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STABILITY ANALYSIS AND DECENTRALIZED SYSTEM DESIGN OF LARGE SPACE STRUCTURES BASED ON POTENTIAL FIELD

机译:基于潜在场的大型空间结构稳定性分析与分散系统设计

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The major objective of this study is to present the stability analysis and the decentralized system design of large space structures such as space solar power systems. The stability analysis is carried out about the position, attitude and structural changes based on the potential field. This study focuses on the km-order solar-array platform with gravity gradient stabilization. Because its size is very large, the solar-array is very flexible. In addition to it, the structural deformation has an effect on the attitude change. Therefore, comprehensive analysis of the system motions including position, attitude, and structural changes is required. Through the same physical property, which is the potential energy, three different motions (position, attitude, and structural changes) can be evaluated in integrated way. Furthermore, the large space structure needs to be decomposed into small modules for the high reliability and easy construction. In modularized structures, a centralized system including control is not generally effective, and a decentralized system can extend various possibilities of the structure. Therefore, the design of the decentralized system can be considered as shaping the form of each module's potential energy. In this study, the concept of decentralized system design based on the local potential energy is also discussed from results of the stability analysis.
机译:本研究的主要目的是展示稳定性分析和分散系统设计,如太阳能电力系统的大型空间结构。稳定性分析是关于基于潜在场的位置,姿态和结构变化。本研究重点介绍了重力梯度稳定的KM级太阳能阵列平台。由于其尺寸非常大,太阳能阵列非常灵活。除此之外,结构变形对姿态变化有影响。因此,需要综合分析包括位置,态度和结构变化的系统运动。通过相同的物理性质,这是潜在的能量,可以以综合方式评估三种不同的动作(位置,姿态和结构变化)。此外,大型空间结构需要分解成用于高可靠性和易于结构的小模块。在模块化结构中,包括控制的集中系统通常不是有效的,并且分散的系统可以延长结构的各种可能性。因此,分散系统的设计可以被认为是塑造每个模块的潜在能量的形式。在这项研究中,还讨论了基于局部势能的分散系统设计的概念从稳定性分析的结果讨论。

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