Power system management and distribution for future spacecraft

H. Yousef
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引用次数: 2

Abstract

Spacecraft power systems management, distribution, and design methodologies are reviewed, and prospects for achieving the high-efficiency goals required for future spacecraft power systems are presented. In particular, the methodology of solar array sizing and battery sizing is discussed, and the related mathematical equations are introduced. The growth in spacecraft energy requirements, which necessitate a large spacecraft power system to support the increased demands, resulted in on-going increases in weight, size, and cost of spacecraft systems. Therefore the power system management and distribution of such energy becomes an important factor in present spacecraft systems, affecting total spacecraft weight, size, and cost. This factor must be taken into consideration at the early design stages in order to meet the growing requirements for light-weight and low-cost spacecraft. Subject to certain technological advancements, spacecraft power systems can be reduced by 20 to 30% in size, weight, and cost without compromising mission requirements.<>
未来航天器的电力系统管理和分配
综述了航天器动力系统的管理、分配和设计方法,并对实现未来航天器动力系统所需的高效率目标提出了展望。特别讨论了太阳能电池阵列尺寸和电池尺寸的方法,并介绍了相关的数学方程。航天器能量需求的增长,需要一个大型航天器动力系统来支持不断增长的需求,导致航天器系统的重量、尺寸和成本不断增加。因此,这些能量的动力系统管理和分配成为当前航天器系统中的一个重要因素,影响着航天器的总重量、尺寸和成本。为了满足对轻型和低成本航天器日益增长的要求,在早期设计阶段必须考虑到这一因素。在一定的技术进步下,航天器动力系统的尺寸、重量和成本可以在不影响任务要求的情况下减少20%到30%。
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