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Advanced space technology for 21st century energy systems: solar power from space

机译:21世纪能源系统的先进太空技术:来自太空的太阳能

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Terrestrial solar power is one of the fastest growing energy sectors with high growth rates sustained over more than a decade (especially in Europe) and very promising forecasts. For 30 years, the idea of a large solar power plant in Earth orbit, transmitting energy to Earth-bound receiver sites, has enjoyed periodic attention from energy and space entities. All studies concluded the principal technical feasibility of the concepts and gradually improved their power to mass ratio. No substantial development efforts were undertaken, however, since, with current technology, space generated electricity costs would still be too high, upfront costs prohibitive and the launcher sector not mature enough to reduce /spl euro//kg to orbit costs by the required order of magnitude. In the past, space concepts were mainly compared to traditional energy systems. Based on this background, the Advanced Concepts Team (ACT) at the European Space Agency started a three-phased programme in 2003. The first phase of the programme, the validation phase, focused on a comparison of a space solar power plant with comparable terrestrial solutions, on the one hand, and the assessment of the potential of SPS for space exploration and space application, on the other. Space concepts were compared to terrestrial solutions based on equally advanced technology and equal economic conditions for the timeframe 2020/30 in terms of energy payback times, final /spl euro//kWh generation costs, adaptability to different energy scenarios, reliability and risk.
机译:陆地太阳能是增长最快的能源行业之一,其高增长率持续了十多年(尤其是在欧洲),并且前景十分看好。 30年来,在地球轨道上建造大型太阳能发电厂将能量传输到与地球相连的接收器站点的想法一直受到能量和空间实体的定期关注。所有研究都总结了这些概念的主要技术可行性,并逐步提高了它们的功率质量比。但是,没有进行实质性的开发工作,因为在当前技术的情况下,太空产生的电力成本仍然太高,前期成本高得令人望而却步,发射器行业还不够成熟,无法按要求的订单将/ spl欧元// kg的轨道成本降低数量级。过去,主要将空间概念与传统能源系统进行比较。基于这种背景,欧洲航天局的高级概念小组(ACT)于2003年启动了一个分为三个阶段的计划。该计划的第一阶段,即验证阶段,着重于将空间太阳能发电厂与可比较的地面发电厂进行比较。解决方案,另一方面,评估SPS在空间探索和空间应用中的潜力。在能源偿还时间,最终发电成本/千瓦时,对不同能源情景的适应性,可靠性和风险方面,将空间概念与基于相同先进技术和相同经济条件的地面解决方案进行了比较,该解决方案适用于2020/30时限。

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