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Electromagnetic optimization design of a HTS magnet using the improved hybrid genetic algorithm

机译:改进混合遗传算法的高温超导磁体电磁优化设计

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The genetic algorithm (GA) is an efficient method in the optimization of superconducting magnets, but there are some limitations of the GA applied to practice design of superconducting magnet, such as poor local search ability, premature convergence, etc. An improved hybrid genetic algorithm is developed by combination of the sequential quadratic programming (SQP). A high temperature superconducting (HTS) magnet by Bi-2223/Ag tape is designed through the improved hybrid GA. A new configuration of the HTS magnet which can reduce the winding volume and become more convenient to construct is suggested with consideration of the constraints, such as central magnetic filed, critical current characteristic, storage energy, and so on.
机译:遗传算法是一种优化超导磁体的有效方法,但是遗传算法在超导磁体实践设计中存在一些局限性,例如局部搜索能力差,收敛早等。改进的混合遗传算法通过顺序二次编程(SQP)的组合开发。通过改进的混合遗传算法设计了Bi-2223 / Ag胶带制成的高温超导(HTS)磁体。考虑到中心磁场,临界电流特性,储能等约束条件,提出了一种新型的HTS磁体结构,可以减少绕组体积,使构造更方便。

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