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Development of a smart transformer to control the power exchange of a microgrid

机译:开发智能变压器以控制微电网的电力交换

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A smart transformer enables to control the power exchange between a microgrid and the utility network by controlling the voltage at the microgrid side within certain limits. The distributed generation units in the microgrid are equipped with a voltage-based droop control strategy. This controller reacts on the voltage change, making the smart transformer an element that controls power exchange without the need for communication to other elements in the microgrid. To build a smart transformer, several concepts are possible. In a smart transformer with continuous turns ratio, hereafter referred to as continuous smart transformer, the transformer's microgrid-side voltage can be controlled without voltage steps and the accuracy of the voltage control can be very high. The voltage control of a smart transformer with discrete turns ratio, hereafter referred to as discrete smart transformer, is less accurate, as the output voltage is regulated between several discrete values. In this paper, the development of a continuous and discrete smart transformer will be elaborated. Their validity will be proven by implementing these smart transformers in an experimental test setup. Also, some concepts to improve the control accuracy will be proposed.
机译:通过将微电网侧的电压控制在一定范围内,智能变压器可以控制微电网和公用电网之间的功率交换。微电网中的分布式发电单元配备了基于电压的下垂控制策略。该控制器对电压变化做出反应,使智能变压器成为控制功率交换的元件,而无需与微电网中的其他元件进行通信。要构建智能变压器,可能有几个概念。在具有连续匝数比的智能变压器(以下称为连续智能变压器)中,可以在没有电压阶跃的情况下控制变压器的微电网侧电压,并且电压控制的精度可以非常高。具有离散匝数比的智能变压器(以下称为离散智能变压器)的电压控制精度较差,因为输出电压在多个离散值之间进行调节。在本文中,将详细介绍连续和离散智能变压器的开发。通过在实验测试装置中实现这些智能变压器,将证明它们的有效性。另外,将提出一些改善控制精度的概念。

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