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Very high voltage, ultra-high power density, rotating electrical machines as compact pulsed power supplies

机译:非常高的电压,超高功率密度,旋转电机作为紧凑型脉冲电源

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Summary form only given, as follows. This paper presents several novel technological concepts for compact, high-voltage, pulsed power supplies for near-term and future military systems, as well as for commercial applications developed at the Center for Electromechanics at The University of Texas at Austin. The choice for electrical rotating converters arises from the gap of several orders in magnitude between the levels of energy density stored kinetically and the energy density stored in magnetic, or at even lower levels, in the electric field. Such compact power supplies represent, by their designs, hybrid systems comprising two or three stages in which the voltage is amplified. In general, the first stage is a modified compulsator providing the given energy per pulse at high current and a medium voltage. The second stage represents a very high voltage capacitor as a component of a resonant system, delivering an output at a 200 kV to over 800 kV level. Cascaded transformers with different insulation connections and resonance transformers provide the means of achievements for the second stage. Even inside the compulsator, there are two stages cascade-connected, leading to high voltages. The first one is magnetically independent (decoupled) from the second one and, being short-circuited, produces an extremely high magneto-motive force which can induce often a rotation by 180:, a very large voltage in the second winding. A ferro-electrical capacitor in a resonant mode completes the third stage, leading to voltages up to one million volts. Practical data and comparative results are given and a comparison with the state-of-the-art machine shows that the presented designs are very advantageous and will represent a fundamental advancement in the power supplies technology.
机译:摘要只给出,如下所述。本文为近期和未来的军事系统提供了几种紧凑,高压,脉冲电源的新型技术概念,以及在奥斯汀德克萨斯大学的机电学中心开发的商业应用。电动旋转转换器的选择在电场中存储的能量密度和存储在磁场中的能量密度和甚至更低的水平之间的幅度之间的幅度之间的幅度幅度的幅度幅度的幅度。这种紧凑型电源由其设计表示混合系统,其包括两个或三个阶段,其中电压被放大。通常,第一阶段是经修改的强制性,在高电流和中电压下为每个脉冲提供给定的能量。第二级表示作为谐振系统的组件的非常高的电压电容器,将200kV的输出输出到超过800kV水平。具有不同绝缘连接和共振变压器的级联变压器提供了第二阶段的成就手段。即使在迫导者内,也有两个级联连接的阶段,导致高电压。第一个是从第二个磁性独立(去耦)并且短路,产生极高的磁动力,其可以诱导通常在第二绕组中的非常大的电压旋转180:。谐振模式中的铁电容器完成第三阶段,导致高达100万伏的电压。给出了实际数据和比较结果,并与最先进的机器的比较表明,所提出的设计是非常有利的,并将代表电源技术的基本进步。

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