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Optimal design of HTS magnets for a modular toroid-type 2.5 MJ SMES using multi-grouped particle swarm optimization

机译:使用多组粒子群算法对模块化环形2.5 MJ SMES的HTS磁体进行优化设计

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摘要

Superconducting magnetic energy storage (SMES) is one of the promising power system applications of superconducting technology and has been actively researched and developed worldwide. Generally, there are three types of SMES-solenoid, multiple solenoid, and toroid. Among these types, toroid type seems to require more wires than solenoid type and multiple solenoid type at the same operating current. However toroid type reduces normal field in the wire and stray field dramatically because magnetic field is confined inside the coil. So, the total length of wire in the toroid type can be reduced in comparison with that in the solenoid type by increasing operating current. In this paper, a 2.5 MJ class SMES with HTS magnets of single solenoid, multiple solenoid and modular toroid type were optimized using a recently developed multi-modal optimization technique named multi-grouped particle swarm optimization (MGPSO). The objective of the optimization was to minimize the total length of HTS superconductor wires satisfying some equality and inequality constraints. The stored energy and constraints were calculated using 3D magnetic field analysis techniques and an automatic tetrahedral mesh generator. Optimized results were verified by 3D finite element method (FEM).
机译:超导磁储能器(SMES)是超导技术中有希望的电力系统应用之一,并且已在全球范围内积极研究和开发。通常,存在三种类型的SMES电磁阀,多螺线管和环形。在这些类型中,在相同的工作电流下,环形类型似乎比螺线管类型和多个螺线管类型需要更多的电线。但是,由于磁场被限制在线圈内部,因此环形线圈会大大降低导线中的法向场和杂散场。因此,与螺线管类型相比,通过增加工作电流,可以减小环形线圈中电线的总长度。在本文中,使用最近开发的称为多组粒子群优化(MGPSO)的多模式优化技术,对具有单螺线管,多螺线管和模块化环形类型的HTS磁体的2.5 MJ SMES进行了优化。优化的目的是使满足某些相等和不相等约束的HTS超导线的总长度最小。使用3D磁场分析技术和自动四面体网格生成器来计算存储的能量和约束。通过3D有限元方法(FEM)验证了优化结果。

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