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Event-triggered variable horizon Supervisory Predictive control of hybrid power plants

机译:事件触发的可变视野混合动力电厂预测控制

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摘要

The supervision of a hybrid power plant, including solar panels, a gas microturbine and a storage unit operating under varying solar power profiles is considered. The Economic Supervisory Predictive controller assigns the power references to the controlled subsystems of the hybrid cell using a financial criterion. A prediction of the renewable sources power is embedded into the supervisor. Results deteriorate when the solar power is unsteady, owing to the inaccuracy of the predictions for a long-range horizon of 10 s. The receding horizon is switched between an upper and a lower value according to the amplitude of the solar power trend. Theoretical results show the relevance of horizon switching, according to a tradeoff between performance and prediction accuracy. Experimental results, obtained in a Hardware In the Loop (HIL) framework, show the relevance of the variable horizon approach. Power amplifiers allow us to simulate virtual components, such as a gas microturbine, and to blend their powers with that of real devices (storage unit, real solar panels). In this case, fuel savings, reaching 15%, obtained under unsteady operating conditions lead to a better overall performance of the hybrid cell. The overall savings obtained in the experiments amount to 12%.
机译:考虑了混合动力装置的监督,包括太阳能电池板,微型燃气轮机和在变化的太阳能曲线下运行的存储单元。经济监管预测控制器使用财务标准将功率参考分配给混合单元的受控子系统。对可再生能源发电量的预测已嵌入监管器中。当太阳能不稳定时,结果会变差,这是由于10 s远距离观测的预测不准确。后退地平线根据太阳能趋势的幅度在上限值和下限值之间切换。理论结果表明,根据性能和预测精度之间的折衷,水平切换具有相关性。在“硬件在环”(HIL)框架中获得的实验结果表明了可变视野方法的相关性。功率放大器使我们能够模拟虚拟组件(例如微型燃气轮机),并将其功率与真实设备(存储单元,真实太阳能电池板)的功率混合。在这种情况下,在不稳定的工作条件下节省的燃油可达到15%,从而可提高混合动力电池的整体性能。在实验中获得的总节省为12%。

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