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Research on energy conversion efficiency of the reconfigurable reconnection electromagnetic launcher

机译:可重构重新连接电磁发射器能量转换效率研究

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摘要

Improving energy conversion efficiency (ECE) is of vital importance for the synchronous induction electromagnetic launcher (SIEL). For the launch process that the mass of payload is constant, there are many methods about the structural optimization of SIEL have been proposed to maximize the ECE. However, one optimized SIEL may be difficult to achieve same excellent launch effect when launching payloads of different masses. To realize the different launch purposes based on one SIEL device, this paper proposes a reconfigurable reconnection electromagnetic launcher (RREL) to effectively adjust the ECEs of payloads with different masses, the operable characteristics of RREL are described clearly through an example of a four-stage launcher model. Assume that the peak pulse current of the driving coils is 15 kA and the peak acceleration overload of the payload is 15 k-gees, the ECE characteristics of payload with the mass varing from 1 kg to 9 kg are simulated and analyzed through the finite-element method (FEM). The simulation results show that the payloads with different masses can achieve high ECEs through adjusting the reconfigurable operation states of the drive coil assemblies. For example, to obtain the best ECE of 1 kg payload, the switching states of the driving coil assemblies should be in "0 "; When the mass of payload is 4 kg, the switching states of the driving coil assemblies should be in "0 1"; Similarly, the optimal ECE of the 7 kg payload occurs in the switching states of "1 1". Finally, a small experimental platform is constructed to test. Although there are about 14.7% error exist between the experimental and the simulation results due to the mechanical losses, above technical scheme is feasible and has some reference significance for the development of SIEL design.
机译:提高能量转换效率(ECE)对同步感应电磁发射器(SIEL)至关重要。对于有效载荷质量是恒定的发射过程,已经提出了许多关于SIEL结构优化的方法来最大化ECE。然而,在发射不同群众的有效载荷时,可能难以实现相同的发射效果。为了实现基于一个SIEL装置的不同发射目的,本文提出了可重新配置的重新连接电磁发射器(RREL),以有效地调节具有不同质量的有效载荷的ECE,通过四阶段的示例清楚地描述了RREL的可操作特性发射模型。假设驱动线圈的峰值脉冲电流为15ka,并且有效载荷的峰值加速度过载是15 k-gees,通过有限的模拟和分析了从1kg到9kg的质量变化的有效载荷的ECE特性。元素方法(FEM)。仿真结果表明,具有不同质量的有效载荷可以通过调整驱动线圈组件的可重新配置操作状态来实现高ECE。例如,为了获得1千克有效载荷的最佳ECE,驱动线圈组件的切换状态应处于“0”;当有效载荷质量为4千克时,驱动线圈组件的开关状态应在“0 1”中;类似地,7kg有效载荷的最佳ECE发生在“1 1”的切换状态中。最后,构建了一个小型实验平台以测试。尽管在实验和仿真结果之间存在约14.7%的错误,但由于机械损耗,技术方案高于技术方案是可行的,并且对SIEL设计的发展具有一些参考意义。

著录项

  • 来源
    《Energy》 |2021年第2期|119088.1-119088.14|共14页
  • 作者单位

    School of Electrical Engineering Southwest Jiaotong University Chengdu 610031 China;

    School of Electrical Engineering Southwest Jiaotong University Chengdu 610031 China;

    School of Electrical Engineering Southwest Jiaotong University Chengdu 610031 China;

    School of Electrical Engineering Southwest Jiaotong University Chengdu 610031 China;

    School of Electrical Engineering Southwest Jiaotong University Chengdu 610031 China;

    School of Electrical Engineering Southwest Jiaotong University Chengdu 610031 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy conversion efficiency (ECE); Reconfigurable reconnection; electromagnetic launcher (RREL); Finite-element method (FEM);

    机译:能量转换效率(ECE);可重新配置重新连接;电磁发射器(RREL);有限元方法(FEM);

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