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The influence of temperature of photovoltaic modules on performance of solar power plant

机译:光伏组件温度对太阳能发电厂性能的影响

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Studies and research of photovoltaic power plants in real world conditions with a goal to find more effective control algorithms require significant investment in equipment and takes a lot of time. To accelerate the research, mathematical models are designed, which allow to simulate processes in photovoltaic power plant under conditions close to the real ones. To investigate the effects of temperature variations, the block of temperature is designed, which allows imitating the processes lasting for month or even several years. This block is used in a model of photovoltaic power plant, developed in earlier studies. The model described in this paper consists of four structural blocks: a block, imitating the solar energy flux; the block, for simulation of temperature variations; the block, imitating photovoltaic module and the control algorithm, in which the maximum power point tracking is performed using IncCond algorithm. The model of photovoltaic power plant is implemented in Matlab/Simulink environment. The model is used to investigate the effects of photovoltaic module temperature on performance of the power plant during a cloudy day. It is proved, that due to overheated photovoltaic modules the efficiency of power plant is decreased. It is proved, that it is possible to increase the efficiency of photovoltaic power plant from 11% to 31% applying forced cooling to all of the photovoltaic modules.
机译:为了找到更有效的控制算法,在现实世界条件下进行光伏电站的研究和研究需要大量的设备投资,并且要花费大量时间。为了加快研究速度,设计了数学模型,该模型允许在接近实际条件下模拟光伏电站中的过程。为了研究温度变化的影响,设计了温度块,该温度块可以模拟持续数月甚至数年的过程。此模块用于早期研究中开发的光伏电站模型中。本文描述的模型由四个结构模块组成:一个模拟太阳能通量的模块;一个模拟太阳能通量的模块;一个模拟太阳能通量的模块。块,用于模拟温度变化;方框,模拟光伏模块和控制算法,其中使用IncCond算法执行最大功率点跟踪。光伏电站模型在Matlab / Simulink环境中实现。该模型用于调查阴天期间光伏组件温度对发电厂性能的影响。事实证明,由于光伏组件过热,发电厂的效率下降。事实证明,通过对所有光伏模块进行强制冷却,可以将光伏电站的效率从11%提高到31%。

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