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Voltage-Based Control of a Smart Transformer in a Microgrid

机译:微电网中智能变压器的基于电压的控制

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For the islanded operation of a microgrid, several control strategies have been developed. For example, voltage-based droop control can be implemented for the active power control of the generators and the control of the active loads. One of the main advantages of a microgrid is that it can be implemented as a controllable entity within the electrical network. This requires the ability of the utility grid to control or influence the power exchange with the microgrid by communicating with only one unit. However, little research has been conducted on controlling the power transfer through the point of common coupling (PCC). This paper addresses this issue by introducing the concept of a smart transformer (ST) at the PCC. This unit controls the active power exchange between a microgrid and the utility grid dependent on the state of both networks and other information communicated to the ST. To control the active power, the ST uses its taps that change the microgrid-side voltage at the PCC. This voltage-based control of the ST is compatible with the voltage-based droop control of the units in the microgrid that is used in this paper. Hence, the microgrid units can automatically respond to changes of ST set points and vice versa. Several simulation cases are included in this paper to demonstrate the feasibility of the ST concept.
机译:对于微电网的孤岛式运行,已经开发了几种控制策略。例如,可以实施基于电压的下降控制,以用于发电机的有功功率控制和有功负载的控制。微电网的主要优点之一是,它可以实现为电网内的可控实体。这要求公用电网具有通过仅与一个单元通信来控制或影响与微电网的功率交换的能力。但是,关于通过公共耦合点(PCC)控制功率传输的研究很少。本文通过在PCC上介绍智能变压器(ST)的概念来解决此问题。该单元根据两个网络的状态以及传递给ST的其他信息来控制微电网和公用电网之间的有功功率交换。为了控制有功功率,ST使用其抽头来改变PCC上微电网侧的电压。 ST的基于电压的控制与本文中使用的微电网中单元的基于电压的下降控制兼容。因此,微电网单元可以自动响应ST设定点的变化,反之亦然。本文中包含几个仿真案例,以证明ST概念的可行性。

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