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Inductance Computation Consideration of Induction Coil Launcher

机译:感应线圈发射器的电感计算考虑

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Inductance computation is an important issue for the design of the induction coil launcher (ICL). The self-inductance of the driving coil and the system equivalent inductance of ICL are investigated in the paper. Computation equations are presented. Both theoretical computation method and simulative computation method are employed for the inductance computation. Theoretical computation methods consider the influence of the per turn coil's distribution, and the simulative method doesn't consider the influence of per turn coil's distribution. Under the condition of static magnetic field, the deviation between the theoretical computation result ($L=150.46 mu$H) and the simulative result ( $L=147.22 mu$H) is low, which shows that per turn coil's distribution has little influence on the self-inductance of the driving coil. The theoretical computation method for the system equivalent inductance is also presented. As for the system equivalent inductance, the simulative result is 83.69 $mu$ H, and the theoretical result is 99.396 $mu$H. These mean that per turn coil's distribution has large influence on the system equivalent inductance under the condition of eddy current. The system equivalent inductance is much lower than the self-inductance of the driving coil. Therefore the system equivalent inductance should be employed to evaluate the factual working parameters of ICL In addition, computation formula for the mutual inductance between the driving coil and the armature are given out.
机译:电感计算是感应线圈发射器(ICL)设计的重要问题。研究了驱动线圈的自感和ICL的系统等效电感。给出了计算方程。理论计算方法和模拟计算方法均用于电感计算。理论计算方法考虑了每匝线圈分布的影响,而模拟方法没有考虑每匝线圈分布的影响。在静磁场条件下,理论计算结果($ L = 150.46 mu $ H)与模拟结果($ L = 147.22 mu $ H)之间的偏差很小,表明每匝线圈的分布影响很小关于驱动线圈的自感。给出了系统等效电感的理论计算方法。对于系统的等效电感,仿真结果为83.69 $ mu $ H,理论结果为99.396 $ mu $ H。这意味着在涡流条件下,每匝线圈的分布对系统等效电感有很大影响。系统等效电感远低于驱动线圈的自感。因此,应使用系统等效电感来评估ICL的实际工作参数。此外,还给出了驱动线圈与电枢之间互感的计算公式。

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