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Synchronous Software Control over 62 Heliostats for Enhancing Function Capabilities of a Big Solar Furnace

机译:同步软件控制超过62光升离板,用于增强大型太阳能炉的功能功能

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A comparative analysis of the performance accuracy of the tracking systems of process and energy heliostats was carried out based on the long-term experience of operating a two-mirror big solar furnace (BSF). It is shown that a new additional automatic control system (ACS) is being developed for the upgrade intended to expand the function capabilities of the BSF. The automated control system must maintain dynamics while simultaneously tracking the intersection of two axes of elliptical optical images of the Sun or other celestial objects in the focus of the concentrator from all 62 heliostats simultaneously. In addition, the software-based ACS in development should maintain the previously embedded functions of the automatic temperature control system (ATCS) with the departure of the center of elliptical optical images from all 62 heliostats within 25 angular minutes in order to expand the zone of uniform density. It is proven that the newly developed system of software-based management of heliostats must expand their function capabilities. The optical and geometric parameters (manufacturing accuracy, focal length, and aperture angle) of this installation allow using the solar installation as an astronomical telescope with a midsection size of 42 × 54 m2 for registering secondary Cherenkov radiation from gamma-ray sources in the night sky, creating a favorable zone for obtaining a powerful stream of laser beams, as well as efficiently synthesizing molecular hydrogen by thermolysis and electrolysis. It is shown that the automatic software control packages already created or in the process of being created must synchronously and regularly ensure the coincidence of centers of the Sun’s optical images, which have their own variable shapes and densities, depending on the value of the aperture angle with the focal point of the concentrator, for each of the 62 heliostats.
机译:基于操作双镜大型太阳能炉(BSF)的长期经验,进行了流程和能量光晕差管跟踪系统性能准确性的比较分析。结果表明,正在开发出新的额外自动控制系统(ACS)以促进扩展BSF的功能能力。自动控制系统必须保持动态,同时跟踪来自所有62升起者的焦点或其他天体的两个椭圆形光学图像的交叉点,同时同时从所有62升光器的焦点上。此外,在开发中的基于软件的ACS应通过在25个角度分钟内的所有62光学图像的偏离椭圆光学图像的偏离偏离椭圆形光学图像中心的先前嵌入功能,以便扩展区域均匀的密度。据证明,预知的远程软件管理系统必须扩展其功能能力。该安装的光学和几何参数(制造精度,焦距和光圈角度)允许使用太阳能安装作为天文望远镜,中剧中尺寸为42×54平方米,用于在夜间注册来自伽皮克射线源的二次Cherenkov辐射天空,创造一个有利的区域,用于获得强大的激光束流,并通过热解和电解有效地合成分子氢。结果表明,已经创建或正在创建过程中的自动软件控制包必须同步,并规则地确保太阳光学图像的中心的巧合,这取决于孔径角的值通过集中器的焦点,对于62升起的每一个。

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