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A Novel Operation Principle of Air-core Pulsed Alternators to Achieve Multiple Railgun Launches

机译:一种新的空心脉冲交流发电机的新颖操作原理,实现多铁枪发射

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The pulsed power supply based on air-core pulsed alternator can output a current up to the megampere level in an extremely short time, with outstanding advantages of high energy density, high power density, and high integration degree. It has been a preferred power source for electromagnetic launch (EML) system. To achieve the required amplitude of the output current pulses, the field current of the alternator is often required to be up to tens of thousands ampere level. Therefore, the self-excitation method is often used to achieve the required field current in very short time. How to maintain high field current after the self-excitation process, is the key technology of the air-core pulsed alternator to achieve multiple railgun projectile launches in short time. However, the operation principles already proposed are only suitable to achieve single railgun projectile launch after the field current is built by self-excitation. If multiple railgun projectile launches are required, multiple self-excitations are required, which will not only require long time, but also causes a large amount of losses generated in the field winding. In this paper, a novel operation principle of the EML system, based on the air-core pulsed alternator, to achieve multiple electromagnetic railgun projectile launches after a self-excitation process is introduced. Based on the operation principle above, the changing trend of the field current is modeled and analyzed. Finally, the entire operation process of the EML system is simulated to verify the feasibility of the proposed operation principle.
机译:基于空心脉冲交流发电机的脉冲电源可以在极短的时间内输出电流直到兆内电平,具有高能量密度,高功率密度和高集成度的优势。它是电磁发射(EML)系统的首选电源。为了实现输出电流脉冲所需的幅度,交流发电机的场电流通常需要高达数万个安培水平。因此,自激励方法通常用于在非常短的时间内实现所需的场电流。如何在自激化过程之后保持高场电流,是空心脉冲交流发电机的关键技术,在短时间内实现多个轨道射弹发射。然而,已经提出的操作原理仅适合在通过自激励构建的田间电流之后实现单轨枪射弹发射。如果需要多个Railgun射弹发射,则需要多种自我激励,这不仅需要很长时间,而且还会导致现场绕组中产生的大量损失。本文介绍了一种基于空心脉冲交流发电机的EML系统的新颖操作原理,以实现自激化过程之后的多电磁轨道射弹。基于上面的操作原理,模型和分析了场电流的变化趋势。最后,模拟了EML系统的整个操作过程,以验证所提出的操作原理的可行性。

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