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Optimized High Temperature PEM Fuel Cell & High Pressure PEM Electrolyser for Regenerative Fuel Cell Systems in GEO Telecommunication Satellites

机译:优化高温PEM燃料电池和高压PEM电解器,用于Geo电信卫星的再生燃料电池系统

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Next generation telecommunication satellites will demand increasingly more power. Power levels up to 50 kW are foreseen for the next decades. Battery technology that can sustain up to 50 kW for eclipse lengths of up to 72 minutes will represent a major impact on the total mass of the satellite, even with new Li-ion battery technologies. Regenerative fuel cell systems (RFCS) were identified years ago as a possible alternative to rechargeable batteries. CMR Prototech has investigated this technology in a series of projects initiated by ESA focusing on both the essential fuel cell technology, demonstration of cycle performance of a RFCS, corresponding to 15 years in orbit, as well as the very important reactants storage systems. In the last two years the development has been focused towards optimising the key elements of the RFCS; the HTPEM fuel cell and the High Pressure PEM electrolyser. In these ESA activities the main target has been to optimise the design by reducing the mass and at the same time improve the performance, thus increasing the specific energy. This paper will present the latest development, including the main results, showing that significant steps have been taken to increase TRL on these key components.
机译:下一代电信卫星将需要越来越多的权力。未来几十年,预计高达50千瓦的电力水平将在下面预见到50千瓦。即使采用新的LI-ION电池技术,可维持高达72分钟最多可享用最多50千瓦的电池技术最多可达50千瓦,则表示对卫星总质量的重大影响。多年前确定再生燃料电池系统(RFC)作为可充电电池的可能替代品。 CMR Prototech已经在一系列由ESA的项目中调整了这项技术,该技术专注于基本燃料电池技术,对应于RFC的循环性能,对应于15年的轨道,以及非常重要的反应物存储系统。在过去两年中,发展一直专注于优化RFC的关键要素; HTPEM燃料电池和高压PEM电解器。在这些ESA活动中,主要目标是通过减少质量来优化设计,并同时提高性能,从而增加特定能量。本文将展示最新的发展,包括主要结果,表明已采取了重大步骤来增加这些关键组件的TRL。

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