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A Lean Satellite Electrical Power System with Direct Energy Transfer and Bus Voltage Regulation Based on a Bi-Directional Buck Converter

机译:基于双向降压转换器的直接能量传递和总线电压调节的精益卫星电力系统

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The lean satellite approach requires aggressive measures for cutting development time and resource utilization; therefore, the power system should be simple, with a low part count, high reliability, and good electrical performance. The fully-regulated bus direct energy transfer (FRDET) architecture is considered the most common solution for big satellites; however, it is rarely used in lean satellite designs because of its complexity and the lack of commercial off-the-shelf solutions. Based on this, a new implementation of the FRDET architecture was proposed, prototyped, and evaluated. The system was based on a bidirectional converter that charges and discharges the battery while maintaining the bus voltage regulation. The system was evaluated by comparing it with the prevailing architectures in the field, in terms of efficiency and average harvested solar power per orbit. The proposed system was superior in both aspects which made it more suitable for its application in lean satellite designs.
机译:精益卫星方法需要积极的措施来减少开发时间和资源利用;因此,电力系统应简单,零件数量低,可靠性高,电气性能良好。全监管的总线直接能量转移(FRDET)架构被认为是大卫星的最常见的解决方案;然而,由于其复杂性和缺乏商业现成的解决方案,它很少用于精益卫星设计。基于此,提出了新的FRDET架构实现,原型化和评估。该系统基于双向转换器,其在保持总线电压调节的同时充电和放电电池。通过将其与现场的主要架构进行评估,在每个轨道上的效率和平均收获的太阳能方面进行评估。在两个方面,所提出的系统更加优越,这使其更适合其在瘦卫星设计中的应用。

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