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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空间技术:太阳能来自太空

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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:陆地太阳能力量是增长最快的能源领域之一,高增长率超过十多年(特别是在欧洲)和非常有前途的预测中。 30年来,地球轨道中大型太阳能发电厂的想法,将能量传输到地球绑定的接收器站点,从能源和空间实体享有周期性的关注。所有研究总结了概念的主要技术可行性,并逐步提高了其质量比率的权力。但是,没有进行大量的发展努力,因为随着目前的技术,空间产生的电力成本仍然太高,前期成本普及,发射部门不足以通过所需订单将欧洲成本减少/释放欧元//千克成本幅度。在过去,空间概念主要与传统能源系统相比。在此背景下,欧洲空间机构的高级概念团队(法案)于2003年开始了三相计划。该计划的第一阶段,验证阶段,专注于空间太阳能发电厂与可比陆地的比较另一方面,解决方案以及对SPS用于太空勘探和空间应用的潜力的评估,另一方面。在能量回报时间方面,基于同等高级技术和超时的经济条件的基于同样先进的技术和相同的经济条件,最终/ SPL欧元// kWh生成成本,对不同能量情景,可靠性和风险的适应性。

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