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Multiobjective Optimization of Multistage Synchronous Induction Coilgun Based on NSGA-II

机译:基于NSGA-II的多级同步感应线圈枪多目标优化

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The structure and trigger control strategy have become the most important factors that restrict the performance of the multistage synchronous induction coilgun (MSSICG). However, it is still a difficult task to design MSSICG under overload constraint due to coupling between the multiple parameters. In this paper, the maximization of the emission efficiency and acceleration stationarity is treated as a multiobjective optimization problem. By analyzing the relationship between the number of turns and the other structural parameters of the launch, the multiobjective optimization model of MSSICG is established by the current filament method which was verified by the experimental data and finite-element method. And then the second generation nondominated sorting genetic algorithm (NSGA-II) and multiobjective particle swarm optimization (MOPSO) were employed to optimize the model in order to maximize the energy transfer efficiency while achieving the smooth acceleration of the armature. With the formulated optimization model, a five-stage synchronous induction coilgun is optimized as a special case. A decision-making procedure based on the fuzzy membership function is used for obtaining best compromise solution from the set of Pareto-solutions obtained through NSGA-II and MOPSO. In addition, the optimization performance of the proposed multiobjective optimization model and the single-objective optimization model of the MSSICG was compared. The result of optimization shows that the proposed multiobjective optimization model of MSSICG can effectively improve the performance of the coilgun compared with the single-objective optimization model which takes of the launch velocity and overload acceleration as the combination objective function or only the launch velocity.
机译:结构和触发控制策略已成为限制多级同步感应线圈枪(MSSICG)性能的最重要因素。但是,由于多个参数之间的耦合,在过载约束下设计MSSICG仍然是一项艰巨的任务。在本文中,将排放效率和加速平稳性最大化视为一个多目标优化问题。通过分析匝数与发射的其他结构参数之间的关系,通过电流细丝法建立了MSSICG的多目标优化模型,并通过实验数据和有限元方法进行了验证。然后,采用第二代非支配排序遗传算法(NSGA-II)和多目标粒子群优化(MOPSO)对模型进行优化,以在实现电枢平滑加速的同时最大化能量传递效率。通过制定的优化模型,特例对五级同步感应线圈枪进行了优化。基于模糊隶属度函数的决策程序用于从通过NSGA-II和MOPSO获得的一组Pareto解中获得最佳折衷解。此外,比较了所提出的多目标优化模型和MSSICG的单目标优化模型的优化性能。优化结果表明,与以发射速度和过载加速度为组合目标函数或仅以发射速度为目标的单目标优化模型相比,所提出的MSSICG多目标优化模型可以有效地提高螺旋炮的性能。

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