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EVOLUTIONS OF THE ARIANE 5 ELECTRICAL POWER SYSTEM

机译:ARIANE 5电力系统的发展

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摘要

The future versions of the Ariane 5 European heavy launcher will require an evolution of its Electrical Power System (EPS) in order to cope with increased requirements in energy and power, associated with mission duration extension and equipment power demand. Since the initial design of the EPS, lithium based technologies have matured and are now considered as a replacement of the current Silver-Zinc (Ag-Zn) batteries, with expected benefits in terms of mass, cost and operational constraints. Candidate electrochemical couples are primary Li-SOC12 and LiMnO2 cells, as well as secondary Li-ion. A compromise is to be found between energy and power, the primary cells being more energy capable, but limited in terms of peak power. Among the possible architectures, some are incorporating supercapacitors. This new family of components, intermediate between batteries and conventional capacitors, can greatly improve the overall EPS performance by allowing a primary lithium based architecture to achieve both high energy and power capability.
机译:未来版本的Ariane 5欧洲重型发射器将需要改进其电力系统(EPS),以应对与任务持续时间延长和设备电力需求相关的能源和电力需求的增长。自从EPS的最初设计以来,基于锂的技术已经成熟,现在被认为是当前银-锌(Ag-Zn)电池的替代品,在质量,成本和操作限制方面均具有预期的好处。候选的电化学对是主Li-SOC12和LiMnO2电池,以及辅助锂离子。在能量和功率之间找到折衷,主电池具有更多的能量能力,但是在峰值功率方面受到限制。在可能的架构中,有些架构包含超级电容器。这种新的组件系列介于电池和常规电容器之间,通过允许基于锂的主要架构同时实现高能量和高功率能力,可以极大地改善整体EPS性能。

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