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Passivity-based control design for a grid-connected hybrid generation system integrated with the energy management strategy

机译:基于集电网连接混合生成系统的控制设计与能源管理策略集成

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摘要

Hybrid generation systems produce electric energy from a wide variety of energy sources, including renewable sources. A hybrid system based on renewable sources usually consists of two or more renewable energy sources with the possibility of including storage units so as to enhance the reliability of the system. The hybrid system requires an energy strategy that determines the operation point of each element of the system depending on multiple variables and subjected to the constraints inherent in this kind of systems. In addition, the system needs controllers to command each of these elements in order to reach the operation point established by the energy strategy. Here, we propose a control design via passivity-based control integrated with an energy management strategy for a hybrid generation system based on solar energy and coupled with the grid. The performance of the control methodology is extensively assessed through computer simulation using a comprehensive nonlinear model of the plant. The results show that the controlled system accomplishes the control tasks with good responses, working under very different atmospheric conditions and required load power. (C) 2017 Elsevier Ltd. All rights reserved.
机译:混合生成系统从各种各样的能源产生电能,包括可再生来源。基于可再生源的混合系统通常由两个或更多个可再生能源组成,其中可能包括存储单元,以提高系统的可靠性。混合系统需要一种能量策略,该能量策略根据多个变量确定系统的每个元素的操作点,并经受这种系统中固有的约束。此外,系统需要控制器来命令每个元素,以便到达由能量策略建立的操作点。在此,我们通过基于被广泛的控制提出了一种控制设计,该控制设计与基于太阳能的混合生成系统的能量管理策略,并与网格耦合。通过使用植物的综合非线性模型,通过计算机模拟广泛评估控制方法的性能。结果表明,受控系统采用良好的反应完成控制任务,在非常不同的大气条件下工作和所需的负载功率。 (c)2017 Elsevier Ltd.保留所有权利。

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