首页> 外文会议>Computers and Communications, 2005 10th IEEE Symposium on; Cartagena,Spain >Determining pulsed alternator thyristor converter firing angles to produce a desired launcher current
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Determining pulsed alternator thyristor converter firing angles to produce a desired launcher current

机译:确定脉冲交流发电机晶闸管变换器的触发角以产生所需的发射器电流

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Proposed electromagnetic launch systems using pulsed alternators usually employ a phase-angle-controlled thyristor converter to supply DC to the railgun launcher. By carefully choosing the firing angles of the individual thyristors, the system designers can control shape of the current pulse delivered to the launcher, thereby controlling projectile acceleration and magnetic energy recovery from the launcher after muzzle exit. This paper describes a simple method for determining the required phase angles for a specified launch current waveform, using a simplified equivalent controlled DC source model for the pulsed alternator and converter system. Once a desired current profile is chosen to deliver the required action to the projectile, the railgun equations are used to determine the required breech voltage profile. The thyristor firing angle vs. time to produce this breech voltage is then calculated from the equivalent DC source model. Improvements to the basic model incorporating field current decay and rotor speed reduction with time are discussed. The method has been embedded in a Mathcad/spl trade/ worksheet. Results from the simplified model show good agreement when compared to a detailed Saber/spl trade/ system simulation.
机译:提议的使用脉冲交流发电机的电磁发射系统通常采用相角控制的晶闸管转换器,以将直流电源提供给弹枪发射器。通过仔细选择各个晶闸管的触发角,系统设计人员可以控制传递到发射器的电流脉冲的形状,从而控制从枪口退出后的发射器的弹丸加速度和磁能回收。本文介绍了一种简单的方法,该方法使用简化的等效控制直流电源模型(用于脉冲交流发电机和转换器系统)来确定特定启动电流波形所需的相角。一旦选择了所需的电流曲线以将所需的动作传递到弹丸上,便用轨道炮方程式确定所需的后膛电压曲线。然后从等效直流电源模型中计算出产生该后膛电压的晶闸管触发角与时间的关系。讨论了对包含励磁电流衰减和转子速度随时间降低的基本模型的改进。该方法已嵌入Mathcad / spl贸易/工作表中。与详细的Saber / spl贸易/系统仿真相比,简化模型的结果显示出良好的一致性。

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