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Design optimization of a microsuperconducting magnetic energy storage system

机译:微超导磁储能系统的设计优化

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The design of a superconducting magnetic energy storage (SMES) device requires the determination of a current system that produces a magnetic field of a given magnetic energy and a low stray field outside the device. To optimize the design, the amount of conductor and the device volume is minimized. High-temperature superconductor technology is utilized. Quench conditions must be fulfilled. In order to solve the multiobjective optimization problem, two different methods have been used: the objective weighting method, which combines the two objective functions (conductor volume and device volume) into a new cost function by means of penalty coefficients, and one based on fuzzy logic. In both methods the (1+1) evolution strategy minimization algorithm has been utilized. Moreover, in order to improve the solution of the objective weighting method, the results given by the evolution strategy algorithm are used as the starting point of a deterministic method (standard SQP method). The results are compared and discussed.
机译:超导磁能存储(SMES)设备的设计需要确定在设备外部产生给定磁能磁场和低杂散场的电流系统。为了优化设计,应尽量减少导体数量和设备体积。利用高温超导体技术。必须满足骤冷条件。为了解决多目标优化问题,使用了两种不同的方法:一种目标加权方法,该方法通过惩罚系数将两个目标函数(导体体积和设备体积)组合为一个新的成本函数,以及一种基于模糊的方法。逻辑。两种方法都使用(1 + 1)进化策略最小化算法。此外,为了改进目标加权方法的求解,将进化策略算法给出的结果用作确定性方法(标准SQP方法)的起点。比较结果并进行讨论。

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