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Algorithm to control power production from solar photovoltaic panels

机译:从太阳能光伏面板控制电力生产的算法

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End consumer of energy is getting more cautious of their environmental footprint and with the cost of renewable energy sources like photo-voltaic solar progressively declining, it is expected that the percentage contribution from these new and renewable sources in overall power generation will increase. However, the renewable energy sources carry their own set of drawbacks which is slowing their widespread acceptance. First and foremost is the variability in generation, then controlling the power output from solar is also not trivial since the generation is highly dependent on the external factors such as solar irradiance. Furthermore, there is a mismatch between the demand profile from the consumer and the supply profile of solar. This increased integration of renewable sources in the present grid creates a set of problems such as over voltage, power back flow and instability. In this paper we propose a curtailment based solution to the problem of over production. We provide an algorithm which controls the power output from solar panels. It delivers maximum possible power during the times of low irradiance and curtails the power output during the times of peak generation. With real-data on solar panel output across multiple prosumers, we are able to demonstrate the effectiveness of the proposed algorithm.
机译:最终消费者的能源越来越谨慎地持谨慎态度,并具有可再生能源等可再生能源等光伏的太阳能逐步下降,预计这些新的和可再生能源在整体发电中的贡献将增加。然而,可再生能源携带自己的缺点,这减缓了他们广泛的验收。首先是发电的可变性,然后控制太阳能输出的功率输出也不是微不足道,因为这一代高度依赖于外部因素,如太阳辐照度。此外,来自消费者的需求配置文件与太阳能的供应轮廓之间存在不匹配。当前网格中可再生源的增加集成在诸如过电压,电源回流和不稳定性的一系列问题。在本文中,我们提出了一种基于缩减的解决方案来生产的问题。我们提供一种控制来自太阳能电池板的功率输出的算法。它在低辐照时间的时间内提供最大可能的功率,并在峰值生成时缩短电源输出。通过关于太阳能电池板输出的实际数据,我们能够展示所提出的算法的有效性。

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