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Study on panel gradient estimation system for panel-structure solar power satellite/station

机译:面板结构太阳能卫星/电站面板梯度估计系统研究

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摘要

A SPS (Solar Power Station / Satellite) is a gigantic satellite designed as an electric power plant and transmits the electricity via microwave to a receiving site on the Earth by using a phased array antenna. In Japan, a panel structure SPS was proposed. The panel structure SPS is difficult to maintain flatness of transmission antenna surface. Thus, we study on a microwave power beam correction method. In this paper, we describe a PAC (Position and Angle Correction) method. The PAC method is one of the beam correction methods for SPS. In previous study, we considered the PAC method with pilot signal receiving points and disregarded the size of signal receiving points. Thus, we designed the signal receiving antenna and considered the panel module configurations for using the PAC method. Additionally, we simulated the pilot signal phase measurement errors which are caused by the surrounding antenna elements on the panel module. From the simulation, if the signal receiving antenna is not adjacent to other signal receiving antennas and the phase measurement errors are enough small to use the PAC method.
机译:SPS(太阳能电站/卫星)是设计为发电厂的巨型卫星,并使用相控阵天线通过微波将电能传输到地球上的接收站点。在日本,提出了一种面板结构SPS。面板结构SPS难以维持发射天线表面的平坦度。因此,我们研究了一种微波功率束校正方法。在本文中,我们描述了PAC(位置和角度校正)方法。 PAC方法是SPS的光束校正方法之一。在先前的研究中,我们考虑了具有导频信号接收点的PAC方法,而忽略了信号接收点的大小。因此,我们设计了信号接收天线,并考虑了使用PAC方法的面板模块配置。此外,我们模拟了由面板模块上的周围天线元件引起的导频信号相位测量误差。根据仿真,如果信号接收天线与其他信号接收天线不相邻,并且相位测量误差足够小,则无法使用PAC方法。

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