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Thyristor Switched Smart Transformer for Active Power Flow Control in Multi Micro grid System

机译:用于多微电网系统的主动电流控制晶闸管开关智能变压器

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An intentional active power flow control between microgrids in a multi micro grid system in the grid connected mode is achieved at the point of common coupling. The thyristor controlled on load tap changing transformer at the point of common coupling is equipped with voltage based power flow controller where different tapping are switched according to the required power flow condition to be satisfied and the amount of power to be transmitted. Accordingly, the voltage based droop control associated with the distributed generation units in each of the micro grid changes their active power generation. Thus, without much communication to other elements of the micro grids, the Smart Transformer at the point of common coupling allows active power exchange. The simulations performed in MATLAB/ SIMULINK for both three phase and single phase system follows that active power flow control is achieved in a multi micro grid system using the thyristor switched Smart Transformer. Hardware implementation has also been initiated to analyze the concept of power flow control with thyristor switched Smart Transformer and results are studied. The proposed system shows its operational effectiveness, which can be employed to solve grid emergencies in real time.
机译:在普通耦合点实现了在网格连接模式中的多微电网系统中的微电网之间的有意的有效电力流量。在公共耦合点处的负载抽头改变变压器上控制的晶闸管配备有基于电压的功率流量控制器,其中根据需要满足的所需功率流动条件以及要传输的电力量来切换不同的攻丝。因此,与每个微网格中的分布式生成单元相关联的基于电压的下垂控制改变了它们的有效发电。因此,在没有微网格的其他元件的情况下,智能变压器在公共耦合点处允许有源电力交换。对于三相和单相系统,在MATLAB / Simulink中执行的模拟遵循,使用晶闸管开关智能变压器在多微电网系统中实现有源电流控制。还启动了硬件实现,以分析晶闸管开关智能变压器的电力流量控制概念,并研究了结果。拟议的系统表明其运作效率,可用于实时解决网格紧急情况。

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