DocumentCode
412827
Title
Overview of the general atomics urban Maglev technology development program
Author
Gurol, Sam ; Baldi, Bob
Author_Institution
General Atomics, San Diego, CA, USA
fYear
2004
fDate
8-8 April 2004
Firstpage
187
Lastpage
191
Abstract
General atomics is developing urban Maglev technology sponsored by the Federal Transit Administration and funded under the Transportation Equity Act for the 21/sup st/ Century (TEA- 21). The system is levitated, propelled, and guided by electromagnetic forces. Levitation is achieved by using simple, passive permanent magnets arranged in a "Halbach" array configuration. Propulsion, and guidance are achieved by a linear synchronous motor mounted on the track. The uniqueness of the approach is its simplicity, ruggedness, and performance, including 10% grade, 18.3 m (60 ft.) turn radius, one-inch levitation gap, and quiet operation. Use of elevated guideways, coupled with the quiet operation of the system, eliminates the need to tunnel underground for noise-abatement, and can result in significantly lower system costs. We have built full-scale hardware to demonstrate the levitation, propulsion, guidance, and location detection systems. We are currently building a 120 m (400 ft.) test track with a full-scale chassis and power system at general atomics in San Diego. CA. The chassis and power systems have already been built and are under-going initial testing. The track is completed for dynamic testing in 2004. This paper reports on the overall program progress to date and description of the planned testing.
Keywords
electromagnetic forces; legislation; linear synchronous motors; magnetic levitation; noise abatement; permanent magnets; propulsion; rail traffic; 120 m; 18.3 m; Halbach array configuration; dynamic testing; electromagnetic forces; general atomics; linear synchronous motor; location detection systems; magnetic levitation; noise-abatement; passive permanent magnets; propulsions; urban Maglev technology; Electromagnetic forces; Electromagnetic launching; Magnetic levitation; Permanent magnets; Power system dynamics; Power systems; Propulsion; Synchronous motors; System testing; US Department of Transportation;
fLanguage
English
Publisher
ieee
Conference_Titel
Rail Conference, 2004. Proceedings of the 2004 ASME/IEEE Joint
Conference_Location
Baltimore, MD, USA
Print_ISBN
0-7918-4163-4
Type
conf
Filename
1300918
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