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Development of methods for ensuring energy balance for the operation of mission equipment of “AIST”-series small satellites under conditions of power limitations

机译:在电力限制条件下,在“艾氏” - “AICT”的“AICT”的特派机设备运营中的能量平衡的制定

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摘要

The article examines the issues of determining the light-and-shadow situation and its impact on providing energy balance on the orbits of two small satellites of the “AIST” series. Ensuring energy balance in the operation of mission equipment becomes particularly relevant in the case of power limitations caused by both the degradation of spacecraft systems and the factors of outer space. The main purpose of the article is to solve the problem of increasing the efficiency of the power supply system of “AIST”-series small satellites operating under resource constraints. Firstly, modeling of the lighting situation on the orbits of small satellites was carried out. Secondly, the telemetric information of “AIST” small satellites for the whole period of operation was examined. In addition, the influence of the light-and-shadow conditions on the parameters of the power system of a small satellite was analyzed. As a result, an algorithm for estimating the energy balance, taking into account the influence of the light-and-shadow situation was proposed. Using the proposed algorithm made it possible to take into account the influence of seasonal variations in the light-and-shadow environment on the possibility of ensuring energy balance in the operation of mission equipment
机译:本文探讨了确定光阴影情况的问题及其对“艾氏”系列的两个小卫星轨道上的能量平衡的影响。确保在特派团设备的运营中确保能量平衡在由航天器系统的退化和外层空间因素引起的电力限制的情况下变得特别相关。该物品的主要目的是解决提高资源限制运行的“AICT”的电源系统效率的问题。首先,进行了小卫星轨道上的照明情况的建模。其次,检查了整个操作周期的“AIST”小卫星的遥测信息。此外,分析了光阴影条件对小卫星电力系统参数的影响。结果,提出了一种估算能量平衡的算法,考虑到光阴影情况的影响。使用所提出的算法使得可能考虑到光阴影环境中季节变化的影响,以确保任务设备运行中的能量平衡

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