外文翻译---永磁牵引电机的崛起
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1、大连交通大学 2013 届本科生毕业设计(论文)外文翻译 外文原文 The Rise Of The Permanent-magnet TractioMotor Technology offering benefits in terms of mass, size and energy consumption, the permanent-magnet synchronous machine is increasingly being adopted for traction drives, despite the need for complex control systems and pot
2、ential failure modes. In the past couple of years, many of the bids for new rolling stock placed with major international suppliers have proposed the use of permanent-magnet synchronous traction motors, which are smaller and lighter than the three-phase induction motors that have dominated the marke
3、t in recent times. Permanent-magnet motors first came to prominence with the use of two powered bogies from Alstoms AGV in the V150 trainset which broke the world speed record on April 3 2007, but they have subsequently been used in a variety of applications, ranging from the Citadis-Dualis tram-tra
4、in to SBBs Twindexx double-deck inter-city trainsets (Table I). Although railway operators are often viewed as conservative in the adoption of new technologies, the designers and manufacturers of rail traction systems tend to capitalise on the latest drive technologies, which are rapidly deployed in
5、 service if they promise significant performance improvements. This was the case for the early choppers supplying series-connected DC traction motors, separately-excited DC motors, synchronous AC motors and drives (as used on the first generations of TGVs) and for the various generations of asynchro
6、nous (squirrel-cage) three-phase drives. As technology moved forward, traction drives became more efficient and more controllable, allowing better use of available adhesion while reducing energy consumption. The permanent-magnet synchronous machine, with its associated control electronics, represent
7、s the latest such advance in traction technology. Millions of small PMSMs are already being used in the transmissions of hybrid cars, thanks to their low mass and good controllability. Larger machines offer a similar potential to enhance the overall performance of the railway traction package. The t
8、echnology is now beginning to be introduced into a variety of new rolling stock, 大连交通大学 2013 届本科生毕业设计(论文)外文翻译 but the integration of PMSMs into traction packages presents some significant technical challenges which must be overcome. Fundamental requirements Petrol and diesel engines for automotive a
9、pplications generally require complex gearboxes to allow the prime mover to operate in the optimum speed band. By contrast, electric motors for rail traction are expected to operate effectively and efficiently over the entire speed range, allowing a permanent coupling to the axles and wheels, either
10、 directly or via a single ratio gearbox. This mechanically elegant solution results in highly reliable drives which need relatively little maintenance. Thus the first requirement placed on the design of traction motors is the ability to provide torque or tractive effort over a wide speed range, such
11、 as from 0 to 320 km/h. Whilst it is essential for the traction motor to operate reliably, it is equally important from the drivers and railway operators perspective that modern traction systems control the torque accurately and smoothly throughout the speed range. Excellent torque control results i
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