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Evaluation of Bidirectional DC-DC Converter Topologies for Voltage Regulation in Hybrid Microgrids with Photovoltaic and Battery Technologies

机译:利用光伏和电池技术评估双向DC-DC转换器拓扑在混合微电网中的电压调节

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High penetration of renewable sources, in the last years, is responsible for perturbations in the energy supply, because of their intermittent behavior. Such characteristics is responsible for reliability and power quality problems. To mitigate problems like voltage variation, regulation algorithms can be applied through the energy storage systems. The connection between the energy storage with power grid is carried out and managed by the DC-DC bidirectional converter. This paper presents a comparative evaluation of different topologies of DCDC bidirectional converters. The main objective is identify the topology with better performance for voltage regulation. The system analyzed is a hybrid microgrid composed for battery energy storage system and photovoltaic array connected to power grid. A variable solar irradiance is applied as input to photovoltaic system. The three topologies of DC-DC bidirectional converter approached are the buck-boost, cuk and multilevel. A same voltage regulation strategy is applied to each topology. The model of hybrid microgrid is developed in the software MatLab/Simulink. In this model, the DC-Link voltage ripple and the control response is analyzed. The simulation results show that the DC DC bidirectional multilevel converter has a more suitable response for voltage control. Thereby, the BESS using such topology allow an ancillary service with better power quality to the hybrid microgrid.
机译:近年来,可再生资源的高渗透率由于其间歇性行为,导致了能源供应的混乱。这些特性是造成可靠性和电源质量问题的原因。为了减轻电压变化等问题,可以通过储能系统应用调节算法。储能器与电网之间的连接由DC-DC双向转换器执行和管理。本文对DCDC双向转换器的不同拓扑进行了比较评估。主要目的是确定具有更好电压调节性能的拓扑。分析的系统是一个混合微电网,由电池储能系统和连接到电网的光伏阵列组成。可变的太阳辐照度被用作光伏系统的输入。 DC-DC双向转换器的三种拓扑是降压-升压,cuk和多级。将相同的电压调节策略应用于每种拓扑。混合微电网模型是在MatLab / Simulink软件中开发的。在此模型中,分析了直流母线电压纹波和控制响应。仿真结果表明,DC DC双向多电平转换器具有更合适的电压控制响应。因此,使用这种拓扑的BESS可以为混合微电网提供更好的电能质量的辅助服务。

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