and a liquid helium tank on top of it

04Vehicles

The following table is based on data published by the Railway Technical Research Institute.

No.TypeNoteBuilt
LSM2001972
ML100Single-carDisplayed at the Railway Technical Research Institute1972
ML100ASingle-car1975
ML500 Single-car Displayed at the Railway Technical Research Institute 1977
ML500R Single-car Redesign after a ML500 caught fire at the Kyushu Test Track 1979
MLU001 1980
MLU002 1987
MLU002N 1993
MLX01-1Kōfu-end car with double-cusp headDisplayed at the SCMaglev and Railway Park1995
MLX01-11Standard intermediate car
MLX01-2Tokyo-end car with aero-wedge headDisplayed at the Yamanashi Prefectural Maglev Exhibition Center
MLX01-3Kōfu-end car with aero-wedge headDisplayed at the Railway Technical Research Institute1997
MLX01-21Long intermediate car
MLX01-12Standard intermediate car
MLX01-4Tokyo-end car with double-cusp head
MLX01-901AKōfu-end car with long headRemodeled and renamed from MLX01-901 in 20092002
MLX01-22ALong intermediate carRemodeled and renamed from MLX01-22 in 2009
L05 to 12-car configurationsCurrent world speed record holder for all trains.2013
Revised L07-car configurationCurrently operating in Yamanashi2020
M10Single-car testing began 2025.2025
MLX01-1 at SCMaglev and Railway Park, April 2013
MLX01-1 at SCMaglev and Railway Park, April 2013

05Records

The following tables are based on data published by the Railway Technical Research Institute.

Manned records

Speedkm/h (mph)TrainLocationDateComments
60 (37)ML100RTRI1972
400.8 (249)MLU001MiyazakiFebruary 1987Two-car train set. Former world speed record for maglev trains.
394.3 (245)MLU002MiyazakiNovember 1989Single-car
411 (255)MLU002NMiyazakiFebruary 1995Single-car
531 (330)MLX01Yamanashi12 December 1997Three-car train set. Former world speed record for all trains.
552 (343)MLX01Yamanashi14 April 1999Five-car train set. Former world speed record for all trains.
581 (361)MLX01Yamanashi2 December 2003Three-car train set. Former world speed record for all trains.
590 (367)L0 seriesYamanashi16 April 2015Seven-car train set. Former world speed record for all trains.
603 (375)L0 seriesYamanashi21 April 2015Seven-car train set. Current world speed record for all trains.

Unmanned records

Speedkm/h (mph)TrainLocationDateComments
504 (313.2)ML-500Miyazaki12 December 1979
517 (321.2)ML-500Miyazaki21 December 1979
352.4 (219.0)MLU001MiyazakiJanuary 1986Three-car train set
405.3 (251.8)MLU001MiyazakiJanuary 1987Two-car train set
431 (267.8)MLU002NMiyazakiFebruary 1994Single-car
550 (341.8)MLX01Yamanashi24 December 1997Three-car train set
548 (340.5)MLX01Yamanashi18 March 1999Five-car train set

Relative passing speed records

Speedkm/h (mph)TrainLocationDateComments
966 (600)MLX01YamanashiDecember 1998Former world relative passing speed record
1,003 (623)MLX01YamanashiNovember 1999Former world relative passing speed record
1,026 (638)MLX01Yamanashi16 November 2004Current world relative passing speed record
MLX01-3 at RTRI, October 2015
MLX01-3 at RTRI, October 2015
Watch videos about SCMaglevExplainers and documentaries on YouTube (opens in a new tab)

Sources and credits

This article is adapted from the Wikipedia article SCMaglev, written by its contributors and licensed under CC BY-SA 4.0. Fathomly has changed the layout, removed citation markers, navigation and maintenance notices, and adjusted punctuation. This adapted version is shared under the same license. For references, see the original article.

Images, from Wikimedia Commons:

Fathomly is not affiliated with or endorsed by the Wikimedia Foundation. Spotted a problem? Tell us.