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The satellite layout optimization design approach for minimizing the residual magnetic flux density of micro- and nano-satellites

机译:最小化微卫星和纳米卫星的剩余磁通密度的卫星布局优化设计方法

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摘要

With the rapid development of space technology, more and more complex micro- and nano-satellite missions have been proposed for more sophisticated objectives such as remote sensing and space astronomy. To meet these mission requirements, the satellites need to maintain a highly precise attitude control capability. However, the satellite residual magnetic moment, as the dominant disturbance torque, greatly limits the realization of the accurate attitude determination and control system. To minimize the influence of the residual magnetic field on satellite attitude determination, in this paper, a novel satellite layout optimization design (SLOD) approach is proposed. The determination method of satellite residual magnetic field is elaborated firstly and then the corresponding SLOD model concerning complex performance constraints is established. Moreover, the improved accelerated particle swarm optimization (IAPSO) algorithm is developed to search for the optimal layout solution. Finally, the feasibility and effectiveness of the proposed methodology are validated by a numerical layout example and a simplified nano-satellite layout case.
机译:随着空间技术的飞速发展,已经提出了越来越复杂的微型和纳米卫星飞行任务,以实现更复杂的目标,例如遥感和空间天文学。为了满足这些任务要求,卫星需要保持高度精确的姿态控制能力。但是,作为主要干扰转矩的卫星剩余磁矩极大地限制了精确姿态确定与控制系统的实现。为了最小化剩余磁场对卫星姿态确定的影响,本文提出了一种新颖的卫星布局优化设计方法。首先阐述了卫星剩余磁场的确定方法,然后建立了对应于复杂性能约束的SLOD模型。此外,开发了改进的加速粒子群算法(IAPSO),以寻找最佳布局解决方案。最后,通过数值布局实例和简化的纳米卫星布局实例验证了所提出方法的可行性和有效性。

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