Minimax model of transport operations of emergency on-orbit servicing in heliosynchronous orbits

Yu.M. Holdshtein
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Abstract

Heliosynchronous orbits are attractive for space system construction. As a result, the number of spacecraft operating therein is constantly increasing. To increase their efficiency, timely on-orbit servicing (both scheduled and emergency) is needed. Emergency on-orbit servicing of spacecraft is needed in the case of unforeseen, emergency situations with them. According to available statistical estimates, emergency situations with serviced spacecraft are not frequent. Because of this, serviced spacecraft must be within the reach of a service spacecraft for a long time. In planning emergency on-orbit servicing, the following limitations must be met: the time it takes the service spacecraft to approach any of the serviced spacecraft must not exceed its allowable value, and the service spacecraft’s allowable energy consumption must not be exceeded. This paper addresses the problem of searching for emergency on-orbit servicing that would be allowable in terms of time and energy limitations and would meet technical and economical constraints. The aim of this work is to develop a mathematical constrained optimization model for phasing orbit parameter choice, whose use would allow one to minimize the maximum time of transport operations in emergency on-orbit servicing of a spacecraft group in the region of heliosynchronous orbits. The problem is solved by constrained minimax optimization. What is new is the formulation of a minimax (guaranteeing) criterion for choosing phasing orbit parameters that minimize the maximum time of emergency on-orbit servicing transport operations. In the minimax approach, the problem is formulated as the problem of searching for the best solution such that the result is certain to be attained for any allowable sets of indeterminate factors. The proposed mathematical model may be used in planning emergency on-orbit service operations to minimize the maximum duration of emergency on-orbit servicing transport operations due to a special choice of the service spacecraft phasing and parking orbit parameters.
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日同步轨道紧急在轨服务运输作业的极小极大模型
太阳同步轨道对于空间系统的建设是有吸引力的。因此,在其中运行的航天器数量不断增加。为了提高它们的效率,需要及时的在轨服务(定期和紧急)。在航天器发生不可预见的紧急情况时,需要对其进行紧急在轨服务。根据现有的统计估计,已维修航天器的紧急情况并不频繁。因此,服务航天器必须长时间处于服务航天器的可及范围内。在规划紧急在轨维修时,必须满足以下限制:服务航天器接近任何服务航天器所需的时间不得超过其允许值,服务航天器的允许能耗不得超过其允许值。本文讨论了寻找在时间和能量限制方面允许并满足技术和经济约束的紧急在轨服务的问题。本工作的目的是建立一个相位轨道参数选择的数学约束优化模型,该模型的使用将使在日同步轨道区域的航天器群紧急在轨服务中运输操作的最大时间最小化。该问题采用约束极大极小优化方法求解。其创新之处在于,提出了一个最小(保证)准则,用于选择相位轨道参数,使紧急在轨服务运输作业的最大时间最小化。在极大极小法中,问题被表述为寻找最佳解的问题,使得对于任何允许的不确定因素集合,结果都是确定的。所提出的数学模型可用于规划紧急在轨服务业务,通过对服务航天器相位和停放轨道参数的特殊选择,尽量缩短紧急在轨服务运输业务的最长持续时间。
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