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Energy optimization of control loops for concentrated solar plants with the design of experiments

机译:通过实验设计优化集中式太阳能发电厂控制回路的能量

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Heliostat fields for concentrated solar plants can be very large as the number of heliostats can reach several hundreds. All day long they follow the sun thanks to electric motors supplied by power electronics, generally through long underground cables across the field. This classical solution can lead to high costs due to trenches and long cables. An innovative solution has been proposed in the recent years with the concept of autonomous heliostats supplied by a photovoltaic panel and batteries. This paper describes a specific switching system that enables the use of a single chopper instead of two and a method for tuning the parameters of the position and speed controllers in order to minimize the global consumption of the heliostat. DoE (Design of Experiments) helps to tune the controllers through several factors and a specific attention is paid to way to fix the factor levels. The significance of the resulting factor effects are tested through the ANOVA (analysis of variance). The final objective is to reduce as much as possible the size of the battery and the solar panel.
机译:由于定日镜的数量可以达到数百个,因此用于集中式太阳能发电厂的定日镜场可能非常大。由于电力电子设备提供的电动机,它们通常整天通过地下的长地下电缆整天跟随太阳。由于沟槽和长电缆,这种经典解决方案可能导致高成本。近年来,提出了一种创新的解决方案,其概念是由光伏面板和电池提供自动定日镜。本文介绍了一种特定的开关系统,该系统可使用单个斩波器而不是两个斩波器,并且介绍了一种用于调节位置和速度控制器参数的方法,以最大程度地减少定日镜的使用量。 DoE(实验设计)有助于通过多个因素调整控制器,并特别注意确定因素水平的方法。通过方差分析(方差分析)测试所产生因素影响的显着性。最终目标是尽可能减少电池和太阳能电池板的尺寸。

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