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Optimal Reconfiguration of Formation Flying Spacecraft 驴a Decentralized Approach

机译:编队飞行航天器KEYa分散进近的最优重构

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This paper introduces a hierarchical, decentralized, and parallelizable method for dealing with optimization problems with many agents. It is theoretically based on a hierarchical optimization theorem that establishes the equivalence of two forms of the problem, and this idea is implemented using DMOC (discrete mechanics and optimal control). The result is a method that is scalable to certain optimization problems for large numbers of agents, whereas the usual "monolithic" approach can only deal with systems with a rather small number of degrees of freedom. The method is illustrated with the example of deployment of spacecraft, motivated by the Darwin (ESA) and terrestrial planet finder (NASA) missions
机译:本文介绍了一种用于处理许多智能体优化问题的分层,分散和可并行化的方法。理论上,它基于层次优化定理,该定理确定了两种形式的问题的等价性,并且使用DMOC(离散力学和最优控制)来实现该思想。结果是可以针对大量代理对某些优化问题进行扩展的方法,而通常的“整体式”方法只能处理自由度非常小的系统。以达尔文(ESA)和地面行星搜寻器(NASA)任务为动力的航天器部署示例说明了该方法

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