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Analysis and optimal design of a resonant switching converter for space applications.

机译:用于空间应用的谐振开关转换器的分析和优化设计。

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摘要

The design of converters for space applications is subject to a number of unusual constraints, such as low volume and weight, high efficiency operation, minimum components stress, low noise interference and resistance to ionizing radiation. The diode clamped series resonant converter (DCSRC) can be designed to satisfy some of the design constraints. A new approach in the analysis of the DCSRC, and a systematic way of designing for high efficiency and minimum component stress is presented. The direct relationship between the phase plane and the resonant wave shapes allows us to synthesize the closed-form solution and generate the output plane, which relates the normalized output current to the normalized output voltage for any load and any ratio of switching to resonant frequencies. The converter operation is optimized by superimposing the functions that describe the transistor stress and resonant tank component stress on the output plane. Experimental results are in good agreement with both the mathematical model and simulation. The effects of ionizing radiation on the converter performance under simulated space radiation conditions is also investigated.
机译:用于空间应用的转换器的设计受到许多异常约束的约束,例如体积小,重量轻,运行效率高,部件应力最小,噪声干扰小以及对电离辐射的抵抗力。可以将二极管钳位串联谐振转换器(DCSRC)设计为满足某些设计约束。提出了一种分析DCSRC的新方法,并提出了一种设计高效,最小部件应力的系统方法。相平面和谐振波形之间的直接关系使我们能够合成闭式解并生成输出平面,该输出平面将归一化输出电流与归一化输出电压与归一化输出电压相关联,以适应任何负载以及切换到谐振频率的任何比率。通过在输出平面上叠加描述晶体管应力和谐振储能元件应力的函数,可以优化转换器的工作。实验结果与数学模型和仿真均吻合良好。还研究了电离辐射对模拟空间辐射条件下转换器性能的影响。

著录项

  • 作者

    Quintero Francisco Javier.;

  • 作者单位
  • 年度 1990
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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