Sliding Mode Controller for Voltage Regulation in DC Micro grid

S. Shaikh, A. M. Soomro, A. A. Sahito, A. Chachar
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Abstract

The variations in loads can be defined as either increment or decrement in the load. Variation in load causes a similar change in the amount of current which produces opposite variation in output voltage. Microgrids typically use renewable energy resources to meet varying load demands of the local area. Such sources need power electronic converters for controlling proper voltage level for efficient operation. Hence it becomes essential to design control scheme for the DC-DC converters to stabilize the voltage in DC micro grids under any type of load variations. This research work proposes a DC micro grid structure in which sliding mode controller based DC-DC converters are implemented. Microgrid structure is then simulated using MATLAB SIMULINK where output voltage regulation is achieved efficiently in case of rise as well as fall in the load connected on DC micro gird.
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直流微电网电压调节的滑模控制器
载荷的变化可以定义为载荷的增加或减少。负载的变化引起电流量的类似变化,从而产生相反的输出电压变化。微电网通常使用可再生能源来满足当地不同的负荷需求。这样的电源需要电力电子转换器来控制适当的电压水平,以有效地工作。因此,设计直流-直流变换器的控制方案以稳定直流微电网在任何类型负载变化下的电压变得至关重要。本研究提出了一种基于滑模控制器的DC-DC变换器的直流微电网结构。然后利用MATLAB SIMULINK对微网结构进行仿真,有效地实现了直流微网所接负载上升和下降时的输出电压调节。
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