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Closed loop control system for a heliostat field

机译:定日镜场的闭环控制系统

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摘要

The alarming energy crisis, heightened by the continuing depletion of fossil fuels, accentuates the need for the development of renewable energy technology, knowledge, and infrastructure. A Central Receiver (Power Tower) Solar Energy system uses heliostats (motorized planar reflectors) to continuously reflect direct radiation from the sun onto a central receiver. This paper discusses a novel closed loop control system for a heliostat field. In this system, rough adjustment of the heliostat is performed using an Inertial Measurement Unit (IMU). Precision adjustment of the heliostat is performed by inducing a small mechanical vibration in the heliostat's reflective surface, using a piezoelectric actuator. This vibration creates time-dependent changes in the light waves reflected from the heliostat, which can be detected by photo-sensors surrounding the thermal receiver target. The position of misaligned heliostats can be corrected once they are identified by FFT analysis of the light waves received by the photo-sensors. This technique can, in principle, control thousands of heliostats simultaneously. The control system is coded using MATLAB.
机译:化石燃料的不断消耗加剧了令人震惊的能源危机,这加剧了对发展可再生能源技术,知识和基础设施的需求。中央接收器(电力塔)太阳能系统使用定日镜(机动平面反射器)将来自太阳的直接辐射连续反射到中央接收器上。本文讨论了一种用于定日镜场的新型闭环控制系统。在该系统中,使用惯性测量单元(IMU)对定日镜进行粗调。使用压电致动器,通过在定日镜的反射表面产生小的机械振动来执行定日镜的精确调整。这种振动会在定日镜反射的光波中产生随时间变化的变化,可以通过热接收器目标周围的光电传感器检测到。一旦未对准的定日镜的位置通过对光电传感器接收到的光波的FFT分析得以识别,就可以对其进行校正。原则上,该技术可以同时控制数千个定日镜。控制系统使用MATLAB进行编码。

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