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SOLAR ENERGY CONCENTRATORS IN GEOSTATIONARY ORBITS

机译:地球静止轨道中的太阳能集中器

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An important component of Space-based solar power (SBSP) systems is the solar energy concentrator that collects solar power in space and focusses it on solar cells or heat engines to produce electricity, which is consequently beamed to the earth by means of microwave or laser radiation. A variety of solar concentrator concepts proposed up to now are briefly reviewed in this paper, such as an integrated symmetrical concentrator (ISC), an arbitrarily large phased array (ALPHA), a spherical solar power collector (OMEGA), a thin-film energy terminator (TENT) concentrator based on zero-index metamaterial (ZIM), and a spherical condenser made of epsilon-near-zero (ENZ) metamaterial. A special attention is paid to a new concept proposed recently for designing Fresnel lens concentrators on the basis of magnetic microwires with a complex spatial distribution of their density. Methods of achieving relevant configurations of microwires density are discussed in connection with variations of their magnetic properties.
机译:基于空间的太阳能电力(SBSP)系统的重要组成部分是在太阳能电池或热电发动机上聚焦太阳能电力的太阳能集中器,以产生电力,从而通过微波或激光将其光束到地球上辐射。本文简要介绍了本文提出的各种太阳能集中器概念,例如集成对称集中器(ISC),任意大相阵列(Alpha),球形太阳能集电器(Omega),薄膜能量基于零指数超材料(Zim)的终结器(帐篷)集中器,以及由epsilon - 近零(ENZ)超材料制成的球形冷凝器。特别注意最近在磁性微线的基础上以磁性微线设计菲涅耳透镜集中器的新概念,其密度复杂。讨论实现微束密度相关配置的方法与其磁性的变化有关。

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