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Energy flow administration of photovoltaic energy station system implementing boost, buck converters

机译:实现升压/降压转换器的光伏电站系统的能量流管理

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In this work a photovoltaic energy station system is proposed. Power converters are designed to transfer energy between source, storage and underwater autonomous vehicle (AUV) load plus variable load station. Efficient regulation of the energy is achieved by linear control PI to track DC bus voltage. Energy management has a power configuration composed of DC-DC converters with digital-control using a Matlab software in order to do calculations. The mathematical formulation of system is analyzed to local stability and controlability. Gains of PI controllers are choice through two methods: Siso-tool of Matlab and stability gain analysis based on the transfer function. Stability proof analysis of converters is demonstrated by Routh Hurwitz even variation load station. Simulation evidence results of the performance improvement are shown.
机译:在这项工作中,提出了光伏能源站系统。功率转换器旨在在能源,存储和水下自动驾驶(AUV)负载加上可变负载站之间传递能量。通过线性控制PI跟踪直流母线电压,可以有效地调节能量。能源管理的电源配置由使用Matlab软件进行数字控制的DC-DC转换器组成,以便进行计算。分析了系统的数学公式,以求局部稳定性和可控制性。 PI控制器的增益可以通过两种方法选择:Matlab的Siso工具和基于传递函数的稳定性增益分析。 Routh Hurwitz甚至变负荷工位证明了转换器的稳定性证明分析。显示了性能改善的仿真证据结果。

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