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The effects of system voltage on electric machine design

机译:系统电压对电机设计的影响

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Marine propulsion is essentially a variable speed — variable torque application. In the early days of the transition from purely mechanical drive trains to electrical versions, the only variable speed equipment available was powered by direct current. As the general understanding of power electronics and the successful development and deployment of technology has progressed, so too has the breadth of its applicability. Now, with systems capable of delivering usable alternating current from rectified sources over a wide range of frequencies, both synchronous and induction designs are making inroads into areas once thought to be the sole province of direct current machines. Modern power electronics systems are available that can deliver high current, high voltage, or both. The purpose of this paper is to present the case for choosing between the myriad of options so that the complexity of the rotating equipment connected to the output shaft is minimized, and that overall system reliability is not compromised.
机译:船舶推进本质上是变速-可变扭矩的应用。从纯机械传动系统过渡到电气版本的初期,直流电是唯一可用的变速设备。随着对电力电子学的普遍理解以及技术的成功开发和应用不断发展,其适用范围也越来越广。现在,借助能够在宽泛的频率范围内从整流电源提供可用交流电的系统,同步和感应设计均已进入曾经被认为是直流电机唯一的领域。可以提供高电流,高电压或同时提供高电流的现代电力电子系统。本文的目的是介绍在众多选项之间进行选择的情况,以使连接到输出轴的旋转设备的复杂性最小化,并且不损害整个系统的可靠性。

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