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Sandwich Module Testing for Space Solar Power

机译:空间太阳能的三明治模块测试

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Solar power satellites have been envisioned as a means to provide electricity for terrestrial use. The approach entails collection of solar energy in space and its wireless transmission to the earth. This potentially gives the benefit of provision of baseload power while avoiding the losses due to the day/night cycle and tropospheric effects that are associated with terrestrial solar power. Proponents have contended that the implementation of such systems could offer energy security, environmental, and technological advantages to those who would undertake their development. Among recent implementations commonly proposed for SSP, the Modular Symmetrical Concentrator and other modular concepts have received considerable attention. Each employs an array of modules for performing conversion of concentrated sunlight into microwaves or laser beams for transmission to earth. The research described herein details efforts in the development and testing of photovoltaic arrays, power electronics, microwave conversion electronics, and antennas for 2.45 GHz microwave-based "sandwich" module prototypes. Prototypes were designed, fabricated, and subjected to the challenging conditions inherent in the space environment, including the solar concentration levels in which an array of modules might be required to operate.
机译:太阳能卫星被设想为为陆地使用提供电力的手段。该方法需要在空间中收集太阳能及其无线传输到地球。这可能给出了提供了基准电力的好处,同时避免由于与陆地太阳能相关的日/夜周期和对流效果而导致的损失。支持者争辩说,这些系统的实施可以为那些正在进行发展的人提供能源安全,环境和技术优势。最近常见于SSP的实施方案中,模块化对称集中器和其他模块化概念得到了相当大的关注。每个都使用一系列模块,用于将集中的阳光转换成微波或激光束以传输到地球。本文描述了在2.45GHz微波的“三明治”模块原型的光伏阵列,电力电子,微波转换电子设备和天线的开发和测试的努力。设计,制造原型,并受到空间环境中固有的具有挑战性的条件,包括太阳能浓度水平,其中可能需要模块阵列操作。

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