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Modeling and Design of Electrical Power Subsystem for CubeSats

机译:CubeSats电力子系统的建模与设计

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The launch of small satellites (also known as CubeSats) has been exponentially increasing in academia and industry since the last decade. The Electrical Power Subsystem (EPS) plays a critical role to ensure a reliable and sustained operation of CubeSats. Primarily, the EPS consists of solar cells, battery, converters and power management boards. Simulating the operation of EPS before launch of a satellite is critical in proving design and developed controllers. In this paper, we provide a simulation model of EPS for simulation in MATLAB/Simulink. An EPS system with a payload consisting of an earth image capturing camera is modeled using switching converters, PV cell model and intrinsic Simulink battery model to investigate control dynamics in detail. The EPS dynamics are studied during the transition of an operational mode of CubeSat and the impact of maximum power point tracking (MPPT) of PV array on battery is also analyzed.
机译:自上年以来,在学术界和行业中发射了小卫星(也称为CubeSats)在学术界和行业中一直在逐步增加。电力子系统(EPS)起到关键作用,以确保立方体的可靠和持续的操作。主要是,EPS由太阳能电池,电池,转换器和电源管理板组成。在推出卫星之前模拟EPS的操作对于证明设计和开发的控制器至关重要。在本文中,我们为Matlab / Simulink中的仿真提供了一种仿真模型。具有由地球图像捕获相机组成的有效载荷的EPS系统使用切换转换器,光伏电池模型和内在的Simulink电池模型进行建模,以详细研究控制动态。在CubeSat的操作模式的转变过程中研究了EPS动态,并分析了PV阵列的最大功率点跟踪(MPPT)的影响。

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